Institute of Plant Genetics, Leibniz Universitaet Hannover, Herrenhaeuser Str. 2, D-30419 Hannover, Germany.
Plant Sci. 2013 Mar;201-202:52-65. doi: 10.1016/j.plantsci.2012.11.004. Epub 2012 Nov 28.
The endosperm plays an important role for the development of zygotic embryos, while somatic embryos lack a seed coat and endosperm and often show physiological disorders. This study aims at elucidating the cellular and physiological processes within the endosperm of the ornamental species Cyclamen persicum Mill. Histological analyses were performed from 0 to 11 weeks after pollination (WAP). At 3WAP, a syncytium was clearly visible with a globular zygotic embryo. From 4WAP, cellularization of the endosperm, at 5WAP a small torpedo shaped embryo, and from 7WAP cell expansion was observed. By 11WAP the endosperm appeared fully differentiated. Total soluble proteins were extracted from the endosperm at 4, 5, 7, 9 and 11WAP and resolved using two dimensional isoelectric focussing/sodium dodecyl sulphate-polyacrylamide gel electrophoresis (2D IEF/SDS-PAGE). A shift from high-molecular-mass proteins to low-molecular-mass proteins during endosperm development was observed. A total of 1137proteinspots/gel were detected in the three protein fractions extracted at 7, 9 and 11WAP. Mass spectrometry analysis of the 48 predominant protein spots in endosperm at 7, 9 and 11WAP resulted in the identification of 62 proteins, ten of which were described for the first time in Cyclamen. Additionally, 186 proteins were identified using the C. persicum embryo proteome reference map. Proteins involved in abscisic acid signalling and oxidative stress responsive proteins were found to be important for seed development in Cyclamen. The new insights into endosperm physiology including storage compounds are discussed.
胚乳在合子胚胎的发育中起着重要作用,而体细胞胚缺乏种皮和胚乳,常表现出生理紊乱。本研究旨在阐明观赏植物仙客来的胚乳中的细胞和生理过程。从授粉后 0 到 11 周(WAP)进行组织学分析。在 3WAP 时,可以清楚地看到一个合胞体,其中有一个球形的合子胚胎。从 4WAP 开始,胚乳发生细胞化,在 5WAP 时出现一个小鱼雷形胚胎,从 7WAP 开始观察到细胞扩展。到 11WAP 时,胚乳看起来已完全分化。在 4、5、7、9 和 11WAP 时从胚乳中提取总可溶性蛋白,并使用二维等电聚焦/十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(2DIEF/SDS-PAGE)进行分析。在胚乳发育过程中观察到从高分子质量蛋白向低分子质量蛋白的转变。在从 7、9 和 11WAP 提取的三个蛋白馏分中检测到 1137 个蛋白斑点/凝胶。对 7、9 和 11WAP 胚乳中 48 个主要蛋白斑点的质谱分析导致鉴定出 62 种蛋白,其中 10 种在仙客来中首次描述。此外,使用 C. persicum 胚胎蛋白质组参考图谱鉴定了 186 种蛋白。发现参与脱落酸信号和氧化应激响应蛋白的蛋白对于仙客来种子发育很重要。讨论了胚乳生理学包括储存化合物的新见解。