Overexpressing heat-shock protein OsHSP50.2 improves drought tolerance inrice

Overexpressing heat-shock protein OsHSP50.2 improves drought tolerance inrice
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过表达热休克蛋白OsHSP50.2提高水稻的耐旱性

DOI:
10.1007/s00299-018-2331-4
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发表时间:
2018
期刊:
影响因子:
6.2
通讯作者:
Jieming Wang
Jieming Wang
中科院分区:
生物学2区
文献类型:
--
作者:
Jianhua Xiang;Xinbo Chen;Wei Hu;Yanci Xiang;Mingli Yan;Jieming Wang

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Key messageOsHSP50.2, an HSP90 family gene up-regulated by heat and osmotic stress treatments, positively regulates drought stress tolerance probably by modulating ROS homeostasis and osmotic adjustment in rice.AbstractHeat-shock proteins (HSPs) serve as molecular chaperones for a variety of client proteins in abiotic stress response and play pivotal roles in protecting plants against stress, but the molecular mechanism remains largely unknown. Here, we report an HSP90 family gene,OsHSP50.2, which acts as a positive regulator in drought stress tolerance in rice (Oryza sativa).OsHSP50.2was ubiquitously expressed and its transcript level was up-regulated by heat and osmotic stress treatments. Overexpression ofOsHSP50.2in rice reduced water loss and enhanced the transgenic plant tolerance to drought and osmotic stresses. TheOsHSP50.2-overexpressing plants exhibited significantly lower levels of electrolyte leakage and malondialdehyde (MDA) and less decrease of chlorophyll than wild-type plants under drought stress. Moreover, theOsHSP50.2-overexpressing plants had significantly higher SOD activity under drought stress compared with the wild type. These results imply that OsHSP50.2 positively regulates drought stress tolerance in rice, probably through the modulation of reactive oxygen species (ROS) homeostasis. Additionally, theOsHSP50.2-overexpressing plants accumulated significantly higher content of proline than the wild type under drought stress, which contributes to the improved protection ability from drought stress damage via osmotic adjustment. Our findings reveal that OsHSP50.2 plays a crucial role in drought stress response, and it may possess high potential usefulness in drought tolerance improvement of rice.