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胚乳产生的乙烯参与了佛手瓜珠心程序性细胞死亡的调节。

Ethylene produced by the endosperm is involved in the regulation of nucellus programmed cell death in Sechium edule Sw.

机构信息

Department of Biology, University of Pisa, Via Ghini 5, 56126 Pisa, Italy.

出版信息

Plant Sci. 2012 May;187:31-8. doi: 10.1016/j.plantsci.2012.01.011. Epub 2012 Feb 2.

Abstract

The nucellus is a maternal tissue that feeds the developing embryo and the secondary endosperm. During seed development the cells of the nucellus suffer a degenerative process early after fertilization as the cellular endosperm expands and accumulates reserves. Nucellar cell degeneration has been characterized as a form of developmentally programmed cell death (PCD). In this work we analysed the role of the endosperm as main regulator of nucellus PCD. We demonstrated that endosperm produces high amount of ethylene, nitric oxide and indoleacetic acid. We examined the role of these small and diffusible signalling molecules in the regulation of nucellus PCD and we tried to elucidate how they can cooperate and regulate each other into the endosperm. We showed that ethylene acts a positive regulator of nucellus PCD and its synthesis can be in part induced by nitric oxide. High levels of IAA were detected both in the endosperm and in dying nucellus but this hormone is not directly involved in the execution of PCD.

摘要

珠心是一种母体组织,为发育中的胚胎和次生胚乳提供养分。在种子发育过程中,珠心细胞在受精后早期就经历了退化过程,因为细胞胚乳扩张并积累了储备物质。珠心细胞的退化已被描述为一种发育程序化细胞死亡(PCD)的形式。在这项工作中,我们分析了胚乳作为珠心 PCD 主要调节者的作用。我们证明了胚乳会产生大量的乙烯、一氧化氮和吲哚乙酸。我们研究了这些小而扩散的信号分子在调节珠心 PCD 中的作用,并试图阐明它们如何在胚乳中相互合作和调节。我们表明,乙烯是珠心 PCD 的正调节剂,其合成部分可以被一氧化氮诱导。在胚乳和正在死亡的珠心中都检测到了高浓度的 IAA,但这种激素并不直接参与 PCD 的执行。

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