Chapter XIV: Habit of Growth in Plants
My readers have possibly noticed that in the previous chapters my aim has been to describe the various organs of a plant, and that I have tried to show not merely the botanical meaning of the many differences in the organs of allied species, but to point out also how these structures are adapted to help the plant to multiply itself. The object of this final chapter is to take a more general view of plant-life, and to give some idea of the different habits of plants; how in their struggle to grow and reproduce themselves they form such habits as tend to assist them in this effort, and also how entirely, in some cases, they differ from our ordinary conception of plant-growth.
We have already seen how beautifully plants are adapted to the life they have to lead, how they are specially fitted to grow in some particular place and climate, and now I will ask my readers to study with me certain of the varying habits of plant-life. A typical plant of an ordinary kind grows, of course, in the earth, produces root, stem, and leaves, and finally flowers, which are the origin of fruits and seed; by the latter the plant is again produced, and by this circular action the continuity of that particular plant is maintained.
Let us now, in imagination, peep into a tropical forest. On its outskirts we shall see the prototypes of our typical plant; but inside there are also others of quite a different aspect, and the first to attract our attention would probably be the curious orchids perched upon the tree-branches. Their mode of growth differs greatly from that of a normal plant, for they are merely attached to the branches by means of clasping rootlets, which do not in any way extract sap from the tree to which they are clinging.
The moisture they need is collected by the leaves and hanging rootlets from the humid atmosphere of the forest. These plants that have acquired a perching habit sometimes grow to an immense size, and where they do so vegetable _débris_ accumulates about their lower leaves and roots to such an extent that it serves to supply them with needful food.
This habit of growth is not confined to the lovely orchids; mosses, lichens, ferns, and many other plants have acquired a similar mode of growth, and the various ways by which they attach themselves to the bearer plants would form an interesting subject of investigation. It is a not uncommon error to regard these perching plants as parasites, but this term is properly used for plants which actually feed upon the branches of the trees where they grow, and of course seriously injure the trees by so doing. The orchids, on the other hand, do not in any way injure the branch upon which they rest. Robert Louis Stevenson in one of his later poems has, with a poet’s license, which in this case is contrary to fact, described the perching orchid thus—
“For in the groins of branches, lo!
The cancers of the orchid grow.”
This inaccurate observation is, however, more than atoned for by the wonderful impression Stevenson has given us of the character of woodland strife, the ceaseless struggle for light and air which goes on in tropical forests.
In studying the parasites as a group of plants associated by the same habit of growth, we are led to the conclusion that there is some difference after all in the morality of plants! Here, for example, we are confronted with a group of plants that differ entirely from those we have hitherto examined. The mistletoe, which is the commonest type, is certainly lower in the social plant-scale than the perching orchid, the latter with its leaves and rootlets being enabled to earn its own living, while the mistletoe sends its roots down into the soft sap of the branch upon which it is growing and—there is no other name for it—steals its means of living and growing from the substance of the poor tree upon which it preys. It is true it does, in a half-hearted kind of way, assimilate a little gaseous food for itself, but the sickly metallic hue of its leaves is evidence that even in this respect it is shirking its proper duties of nutrition.
If we desire to study the curious habits of parasitic plants, the two examples referred to in a previous chapter, the clover-dodder and the yellow rattle, will afford good examples, the latter plant being easily obtainable in fields where the pasture is poor and scanty. Very curious are the modifications and contrivances developed by plants which have acquired this habit of parasitism, especially amongst such weird tropical species as _Rafflesia_, a huge parasite growing on the _Cissus_ in Sumatra. When the leaves and flowers of the cissus have withered, then here and there a huge knob protrudes from the stem or root, and this grows in time to an immense stemless flower, measuring more than three feet across, its cup frequently containing as much as twelve pints of liquid, and the weight of the whole flower being said to be about fifteen pounds.
Differing a little in habit from the parasites are the _saprophyte_ plants, which live on decaying vegetation. The little brown leafless orchid called the bird’s-nest orchis is of this character, as well as the equally curious coral-root orchis. These plants, as well as many other parasites, are destitute of chlorophyll, and are therefore dependent on organic material for food; this they obtain either as we have seen from living plants or from decaying organic matter. In their efforts to obtain a needful supply of light and air, some plants assume climbing habits, using as supports other trees and plants, to the very obvious disadvantage of the latter. We can well understand how, in a tropical forest, the weak-climbing plants strive to pass out of the shaded recesses and force their way to the tops of the slower growing trees, in order to obtain the share of light, moisture, and air which are essential to their existence. Very vividly has the late Mr. Louis Stevenson described such a scene in a tropical forest—
“The hooked liana in his gin
Noosed his reluctant neighbours in;
There the green murderer throve and spread,
Upon his smothering victims fed,
And wantoned on his climbing coil.
Contending roots fought for the soil
Like frighted demons; with despair
Competing branches pushed for air.”
* * * * *
“So hushed the woodland warfare goes
Unceasing; and the silent foes
Grapple and smother, strain and clasp
Without a cry, without a gasp.”
I may explain that the “murderer” alluded to is a species of fig-tree which, in its early youth climbs up the trunks of other trees, and by means of its clasping roots so constricts their stems that they ultimately perish.
In pleasing contrast to this phase of vegetable growth is the habit which indicates to us something of mutual help and co-operation. In the _Compositæ_ we find many instances of a habit of growth that bears distinctly upon this “help-one-another” mode of life. A common daisy will serve as a type-flower of this kind. The little head is a colony of flowers, but so close is the association of its individual florets that it is usual to regard it as one flower rather than a distinct inflorescence composed of numerous separate and distinct flowers.
In order to understand the mutualism displayed by this little flower, we must remember that it is an insect-fertilised blossom, and, therefore, insects must be attracted to it. If we carefully dissect a flower-head we shall find first a ring of strap-shaped flowers on the outside, constituting the ray florets—these are imperfect;[29] but placed side by side on the outer edge they become conspicuous; then we find in the centre of the flower-head a number of tiny yellow flowers, each one containing stamens and pistils. What wee things they are, and if they were developed singly how inconspicuous they would be! When, however, they are grouped side by side in the centre, and further, when the outer florets are of a different colour and shape, what a beautiful and symmetrical whole they make! Truly this is another rendering of the maxim, Union is strength. From a different point of view the arrangement is equally interesting. The white and pink tipped florets of the ray are not capable of bearing seed, and yet we see how they help those florets that are perfect by their attractive appearance; then at night or on a cold rainy day these same ray florets bend over and completely cover up the florets in the centre which are busy producing seed. My readers will find a rich field of investigation open before them in studying the flowers of the daisy family, and finding out for themselves how the florets are grouped together, and to what extent this principle of co-operation can be traced.[30]
[29] Barren.
[30] A single flower of the Heracleum giganteum would not be specially noticeable, but when hundreds of them are grouped together in a huge umbelliferous head they form a most striking object, as may be seen in the plate. I have often watched the swarms of flies, beetles, and bees visiting these attractive blossoms on sunny days, and the great umbels of seed in autumn showed how effectually the insects had carried out their work of fertilisation.
Students will find the corn blue-bottle especially interesting; the large outer florets contain no organs of reproduction, but still they are brightly coloured and highly attractive to bees; the inner florets with their protruding stigmas and anthers, are much smaller; they are the seed-bearers, and cannot fail to receive pollination when the bee alights on the flower-head, allured by the showy outer florets, which apparently exist solely that they may draw insects to visit the unattractive flowers of the disc.
The direct influence of the separate parts of a plant upon one another, and the very distinct habit of associating together that they may attain some end such as the visits of insects, leads us to consider two other aspects of plant-life, both of which are so full of interest that no botanical work can now be considered complete without some reference to the matter. If we carefully dig up a clover plant or a broad bean and examine the little rootlets we shall observe some small knobs or swellings upon them. These swellings are only found here and there on some of the roots, so that their presence is not a normal condition. Placing one of these knobs under a powerful microscope, we shall find it to be not ordinary root tissue but a substance teeming with countless numbers of rod-like or rounded atoms which botanists who have investigated the subject tell us are bacteria, _i.e._, inconceivably small one-celled plants which are often the cause of terrible diseases. But some of these mysterious organisms, on the other hand, are capable of beneficial results. It has of late been clearly proved that leguminous plants having these colonies of bacteria on their roots possess the power of assimilating the free nitrogen that forms such a large proportion of atmospheric air. When therefore a farmer sows his wheat in a field previously occupied by clover he finds the clover roots left in the soil contribute the best possible supply of nitrogen to the wheat crop. This seems a remarkable fact, since vegetable physiologists have hitherto insisted upon the fact that plant-life is unable to make use of the free nitrogen of the air. The other instance of strange habit is that of a symbiosis,[31] which exists between certain trees on the one hand and the threads of spawn of some fungi on the other. If the roots of the white poplar are examined minutely, quite a mantle of whitish threads will be found covering the growing point. It is said by that eminent botanist, Professor Kerner, and by others that, as the roots are developed from the young seedling-tree, they are enclosed in the meshes of the fungus, and that this particular fungus is always a close associate of the roots as they grow in all directions. This fact we can see when we dig up the roots, but the most striking part of the story is this, that between this fungus root and the roots of the tree there is an organic connection, a division of labour which results in the tree receiving from the thread-like filaments of the fungus (_hyphæ_) both moisture and certain food stuffs from the ground, whilst the fungus gets in return such organic food as the tree has produced by means of its green leaves. Such cases as these present to us a manner of growth that is akin to social habit, and, strange as the union may appear, the circumstance is by no means uncommon in the vegetable kingdom. Stranger still perhaps is the union that is sometimes to be found between plants and some member of the animal world, of which union I shall give an example. On one of the larger species of sea-anemones (_Anthea cereus_) are small yellowish spots, which at one time were supposed to form part of the animal itself. But now the spots turn out to be vegetable cells, which can be isolated and induced to continue growing after the death of the anemone. The yellow spots are small algæ, and are furnished with chlorophyll. We must not regard the algæ as parasites on the sea-anemone, because they split up the carbon-dioxide under the influence of sunlight, and by so doing supply the anemone with oxygen for respiration, whilst the starch formed in the protoplasm of the algæ passes by diffusion into the anatomy of the animal. The transaction does not end here; the algæ in all probability receives nitrogenous substances in return, so that there is a mutual interchange.
[31] A word meaning two plants living together and deriving mutual benefit.
These are but one or two of the many wonderful phases of vegetable life, and I hope by thus briefly sketching a few of them my readers will be stimulated into a greater desire to explore God’s marvellous works in nature. There is an endless succession of such wonders to be investigated, but in order to find them we need a careful spirit of observation, passing nothing by without trying to learn something of its life history. Every hedgerow is full of delightful problems which will reward the interested student. A single field has been found to contain as many as fifty different species of plants, and every month of the year will present a new aspect of life. In the early spring we have the germinating seed and the tiny growing moss. A little later the opening buds with their wealth of interesting points to study, then the unfolding of the leaves and the gradual development of the flower. Here and there a climbing plant will engage our attention, its mode of climbing, its modification of part or parts to enable it successfully to overcome difficulties, its acceptance of help by the way—as in the case of a bryony tendril I once came across which cleverly attached itself to a minute hole in a laurel leaf—these and many other items will interest us in our walks if we keep our eyes open.
Then, as summer slowly passes away and autumn approaches, the fruits will engage our attention; their forms and shapes and modes of dispersion will afford ample subjects for study.
Winter, too, still brings its store of pleasure for the young botanist. Nature is not dead—she only sleeps. Nay, unless there is hard frost and deep snow the field for observation is just as wide and the harvest as plentiful as at any other season. Look on the old apple-trees and see what a host of tiny plantlets there is there to glean. Here are pale-green bearded moss and lichens, there a branch, perhaps, lies on the ground dead and decaying, under whose mouldering bark, if we have keen eyes, we may discover tiny tufts of the _Mycetozoa_, whose capsules, under the microscope (and in some cases even with the naked eye) are seen to give off clouds of spores, actually thrown out by the active movements of fine waving threads, a sight never to be forgotten when it has been watched under favourable circumstances. Winter is also rich in its harvest of mushroom-like fungi; these will well repay a little study. We shall be led to note their form, colour, mode, and habit of growth, how they affect certain trees and soils, and the important difference of some kinds being eatable and others virulently poisonous; the mere book student can know very little of the keen pleasure enjoyed by those who thus think about what they see, and are ever adding to their stock of knowledge by personal observation. I may close with some true and beautiful thoughts by one[32] who is herself a reverent student of the book of nature.
[32] Miss Blanche Atkinson, member of the Barmouth Branch of the Selborne Society.
“No pleasure is more sure and none less costly than that of watching day by day the signs of the coming spring; than the delight of seeing unexpectedly the first primrose, and of finding that the anemones and hyacinths are pushing their way to the sunshine. Year by year the miracle of springtime, when the green leaves are shaken forth from the hard bud is more miraculous. Summer after summer the lilies are fairer, the wild roses more exquisite, and on through the seasons the varying pleasures succeed one another. These things never pall; and if the time should come when we can no longer go out to the hills and woods to welcome the spring and revel in the bounty of summer we know that the past is not lost. The fair remembrance of the flowers of the field is safe in our hearts, and will ‘flash upon that inward eye which is the bliss of solitude.’”
_GLOSSARY OF SCIENTIFIC WORDS USED IN THIS VOLUME_
GLOSSARY.
A clear definition of scientific terms involves an exact knowledge of several languages, and when translated into technical phraseology these definitions often appear to me to be as difficult to a simple comprehension as the original words they purport to explain.
I have endeavoured therefore, in this glossary, to put scientific terms into plain words as clearly as was consistent with the facts, and not by any means to attempt a really exhaustive scientific definition.
A
_Absciss_—A term applied to a layer of separating cells.
_Absorption_—Taking in food by diffusion.
_Accessory_—Anything additional.
_Acetic_—Applied to an acid, sour.
_Achene_—A small dry indehiscent fruit with a leathery coat.
_Adaptation_—As applied to plant-life meaning the structure of the plant becoming most fitted to its environment.
_Adventitious_—Not developed in regular order.
_Aerial_—Inhabiting or existing in the air.
_Æstivation_—The arrangement of the parts of the flower in the bud.
_Albumen_—Reserve material contained in the seed, analogous to the white of an egg.
_Alchemilla_—A genus of rosaceous plants with small green flowers.
_Allium_—The onion genus.
_Altitude_—Height.
_Ampelopsis_—A genus of climbing plants allied to the vine whose leaves are brilliantly coloured in autumn.
_Anemophilous_—Pollinated by the wind.
_Animalcule_—Microscopic insect life.
_Annual_—A plant whose duration of life is one season: _Ex._ mignonette.
_Anthea_—A genus of sea-anemones.
_Anther_—The dilated end of the stamen in which the pollen grains are developed.
_Antheridium_—The case containing the antherozoids in cryptogamic plants.
_Antherozoides_—The male cell, or active member in fertilisation of cryptogams.
_Antirrhinum_—The snap-dragon genus.
_Antiseptic_—Counteracting decay or putrefaction.
_Apocarpous_—Applied to the pistil when the carpels are distinct or when the pistil consists of one carpel.
_Appendages_—Something hanging or appended, extra.
_Aquatic_—Relating to water.
_Araucaria_—The generic name of the monkey-puzzle tree.
_Archegonium_—The flask-shaped organ containing the female cell in the cryptogams.
_Arid_—Dry and waterless.
_Arillus_—An out-growth from the funicle (or seed-coat).
_Aristolochia_—A genus of climbing plants with curious “prison” flowers which attract and retain insects.
_Arum_—A genus of poisonous plants with an inflorescence consisting of spadix and spathe.
_Asexual_—Not sexual.
_Asparagus_—A genus of edible vegetables and climbing plants.
_Assimilation_—The conversion of crude food into protoplasm.
_Aster_—The generic name of the Michaelmas daisies.
_Avena_—The generic name of the oat.
_Awn_—The beard of barley and other corn.
_Axillary_—Growing in the axil of the leaf.
B
_Bacteria_—Minute one-celled living atoms, the cause of most contagious diseases.
_Bamboo_—A giant grass.
_Banana_—The fruit of the genus Musa.
_Bark_—The rough external part of a stem.
_Barm_—Same as yeast.
_Bast_—The fibrous tissue between the bark and the wood of a dicotyledonous stem.
_Begonia_—A genus of plants with bright flowers and oblique or one-sided leaves.
_Betula_—Generic name of the birch-tree.
_Biennial_—A plant whose duration of life is two seasons: _Ex._ Beetroot.
_Bifacial_—With upper and lower sides structurally different: _Ex._ laurel leaf.
_Bignonia_—A genus of flowering climbing plants.
_Blade_—The broad part of the leaf.
_Bougainvillia_—A genus of climbing tropical plants with bright pink bracts and small yellowish flowers.
_Bulb_—A dormant bud surrounded with fleshy scales.
_Bulbils_—Small bulbs.
_Bunium_—A genus of tuberous Umbelliferæ, earthnut.
_Buoyant_—Light, able to float in air or water.
_Button-wood_—A term applied in America to the plane tree.
C
_Cacti_—A family of succulent plants usually devoid of leaves.
_Caducous_—Quickly dropping off.
_Calceolaria_—A genus of herbaceous garden plants with pouched flowers.
_Calcium_—An element present in all calcareous rocks.
_Calyptra_—The hood of a moss-fruit.
_Calyx_—The outer whorl of the flower or floral envelope, cup-shaped.
_Cambium-layer_—A layer of active growing tissue.
_Campanula_—A genus of Alpine and herbaceous plants with bell-shaped flowers.
_Camphor_—A drug obtained by dry distillation of the leaves and stems of Camphora officinarum.
_Capillary_—Fine and minute, hair-like.
_Carbon-dioxide_—Symbol CO₂. A gas existing in small quantities in the air, otherwise called carbonic-acid gas.
_Carbon-monoxide_—A poisonous gas whose molecule is composed of one atom of carbon and one atom of oxygen.
_Carex_—A genus of sedge-like plants.
_Carpel_—A pistillate leaf, one of the component parts of the pistil.
_Caterpillar_—The form of an insect after it is hatched, first stage.
_Catkin_—A spike of staminate or pistillate flowers usually pendulous.
_Checkered_—Outlined into a square-like pattern.
_Chevaux de frise_—An obstacle consisting of iron spikes set in a framework of iron.
_Chlorophyll_—The green colouring matter of leaves and stems.
_Cholera_—A contagious disease.
_Chrysalis_—_pl._ Chrysalides. The form assumed by some insects before they reach the winged state.
_Chrysanthemum_—A genus of showy flowering plants belonging to the Compositæ.
_Cinchona_—A genus of trees yielding quinine.
_Circumnutation_—The rotating motion made by the growing point of the stem and leaf.
_Cissus_—A genus of vine-like plants often with brilliant coloured leaves.
_Climatic_—Influenced by a climate.
_Coalesce_—To fuse, cohering of parts not usually joined.
_Cocos-de-mer_—The large double cocoa-nut tree of the Seychelles Isles.
_Collomia_—A genus of plants whose seeds are remarkable for the spiral fibres which expand elastically when wetted.
_Compositæ_—A group of plants having an inflorescence of florets arranged upon a common receptacle or head.
_Concentric_—A number of rings having a common centre.
_Cone_—The hard woody fruits of the fir-tree.
_Coniferous_—Fir-like, or cone-like; belonging to the cone-bearing family.
_Continuity_—Unbroken succession.
_Corolla_—The second whorl of the floral envelope usually brightly coloured.
_Corpuscles_—Grains or granular.
_Correlation_—_i.e._, connection, interdependence.
_Cortex_—The bark or outer covering of stems.
_Cotyledon_—A seed leaf.
_Cruciferæ_—A group of plants having their petals arranged crosswise, with six stamens two of which are longer than the others.
_Cryptogamic_—Relating to flowerless plants.
_Culm_—The straw-like stems of the grasses.
_Cuscuta_—The dodder genus, parasitic upon flax and clovers, &c.
_Cuticle_—The exterior and thickened part of the epidermis.
_Cyclamen_—Dwarf primulaceous plants with shortened stems (corms).
D
_Dahlia_—A genus of tuberous-rooted plants.
_Darlingtonia_—A genus of Californian plants related to the side-saddle plants.
_Datura_—The generic name of the thorn-apple.
_Débris_—Remains, rubbish.
_Deciduous_—Applied to plants, the leaves of which fall off in autumn.
_Dehiscent_—Splitting open when ripe.
_Deodar_—A tree allied to the cedar of Lebanon.
_Dentaria_—A cruciferous plant bearing bulbils in the axils of the leaves.
_Diagrammatic_—Drawn to illustrate a statement.
_Dicotyledon_—A plant whose embryo has two primary seed-leaves.
_Diffusion_—The intermingling of fluids (gases or liquids).
_Diœcious_—When the pistillate flowers and staminate flowers are borne upon separate plants of the same species.
_Dispersion_—Scattering.
_Drosera_—The generic name of the sundews.
E
_Elastic_—Springy.
_Embryo_—The future plant contained in the substance of the seed.
_Embryo-sac_—The cavity in the substance of the nucellus, containing the egg-cell, which after fertilisation becomes the embryo.
_Endocarp_—The inside layer of the pericarp.
_Entomophilous_—Pollinated by insects.
_Epicarp_—The outside layer of the pericarp.
_Epidermis_—A layer of generally flattened cells forming the skin of the plant.
_Epigean_—Developed like the cotyledons of mustard, above ground.
_Epipetalous_—Growing upon the petals.
_Erysipelas_—A disease of the blood causing a red eruption.
_Eucalyptus_—The generic name of the Australian blue gum tree.
_Euonomin_—A dry extract made from the root-bark of Euonymus altro-purpureus, a North American shrub.
_Euonymus_—A genus of shrubs and hedgerow trees.
_Euphorbia_—The spurge genus.
_Exogen_—Growing by addition to outside of wood and inside of bark, synonymous with dicotyledon.
F
_Fermentation_—Changes that take place in wort when barm or yeast is added, or when fluids are exposed to the air. _See_ Yeast.
_Fertilised_—Completion of the act of fertilisation, _i.e._, fusion of the male element contained in the pollen tube with the egg cell of the ovule.
_Fibrous_—Meaning a structure of fine loose filaments or hairs, _i.e._, young rootlets.
_Fibro-vascular_—A compound tissue of fibres and vessels.
_Filament_—A thread-like fibre.
_Flaccid_—Want of firmness, soft and lax.
_Fructification_—The fruit system of a plant.
_Fuchsia_—A genus of exotic flowering plants having a petaloid calyx.
_Function_—As applied to plant-life, meaning the use and lifework of the members of a plant.
_Fungoid_—Growth like a fungus.
G
_Gamopetalous_—Petals united.
_Gamosepalous_—Sepals united.
_Genesis_—Creation, production.
_Germinate_—The change of the seed from the dormant state to the active growing stage.
_Gloxinia_—A genus of popular hothouse plants with large handsome flowers.
H
_Habitat_—The natural abode of a plant.
_Herbaceous_—Applied to plants which do not form a hard woody stem.
_Herbarium_—A collection of dried plants.
_Hexagonal_—A six-sided and angled figure.
_Hibernating_—Sleeping, a dormant condition.
_Hilum_—The black scar on a bean seed.
_Hippuris_—A genus of aquatic flowering plants.
_Horizontal_—Parallel to the horizon level.
_Hoya_—A genus of tropical climbing plants.
_Hyacinths_—Bulbous plants.
_Hydrangea_—A genus of flowering shrubs.
_Hygienic_—Relating to the preservation of health.
_Hygrometric_—Moisture and its influence.
_Hygroscopic_—Applied to the film of water surrounding the particles of the soil.
_Hypericum_—The generic name of the St. John’s wort.
_Hyphæ_—Filaments or threads of the fungus spawn.
_Hypogean_—Development of the cotyledons under ground.
I
_Impatiens_—The generic name of the balsam.
_Impervious_—Not to be penetrated by water.
_Insectivorous_—Catching and killing insects, plants that have this power and can absorb the decomposed insects.
_Insoluble_—Substances that do not dissolve in water.
_Intercellular_—Spaces between the cells.
_Internode_—The space between two nodes.
_Involucre_—A whorl of bracts.
_Iodine_—A soluble substance extracted from kelp and used as a test for starch.
L
_Laburnum_—Yellow-flowered trees allied to the Pea family (Leguminosæ).
_Legume_—The dehiscent fruit of the pea family, a pod.
_Leguminosæ_—A family of plants having for their fruit a legume or pod, _i.e._, Pea, Laburnum.
_Lenticels_—Minute pores in the bark.
_Liane_—A hanging root or stem.
_Liber_—The inner bark, same as phloëm.
_Linnæa_—A genus of dwarf trailing plants.
_Luscious_—Sweet and succulent.
M
_Magnesium_—The metallic base of magnesia.
_Magnolia_—A genus of flowering shrubs and trees.
_Mahonia_—A genus of evergreen shrubs belonging to the barberry family.
_Martynia_—A genus of plants having capsules with long curved hooks.
_Melampyrum_—A genus of dwarf flowering plants partly parasitic.
_Membranous_—Thin and destitute of green colour usually applied to bracts.
_Mesocarp_—The central layer of the pericarp.
_Mesophyll_—The ground tissue of the leaf.
_Metabolism_—Changes which take place in protoplasm and which it causes in other substances.
_Microbes_—A term applied to one-celled plant atoms, like bacteria.
_Micropyle_—A small pore in the coats of the ovule through which the pollen tube passes.
_Modicum_—Moderate sized; a small quantity.
_Monocotyledon_—A plant whose seed is furnished with one seed leaf.
_Monœcious_—Applied to a plant when the stamens and pistil are in distinct flowers.
_Monstera_—A genus of climbing aroids with edible fruit.
_Mucilaginous_—Sticky, gumlike, secreting mucilage.
_Mucuna_—A genus of Brazilian Leguminosæ, yielding the cowage (consisting of intensely irritating hairs), of the Materia Medica.
_Mutualism_—Interchange of some advantage, botanically applied to the union of two dissimilar plants which live in _close_ contact with each other to their mutual benefit.
_Mycelium_—The root-like colourless filaments of fungi.
_Mycetozoa_—A term applied to the slime-fungi.
N
_Nectary_—A honey secreting gland or spur.
_Nemophila_—A genus of dwarf annual flowering plants.
_Nepenthes_—A genus of plants having as a prolongation of the midrib of the leaves, ascidia or pitchers.
_Nocturnal_—Happening by night.
_Node_—The exact point on the stem from which the leaf is developed.
_Normal_—Regular, unaffected by any modification.
_Noxious_—Hurtful or poisonous.
_Nucellus_—The internal tissue of the ovule within which the embryo-sac is embedded.
_Nutrition_—The process and function of taking in food for the purpose of growth and to replace waste.
O
_Orchis_—A genus of the orchid family growing in the soil.
_Osmosis_—The passage of fluids through a membrane.
_Ovary_—The ovule case, that part of the carpel that bears ovules.
_Ovule_—The structure which after fertilisation forms the seed.
_Ovum_—The egg cell of the ovule.
_Oxalis_—The generic name of the wood sorrel.
_Oxygen_—A gas, one of the constituents of the atmosphere.
P
_Palisade-tissue_—A tissue of oblong cells placed side by side at right angles to the flat surface of the leaf.
_Papilionaceous_—Butterfly shaped.
_Pappus_—A light hairy development from the calyx of some plants.
_Parasitic_—The habit of growing upon and deriving nourishment from another plant.
_Pellucid_—Shining and transparent.
_Perennial_—Plants that live for an indefinite period.
_Perianth_—A term used when there is no distinction between calyx and corolla.
_Pericarp_—The ripened walls of the ovary constituting the structure of the fruit.
_Persistent_—Applied to the parts of the flower that remain on for some time.
_Petunia_—A genus of Brazilian Solanaceæ.
_Philodendron_—A genus of aroids usually climbers.
_Phleum_—A grass.
_Phloëm_—The inner bark, containing sieve-tubes.
_Phosphate_—A salt formed by the union of phosphoric acid with some base.
_Phyllotaxis_—The law of leaf arrangement.
_Physalis_—The generic name of the winter cherry.
_Physiological_—Having reference to the function or life work of the plant.
_Picea_—A genus of the Conifer family.
_Pinetum_—A garden devoted to the culture of pine-trees.
_Pinguicula_—The generic name of the butterworts.
_Pinus_—A genus of the Conifer family.
_Pistil_—The female part of the flower consisting of ovary, style, and stigma.
_Pistillate_—Applied to flowers having the pistil only.
_Pith_—The soft tissue in the centre of the stem.
_Plumbago_—The generic name of the leadworts, small flowering plants and shrubs.
_Plumule_—The first stem shoot of the germinating seed.
_Poa_—A grass.
_Poinsettia_—A genus of Mexican plants having bright scarlet bracts and small flowers.
_Pollard_—A tree trunk with its branches cut short.
_Pollen_—The fertilising or male part of the flower.
_Pollination_—The act of conveying the pollen from the stamen to the stigma.
_Polypetalous_—Separate or many petals.
_Polysepalous_—Separate or many sepals.
_Polytrichum_—The generic name of the hair moss.
_Potassium_—The metallic base of potash.
_Proboscis_—The feeling and feeding organ of an insect.
_Prothallus_—The first growth when the spore of a fern germinates.
_Protococcus_—A genus of unicellular plants forming a green stain upon trees, &c.
_Protonema_—The first growth of the moss-spore.
_Protoplasm_—A highly complex substance forming the essential part of all living cells, and to which all life growth is due.
_Prototypes_—First forms of plant-life.
_Psamma_—A genus of the grass family.
_Pseudo-bulb_—A swollen stem common in the epiphytic orchids.
_Pteris_—The generic name of the bracken fern.
Q
_Quiescent_—Inactive, dormant.
_Quinine_—An alkaloid extracted from the cinchona trees.
R
_Radicle_—The first formed root when a seed germinates.
_Rafflesia_—A genus of brown leafless parasites.
_Receptacle_—That part of the stalk on which the flower is developed.
_Resin_—A secretion from certain trees which hardens on exposure.
_Respiration_—The process of breathing.
_Rhinanthus_—The generic name of the yellow-rattle (a root parasite).
_Rhododendron_—A genus of popular flowering shrubs and dwarf trees.
_Root-cap_—A loose covering of tissue that protects the extreme point of the growing root.
_Root-hairs_—The delicate unicellular hairs found on the young root.
S
_Salicine_—A substance obtained from the bark of willows, soluble in water and alcohol, and crystallising in bright white needles.
_Salvia_—A genus of labiate plants.
_Samara_—Winged fruit.
_Saprophyte_—Plants that live upon decaying organic matter.
_Sarracenia_—The generic name of the North American side-saddle plants.
_Saxifraga_—A genus of dwarf Alpine plants.
_Scales_—Rudimentary leaves.
_Secretion_—Applied to substances like resin and honey, the production of assimilation and metabolism.
_Sedum_—A genus of succulent Alpine plants.
_Soluble_—Any substance that dissolves in water.
_Spadix_—The inflorescence of the Aroideæ.
_Spathe_—The bract of the Aroideæ.
_Sporangium_—The spore-case of some of the cryptogamia.
_Spurious_—False.
_Stapelia_—A genus of succulent plants, very poisonous and fœtid.
_Starch_—Colourless grains, a product of assimilation in the leaf.
_Stigma_—The receptive part of the pistil.
_Stipa_—A genus of the grass family.
_Stipules_—Small outgrowths at the base of the petiole.
_Stomata_—Minute pores in the epidermis of the leaf or green stem.
_Sulphate_—A salt formed by the combination of sulphuric acid with some base.
_Sycamore_—The plane tree of Scotland, Acer pseudoplatanus.
_Symbiosis_—Mutualism, a living for one another, interchange of benefits by united growth.
_Syncarpous_—United carpels.
T
_Tannin_—A substance widely diffused through the leaves and stems of plants, of an astringent character.
_Tap-root_—A root that forms an unbranched tapering axis: _Ex._, carrot.
_Tendril_—A coiled or hooked filament modified to assist plants to climb.
_Tentacles_—The glandular and feeler-like hairs of the sundew.
_Terminal_—At the apex or end.
_Testa_—The skin of seed.
_Tigellum_—The first stalk of the seed bearing the cotyledons.
_Tillandsia_—A New World genus of perching or epiphytic plants.
_Tissue_—A group of cells; having a common origin.
_Tormentilla_—A genus of small creeping rosaceous plants.
_Transpiration_—The giving off of water vapour from the surface of leaves and stems.
_Tricyrtis_—The generic name of the toad-lily.
_Tuber_—A fleshy root or succulent underground stem.
U
_Umbelliferæ_—A group of plants having an umbellate arrangement of the inflorescence or flower-head.
V
_Vallisneria_—A genus of aquatic flowering plants.
_Valved_—Having valves, _e.g._, anther of the barberry.
_Vapour_—Gas into which most liquids and solids are converted by heat.
_Vasculum_—A little vessel or box for collecting botanical and other specimens.
_Venation_—The arrangement of veins in a leaf.
W
_Weigelia_—A genus of flowering shrubs allied to Honeysuckle.
_Whorl_—An arrangement of leaves or parts of the flower in rings.
_Wort_—Sweet unfermented new beer.
Y
_Yeast_—A unicellular plant that sets up fermentation under certain conditions.
The Gresham Press,
UNWIN BROTHERS,
WOKING AND LONDON.
Transcriber’s notes
The text contains some inconsistencies in the usage of hyphens. Only those have been corrected where the majority was spelled otherwise. All corrections made are listed below.
To represent formatting the following conventions are used:
_word_ means that “word” is in italics;
+word+ means that “word” is in small capitals;
=word= means that “word” is in bold.
The asterism (⁂) on page 8 should be inverted, but this was not possible to achieve since no such symbol exists.
Corrections
Page 20 In the list of illustrations hyphens removed from
“MONO-COTYLEDON” and “DI-COTYLEDON”, to match the captions of the
illustrations;
Page 21 In the list of illustrations “WHITE LILY PISTIL” changed
to “WHITE-LILY PISTIL” and “POLLEN-TUBE” changed to “POLLEN TUBE”,
to match the captions of the illustrations;
Page 22 In the list of illustrations “DIAGRAM OF TRANSFUSION” changed
to “TRANSFUSION DIAGRAM”, to match the caption of the illustration;
Page 22 In the list of illustrations “FLAVA” added behind “SARRACENIA”,
to match the caption of the illustration;
Page 42 “Another of these perching-plants is _Tillandsia Usnoides_”
changed to “Another of these perching-plants is _Tillandsia
Usneoides_”;
Page 62 “aërial” in “send down slender aërial roots” changed to
“aerial”, to match the spelling in the rest of the text;
Page 69 In “We may look upon the earth as being a sort of store-house”,
“store-house” changed to “storehouse” to match the spelling in the
rest of the text;
Page 100 In “in a skeleton leaf, the mid-rib”, “mid-rib” changed to
“midrib”, to match the spelling in the rest of the text;
Page 102 one occurrence of “called” removed from “belonging to this
great division are called called dicotyledons”;
Page 136 “to render the bud waterpoof” changed to “to render the bud
waterproof”;
Page 138 In “wood-sorrel is rolled into a spiral”, “wood-sorrel” is
changed to “woodsorrel”, to match the spelling in the rest of the
text;
Page 159 In “resembling the pine-apple plant”, the hyphen is removed
from “pine-apple”, to match the spelling in the rest of the text;
Page 202 “so that at length the seed-coats” changed to “so that at
length the seed-coat”;
Page 223 “PINE CONES” in the caption of the illustration, change to
“PINE-CONES” (in the list of illustrations too) to match the spelling
in the rest of the text and “fir-cones”;
Page 232 “have seeds with wings lightly twisted” changed to “have seeds
with wings slightly twisted”;
Page 238 “COCOS DE MER” in the caption of the illustration is
hyphenated (in the list of illustrations too) to match the spelling
in the rest of the text;
Page 246 “ivy-leafed toadflax” changed to “ivy-leafed toad-flax” to
match the spelling in the rest of the text;
Page 263 “the little epiphyte (mentioned in our first chapter),
_Tillandsia usnoides_” changed to “the little epiphyte (mentioned
in our first chapter), _Tillandsia usneoides_”;
Page 263 “by decomposing the carbon dioxide” changed to “by decomposing
the carbon-dioxide” to match the spelling in the rest of the text;
Page 280 “absorbs this carbon dioxide and effects” changed to “absorbs
this carbon-dioxide and effects” to match the spelling in the rest
of the text;
Page 337 “into technical phraseology these defininition” changed to
“into technical phraseology these definitions”;
Page 340 comma after “tuberous Umbelliferæ, earthnut” changed to
period;
Page 348 period added after “flowering plants and shrubs”.
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Glimpses into plant-lifeChapter XIV: Habit of Growth in Plants
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