4.5 Article

IMPACT OF SPATIAL CONSTRAINTS DURING SEED GERMINATION ON THE EVOLUTION OF ANGIOSPERM COTYLEDONS: A CASE STUDY FROM TROPICAL HYDATELLACEAE (NYMPHAEALES)

期刊

AMERICAN JOURNAL OF BOTANY
卷 100, 期 5, 页码 824-843

出版社

WILEY
DOI: 10.3732/ajb.1200620

关键词

embryo; heterocotyly; homeosis; homology; mesocotyl; monocotyledons; phyllotaxy; seed plants; syncotyly; Trithuria

资金

  1. Australian Geographic Society
  2. Russian Foundation for Basic Research
  3. Bentham-Moxon Trust
  4. Royal Society
  5. RFBR [12-04-01070]

向作者/读者索取更多资源

Premise of the study: A bipolar embryo with cotyledons is a characteristic feature that appeared early in the evolution of seed plants. Cotyledon number is an important character in angiosperm classification. We explore the links between functional aspects of seed germination and the number and location of the cotyledons, using as a model the early-divergent angiosperm family Hydatellaceae, in which seedlings are superficially monocot-like. Methods: Seedlings of two species of tropical Hydatellaceae were studied using light and scanning electron microscopy. Key results: Seedlings of Trithuria cowieana bear two free cotyledons. Each cotyledon possesses a green, filiform, vascularized blade that resembles subsequent leaves, and a basal, nonvascularized, haustorial outgrowth that remains in close contact with the endosperm. Seedlings of Trithuria konkanensis have two free cotyledonary haustoria inserted close to each other and a leaf blade probably belonging to one of the cotyledons. The cotyledonary node elongates between the haustoria and the leaf blade to form a mesocotyl. Conclusions: To date, the absence or presence of a cotyledonary tube represents the only known qualitative morphological difference between the two major clades of Hydatellaceae. Cotyledons with a haustorium and leaf blade are unusual at the scale of seed plants and probably evolved due to homeosis. The mesocotyl of T. konkanensis resembles that of grasses and sedges. Seedling diversity in Hydatellaceae and other seed plants is linked with the principal physical and spatial constraint of their embryo structure, with the primary root and shoot apical meristems located at opposite poles, and haustorial cotyledon tips.

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