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Vascular plants: ferns and relatives - Plant Biology

By net, From net, Date: 2008-01-07 11:27:30

Vascular plants鈥擣erns and relatives

These plants are seedless plants, but unlike the bryophytes, they do have vascular tissue (xylem and phloem). Because of the presence of vascular tissue, the leaves of ferns are their relatives are better organized than the mosses and liverworts.

Four divisions:

1. Division Psilotophyta

Overview:

The sporophytes in this division have neither true leaves nor roots, their stems and rhizomes fork evenly.

Whisk ferns鈥擶hisk ferns are the simplest of the vascular plants. They consist of evenly forking stems with small protuberances called enations. They lack leaves and roots. These ferns have a central vascular cylinder composed of xylem and phloem.

Reproduction鈥擶hisk ferns reproduce via gametangia. Spores will germinate into tiny saprophytic gametophytes on the surfaces which antheridia and archegonia are scattered. The resulting zygote will develop a foot and a rhizome. An upright stem is produced when the foot separates from the rhizome.

2. Division Lycophyta

Overview:

These plants have stems that are covered with photosynthetic microphylls. Microphylls are leaves with a single vein and a trace that is not associated with a leaf gap.

Club mosses 鈥搕here are two types of club mosses that still have living representatives. Ground pines will develop sporangia in the axils of sporophylls. Each gametophyte may be capable of producing several sporophytes. The second type of club moss include the spike mosses. These plants are heterosporous and have a ligule, or little tongue, on each microphyll. The microspores will develop into male gametophytes with antheridia (sperm producing); while the megaspores will develop into female gametophytes with archegonia (egg producing).聽 The biggest difference between the ground pines and the spike mosses is the presence of the ligule (spike mosses) and the spike mosses produce two types of spores and gametophytes (heterospory).

Quillworts

Quillworts are found partially submerged in water for at least part of the year. Their microphylls (leaves) look somewhat like porcupine quills although they lack the rigidity of an actual porcupine quills. The microphylls arise from a corm like base. The corm base has a cambium that will remain active for many years.

Club moss spores have many uses including flash powder, medicine, talcum powder, as well as ornamental uses and novelty items.

3. Division Sphenophyta

Overview:

The plants in this division have ribbed stems that contain silica deposits in the epidermal cells. Their scale-like microphylls lack chlorophyll. However, the silica in the stems makes these plants useful for scouring. Horsetails and scouring rushes occur in both the branched and unbranched forms. Either way, they are jointed stems with small whorls of scale-like leaves at the base of the plant.

Horsetails, or Equisetum, are hollow in the center of their stem which contains cylinders of carinal and vallecular canals. The hollow stems arise from extensively branching rhizomes just beneath the surface of the soil. Some types of horsetails have non-photosynthetic stems. They reproduce via strobili, cones, that are produced in the spring in all species. Horsetail spores have ribbon like elaters that are sensitive to humidity. An interesting note about horsetails; usually equal numbers of male and female gametophytes are produced by these plants, however, the female gametophytes may become bisexual and the development of more that one sporophyte from a gametophyte is common.

As mentioned, horsetails have been used for scouring. They can be eaten if the silica is removed, however, they really don鈥檛 make for a feast. Plants from this division have also been used for medicinal purposes including as a diuretic, treatment for tuberculosis and treating venereal diseases. Horsetails have been used as an ingredient in shampoos and metal polish.

4. Division Pterophyta

Ferns are the most common and best recognized examples of the vascular seedless plants. The leaves of ferns have megaphylls鈥攐r leaves with more than one vein and a leaf trace/leaf gap association鈥攚hich are large and usually subdivided into many lobes. Hence, the 鈥榝inger鈥