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Studies on the early development of zygotic and synergid embryo and endosperm in polyembryonic rice ApIII

机译:多胚水稻ApIII合子和合子胚与胚乳的早期发育研究

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A morphological, cytological and embryological investigation was conducted on the early development of embryo and endosperm in polyembryonic rice (Oryza sativa L.) ApIII. We found that the percentage of single-, twin-and triple-seedlings from mature caryopses was 82.4-85.6%, 11.3-14.6% and 2.0-3.8%, respectively. From twin-seedlings one of the plants and in the triple-seedlings usually two seedlings were very weak having a mortality of about 50-60% and over 95%, respectively, and most of the dead seedlings were haploid. In addition, among 674 young caryopses the percentage of single-, double- and triple-embryo sacs was 77.60%, 18.10% and 4.30%, respectively. The development of both embryo and endosperm was observed in the embryo sacs of 653 young caryopses, while embryo development occurred in absence of endosperm in the embryo sacs of 21 ones. Furthermore, after pollen tube penetration, frequently one, rarely two, additional embryos arise via apogamy from the typical specialized synergid of normal egg apparatus with a collapsed cap-neck region that had a damaged filiform apparatus at the micropylar end. Finally, the formation of a strikingly degenerated endosperm cell region is a specialized functional structure that serves for the active transport of metabolites from endosperm to the developing embryo. Taken together, these results suggest that synergid apogamy seems to be the unique reason of polyembryony, poor growth and high mortality of many seedlings may be due to haploidy, and high genetic stability of polyembryony occurs in rice ApIII.
机译:对多胚水稻ApIII胚和胚乳的早期发育进行了形态学,细胞学和胚胎学研究。我们发现成熟章鱼的单,双和三苗的百分比分别为82.4-85.6%,11.3-14.6%和2.0-3.8%。在双苗中,其中一株和三苗中的两株幼苗通常非常脆弱,死亡率分别约为50-60%和超过95%,并且大多数死苗是单倍体。此外,在674个年轻的颈章鱼中,单,双和三胚囊的百分比分别为77.60%,18.10%和4.30%。在653个年轻的颈章鱼的胚囊中观察到胚和胚乳的发育,而在21个胚囊中没有胚乳的胚发生。此外,在花粉管穿透后,通过单亲配子从正常卵器的典型特化协同体中出现一个通常很少有的另外的胚,该正常卵器具有塌陷的帽颈区域,该区域在毛孔的末端有一个被破坏的丝状体。最后,惊人地退化的胚乳细胞区域的形成是一种专门的功能结构,用于代谢产物从胚乳到发育中的胚的主动转运。综上所述,这些结果表明协同单性配种似乎是多胚的唯一原因,许多幼苗的生长不良和高死亡率可能是由于单倍体,并且水稻ApIII的多胚遗传稳定性很高。

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