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Genetic Interactions Between Arabidopsis DET1 and UVH6 During Development and Abiotic Stress Response

机译:拟南芥DET1和UVH6发育和非生物胁迫反应之间的遗传相互作用。

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摘要

Plants must adapt to a variety of abiotic inputs, including visible light, ultraviolet (UV) light, and heat. In Arabidopsis thaliana, DE-ETIOLATED 1 (DET1) plays a role in visible light signaling, UV tolerance, and development. UV-HYPERSENSITIVE 6 (UVH6) mutants are UV and heat sensitive, as well as dwarf and pale, like det1. In this study, we examine the genetic interactions between these two genes. In dark-grown seedlings, uvh6 exhibits a weak de-etiolated phenotype but does not affect the stronger de-etiolated phenotype of det1. In the light, det1 is epistatic to uvh6 with regard to chlorophyll level, but their effect on all size parameters is additive and therefore independent. With regard to UV tolerance, det1 UV resistance is epistatic to uvh6 UV sensitivity. In heat stress experiments, det1 enhances heat-induced tissue damage in the uvh6 background but suppresses heat-induced growth inhibition. Thus, det1 acts epistatically to uvh6 with respect to de-etiolation, chlorophyll level, UV tolerance, and heat-induced growth inhibition, whereas det1 and uvh6 act additively to regulate plant size and heat-induced cell death. These data provide insight into interplay between light and heat signaling.
机译:植物必须适应各种非生物输入,包括可见光,紫外线(UV)和热量。在拟南芥中,DE-ETIOLATED 1(DET1)在可见光信号,紫外线耐受性和发育中起作用。 UV超敏感6(UVH6)突变体对UV和热敏感,并且像det1一样矮小和苍白。在这项研究中,我们检查了这两个基因之间的遗传相互作用。在深色生长的幼苗中,uvh6表现出弱的去异位表型,但不影响det1的强去异位表型。就叶绿素水平而言,det1相对于uvh6是上位的,但它们对所有大小参数的影响是累加的,因此是独立的。关于紫外线耐受性,det1的紫外线耐受性对uvh6的紫外线敏感性具有决定性意义。在热应激实验中,det1在uvh6背景下增强了热诱导的组织损伤,但抑制了热诱导的生长抑制。因此,det1在去异烟,叶绿素水平,紫外线耐受性和热诱导的生长抑制方面对uvh6具有上位性作用,而det1和 uvh6 则起调节植物大小和热诱导的细胞死亡的作用。 。这些数据可洞察光和热信号之间的相互作用。

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