Biology:Non-vascular plant

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Short description: Plant without a vascular system
Mosses are examples of non-vascular plant

Non-vascular plants are plants without a vascular system consisting of xylem and phloem. Instead, they may possess simpler tissues that have specialized functions for the internal transport of water.[citation needed]

Non-vascular plants include two distantly related groups:

These groups are sometimes called "lower plants", referring to their status as the earliest plant groups to evolve, but the usage is imprecise since both groups are polyphyletic and may be used to include vascular cryptogams, such as the ferns and fern allies that reproduce using spores. Non-vascular plants are often among the first species to move into new and inhospitable territories, along with prokaryotes and protists, and thus function as pioneer species.[citation needed]

Non-vascular plants do not have a wide variety of specialized tissue types.[citation needed] Mosses and leafy liverworts have structures called phyllids that resemble leaves, but only consist of single sheets of cells with no internal air spaces, no cuticle or stomata, and no xylem or phloem. Consequently, phyllids are unable to control the rate of water loss from their tissues and are said to be poikilohydric. Some liverworts, such as Marchantia, have a cuticle, and the sporophytes of mosses have both cuticles and stomata, which were important in the evolution of land plants.[3]

All land plants have a life cycle with an alternation of generations between a diploid sporophyte and a haploid gametophyte, but in all non-vascular land plants, gametophyte generation is dominant. In these plants, the sporophytes grow from and are dependent on gametophytes for taking in water and mineral nutrients and for provision of photosynthate, the products of photosynthesis.

References

  1. Copeland, H.F. (1956). The classification of lower organisms. Palo Alto: Pacific Books. https://archive.org/details/classificationof00cope. 
  2. Adl, S.M. (2005). "The new higher level classification of eukaryotes with emphasis on the taxonomy of protists". Journal of Eukaryotic Microbiology 52 (5): 399–451. doi:10.1111/j.1550-7408.2005.00053.x. PMID 16248873. 
  3. Glime (April 19, 2015). "WATER RELATIONS: PLANT STRATEGIES". http://www.bryoecol.mtu.edu/chapters/7-3WaterStratPlant.pdf.