拟南芥长期耐热性需要线粒体裂变复合体。

Ryo Tsukimoto, Kazuho Isono, Takuma Kajino, Satoshi Iuchi, Akihisa Shinozawa, Izumi Yotsui, Yoichi Sakata, Teruaki Taji
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引用次数: 1

摘要

植物不仅经常暴露在短期(S)热胁迫下,而且经常暴露在连续几天的长期(L)热胁迫下。已经发现了一些l型耐热缺陷的拟南芥突变体,但与s型耐热缺陷相比,其分子机制尚不清楚。为了阐明其机制,我们从ems诱变的l-耐热型col0种子中分离出新的对长期热5敏感(sloh5)突变体。sloh5突变体对l -热敏感,但对s -热、渗透休克、盐休克和氧化应激不敏感。致病基因SLOH5与拉长线粒体a1 (ELM1)相同,ELM1与动力蛋白相关蛋白DRP3A和DRP3B在线粒体裂变中起重要作用。ELM1、DRP3A和DRP3B转录本水平在l -热胁迫下呈时间依赖性升高,DRP3A和DRP3B双突变体对l -热胁迫敏感。sloh5突变体含有大量延长的线粒体。热应激引起线粒体功能障碍和细胞死亡。此外,用线粒体肌球蛋白atp酶抑制剂处理的WT植株对l -热胁迫极度敏感。这些结果表明,线粒体分裂和功能在拟南芥的l -耐热性中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mitochondrial Fission Complex Is Required for Long-Term Heat Tolerance of Arabidopsis.

Plants are often exposed not only to short-term (S) heat stress but also to long-term (L) heat stress over several consecutive days. A few Arabidopsis mutants defective in L-heat tolerance have been identified, but the molecular mechanisms involved are less well understood than those involved in S-heat tolerance. To elucidate the mechanisms, we isolated the new sensitive to long-term heat5 (sloh5) mutant from EMS-mutagenized seeds of L-heat-tolerant Col-0. The sloh5 mutant was hypersensitive to L-heat but not to S-heat, osmo-shock, salt-shock or oxidative stress. The causal gene, SLOH5, is identical to elongatedmitochondria1 (ELM1), which plays an important role in mitochondrial fission in conjunction with dynamin-related proteins DRP3A and DRP3B. Transcript levels of ELM1, DRP3A and DRP3B were time-dependently increased by L-heat stress, and drp3a drp3b double mutants were hypersensitive to L-heat stress. The sloh5 mutant contained massively elongated mitochondria. L-heat stress caused mitochondrial dysfunction and cell death in sloh5. Furthermore, WT plants treated with a mitochondrial myosin ATPase inhibitor were hypersensitive to L-heat stress. These findings suggest that mitochondrial fission and function are important in L-heat tolerance of Arabidopsis.

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