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Overexpression of CsCaM3 Improves High Temperature Tolerance in Cucumber

机译:CsCaM3的过表达提高了黄瓜的耐高温性

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摘要

High temperature (HT) stress affects the growth and production of cucumbers, but genetic resources with high heat tolerance are very scarce in this crop. Calmodulin (CaM) has been confirmed to be related to the regulation of HT stress resistance in plants. CsCaM3, a CaM gene, was isolated from cucumber inbred line “02-8.” Its expression was characterized in the present study. CsCaM3 transcripts differed among the organs and tissues of cucumber plants and could be induced by HTs or abscisic acid, but not by salicylic acid. CsCaM3 transcripts exhibited subcellular localization to the cytoplasm and nuclei of cells. Overexpression of CsCaM3 in cucumber plants has the potential to improve their heat tolerance and protect against oxidative damage and photosynthesis system damage by regulating the expression of HT-responsive genes in plants, including chlorophyll catabolism-related genes under HT stress. Taken together, our results provide useful insights into stress tolerance in cucumber.
机译:高温(HT)胁迫影响黄瓜的生长和产量,但是该作物中具有高耐热性的遗传资源非常稀缺。钙调蛋白(CaM)已被证实与植物体内HT胁迫抗性的调节有关。从黄瓜自交系“ 02-8”中分离出CaM基因CsCaM3。在本研究中表征了其表达。 CsCaM3转录本在黄瓜植物的器官和组织中有所不同,并且可以由HTs或脱落酸诱导,但不受水杨酸诱导。 CsCaM3成绩单表现出亚细胞定位到细胞质和细胞核。 CsCaM3在黄瓜植物中的过表达具有潜力,通过调节植物中HT反应基因的表达,包括在HT胁迫下的叶绿素分解代谢相关基因的表达,从而提高其耐热性并保护其免受氧化损伤和光合作用系统的损害。综上所述,我们的结果为了解黄瓜的抗逆性提供了有用的见识。

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