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活性氧在调节拟南芥种子休眠中的作用。

Role of reactive oxygen species in the regulation of Arabidopsis seed dormancy.

机构信息

UR5 EAC7180 CNRS, Université Pierre et Marie Curie-Paris 6, Paris, France.

出版信息

Plant Cell Physiol. 2012 Jan;53(1):96-106. doi: 10.1093/pcp/pcr129. Epub 2011 Sep 21.

Abstract

Freshly harvested seeds of Arabidopsis thaliana, Columbia (Col) accession were dormant when imbibed at 25°C in the dark. Their dormancy was alleviated by continuous light during imbibition or by 5 weeks of storage at 20°C (after-ripening). We investigated the possible role of reactive oxygen species (ROS) in the regulation of Col seed dormancy. After 24 h of imbibition at 25°C, non-dormant seeds produced more ROS than dormant seeds, and their catalase activity was lower. In situ ROS localization revealed that germination was associated with an accumulation of superoxide and hydrogen peroxide in the radicle. ROS production was temporally and spatially regulated: ROS were first localized within the cytoplasm upon imbibition of non-dormant seeds, then in the nucleus and finally in the cell wall, which suggests that ROS play different roles during germination. Imbibition of dormant and non-dormant seeds in the presence of ROS scavengers or donors, which inhibited or stimulated germination, respectively, confirmed the role of ROS in germination. Freshly harvested seeds of the mutants defective in catalase (cat2-1) and vitamin E (vte1-1) did not display dormancy; however, seeds of the NADPH oxidase mutants (rbohD) were deeply dormant. Expression of a set of genes related to dormancy upon imbibition in the cat2-1 and vet1-1 seeds revealed that their non-dormant phenotype was probably not related to ABA or gibberellin metabolism, but suggested that ROS could trigger germination through gibberellin signaling activation.

摘要

在 25°C 黑暗条件下吸胀时,拟南芥哥伦比亚(Col)品系的新鲜种子处于休眠状态。在吸胀过程中连续光照或在 20°C 下储存 5 周(后熟)可以缓解其休眠。我们研究了活性氧(ROS)在调节 Col 种子休眠中的可能作用。在 25°C 吸胀 24 小时后,非休眠种子比休眠种子产生更多的 ROS,其过氧化氢酶活性更低。原位 ROS 定位显示,萌发与根尖中超氧阴离子和过氧化氢的积累有关。ROS 的产生具有时间和空间调节性:在非休眠种子吸胀时,ROS 首先在细胞质中定位,然后在核中定位,最后在细胞壁中定位,这表明 ROS 在萌发过程中发挥不同的作用。在 ROS 清除剂或供体存在下吸胀休眠和非休眠种子,分别抑制或刺激萌发,证实了 ROS 在萌发中的作用。过氧化氢酶(cat2-1)和维生素 E(vte1-1)缺陷突变体的新鲜种子没有表现出休眠;然而,NADPH 氧化酶突变体(rbohD)的种子休眠很深。在 cat2-1 和 vet1-1 种子中吸胀时一组与休眠相关基因的表达表明,它们的非休眠表型可能与 ABA 或赤霉素代谢无关,但表明 ROS 可以通过赤霉素信号激活触发萌发。

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