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- W4307751570 abstract "A review of the fossil record coupled with insights gained from molecular and developmental biology reveal a series of body plan transformations that gave rise to the first land plants. Across diverse algal clades, including the green algae and their descendants, the plant body plan underwent a unicellul ar $to$ colonial $to$ simple multicellular $to ,,$complex multicellular transformation series. The colonization of land involved increasing body size and associated cell specialization, including cells capable of hydraulic transport. The evolution of the life-cycle that characterizes all known land plant species involved a divergence in body plan phenotypes between the haploid and diploid generations, one adapted to facilitate sexual reproduction (a free-water dependent gametophyte), and another adapted to the dissemination of spores (a more water-independent sporophyte). The amplification of this phenotypic divergence, combined with indeterminate growth in body size, resulted in a desiccation-adapted branched sporophyte with a cuticularized epidermis, stomates, and vascular tissues. Throughout the evolution of the land plants, the body plans of the sporophyte generation involved axiation, i.e., the acquisition of a cylindrical geometry and subsequent organographic specializations." @default.
- W4307751570 created "2022-11-05" @default.
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- W4307751570 date "2022-10-31" @default.
- W4307751570 modified "2023-09-29" @default.
- W4307751570 title "Viridiplantae Body Plans Viewed Through the Lens of the Fossil Record and Molecular Biology" @default.
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- W4307751570 doi "https://doi.org/10.1093/icb/icac150" @default.
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