玉米大刍草雌配子体发育及双受精研究。parviglumis(禾本科)。

Sexual Plant Reproduction Pub Date : 2011-09-01 Epub Date: 2011-03-06 DOI:10.1007/s00497-011-0164-1
Chi-Chih Wu, Pamela K Diggle, William E Friedman
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引用次数: 14

摘要

在玉米的进化过程中,驯化在营养和生殖特征的结构转变中发挥了重要作用,这些特征使其区别于其最近的野生近亲Zea mays subsp。小檗属植物。然而,驯化过程对雌性配子体的细胞特征和受精后的后续生殖事件的影响知之甚少,尽管它们是植物有性生殖的重要组成部分。为了揭示玉米祖先驯化过程中与生殖过程相关的关键结构和进化转变,我们研究了巴尔萨斯·特奥斯特(Balsas teosinte)雌性配子体和早期发育种子的发育和细胞特征。结果表明,大藿香的雌性配子体是对足细胞增生的蓼型配子体的变异,与玉米的配子体相似。大刍草的受精过程也与驯化玉米基本相似。与玉米相反,与胚胎和胚乳发育有关的许多事件似乎在大刍草中开始得更早。我们的研究表明,雌性配子体发育与对足体增殖的模式在玉米的种和亚种中是普遍的,并且在玉米驯化之前就已经进化了。此外,我们认为玉米的游离核胚乳期相对较长与果实(核或颖果)的发育有关,与大刍草相比,其胚乳更大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Female gametophyte development and double fertilization in Balsas teosinte, Zea mays subsp. parviglumis (Poaceae).

Over the course of maize evolution, domestication played a major role in the structural transition of the vegetative and reproductive characteristics that distinguish it from its closest wild relative, Zea mays subsp. parviglumis (Balsas teosinte). Little is known, however, about impacts of the domestication process on the cellular features of the female gametophyte and the subsequent reproductive events after fertilization, even though they are essential components of plant sexual reproduction. In this study, we investigated the developmental and cellular features of the Balsas teosinte female gametophyte and early developing seed in order to unravel the key structural and evolutionary transitions of the reproductive process associated with the domestication of the ancestor of maize. Our results show that the female gametophyte of Balsas teosinte is a variation of the Polygonum type with proliferative antipodal cells and is similar to that of maize. The fertilization process of Balsas teosinte also is basically similar to domesticated maize. In contrast to maize, many events associated with the development of the embryo and endosperm appear to be initiated earlier in Balsas teosinte. Our study suggests that the pattern of female gametophyte development with antipodal proliferation is common among species and subspecies of Zea and evolved before maize domestication. In addition, we propose that the relatively longer duration of the free nuclear endosperm phase in maize is correlated with the development of a larger fruit (kernel or caryopsis) and with a bigger endosperm compared with Balsas teosinte.

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来源期刊
Sexual Plant Reproduction
Sexual Plant Reproduction 生物-生殖生物学
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