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Heat Shock Protein 101 Plays a Crucial Role in Thermotolerance in Arabidopsis

机译:热激蛋白101在拟南芥的耐热性中起关键作用

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摘要

Plants are sessile organisms, and their ability to adapt to stress is crucial for survival in natural environments. Many observations suggest a relationship between stress tolerance and heat shock proteins (HSPs) in plants, but the roles of individual HSPs are poorly characterized. We report that transgenic Arabidopsis plants expressing less than usual amounts of HSP101, a result of either antisense inhibition or cosuppression, grew at normal rates but had a severely diminished capacity to acquire heat tolerance after mild conditioning pretreatments. The naturally high tolerance of germinating seeds, which express HSP101 as a result of developmental regulation, was also profoundly decreased. Conversely, plants constitutively expressing HSP101 tolerated sudden shifts to extreme temperatures better than did vector controls. We conclude that HSP101 plays a pivotal role in heat tolerance in Arabidopsis. Given the high evolutionary conservation of this protein and the fact that altering HSP101 expression had no detrimental effects on normal growth or development, one should be able to manipulate the stress tolerance of other plants by altering the expression of this protein.
机译:植物是固着生物,它们适应压力的能力对于在自然环境中生存至关重要。许多观察结果表明植物的胁迫耐受性与热休克蛋白(HSP)之间存在关系,但单个HSP的作用表征较差。我们报告说,反义抑制或共抑制的结果是,表达低于正常水平的HSP101的转基因拟南芥植物以正常速率生长,但是经过温和的预处理后其获得耐热性的能力大大降低。由于发育调节而表达HSP101的发芽种子的天然高耐受性也大大降低了。相反,组成型表达HSP101的植物比向载体控制的植物耐受突变至极端温度的耐受性更好。我们得出结论,HSP101在拟南芥的耐热性中起着关键作用。鉴于这种蛋白质的高度进化保守性以及改变HSP101表达对正常生长或发育没有不利影响的事实,人们应该能够通过改变这种蛋白质的表达来操纵其他植物的胁迫耐受性。

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