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藜麦胚乳发育过程中的细胞程序性死亡。

Programmed cell death during quinoa perisperm development.

机构信息

Departamento de Biodiversidad y Biología Experimenta, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Intendente Guiraldes 2160, Pab. 2, Ciudad Universitaria, C1428EGA, Argentina.

出版信息

J Exp Bot. 2013 Aug;64(11):3313-25. doi: 10.1093/jxb/ert170. Epub 2013 Jul 5.

Abstract

At seed maturity, quinoa (Chenopodium quinoa Willd.) perisperm consists of uniform, non-living, thin-walled cells full of starch grains. The objective of the present study was to study quinoa perisperm development and describe the programme of cell death that affects the entire tissue. A number of parameters typically measured during programmed cell death (PCD), such as cellular morphological changes in nuclei and cytoplasm, endoreduplication, DNA fragmentation, and the participation of nucleases and caspase-like proteases in nucleus dismantling, were evaluated; morphological changes in cytoplasm included subcellular aspects related to starch accumulation. This study proved that, following fertilization, the perisperm of quinoa simultaneously accumulates storage reserves and degenerates, both processes mediated by a programme of developmentally controlled cell death. The novel findings regarding perisperm development provide a starting point for further research in the Amaranthaceae genera, such as comparing seeds with and without perisperm, and specifying phylogeny and evolution within this taxon. Wherever possible and appropriate, differences between quinoa perisperm and grass starchy endosperm--a morphologically and functionally similar, although genetically different tissue--were highlighted and discussed.

摘要

在种子成熟时,藜麦(Chenopodium quinoa Willd.)的糊粉层由均匀的、无生命的、薄壁细胞组成,充满了淀粉粒。本研究的目的是研究藜麦糊粉层的发育,并描述影响整个组织的细胞死亡程序。对通常在细胞程序性死亡(PCD)期间测量的一些参数进行了评估,如细胞核和细胞质的细胞形态变化、核内多倍体、DNA 片段化以及核酶和半胱天冬酶样蛋白酶在核解体中的参与;细胞质中的形态变化包括与淀粉积累有关的亚细胞方面。这项研究证明,在受精后,藜麦的糊粉层同时积累储存物质和退化,这两个过程都由发育控制的细胞死亡程序介导。关于糊粉层发育的新发现为藜麦属和苋菜科其他属的进一步研究提供了起点,例如比较有和没有糊粉层的种子,并确定该分类群内的系统发育和进化。在可能和适当的情况下,藜麦糊粉层和草类淀粉胚乳之间的差异被突出并进行了讨论,尽管这两种组织在形态和功能上相似,但在遗传上不同。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2040/3733152/32a49c58995e/exbotj_ert170_f0001.jpg

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