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HY5 is not integral to light mediated stomatal development in Arabidopsis

机译:Hy5对拟南芥的光线介导的气孔发育不可或缺

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Light is a crucial signal that regulates many aspects of plant physiology and growth including the development of stomata, the pores in the epidermal surface of the leaf. Light signals positively regulate stomatal development leading to changes in stomatal density and stomatal index (SI; the proportion of cells in the epidermis that are stomata). Both phytochrome and cryptochrome photoreceptors are required to regulate stomatal development in response to light. The transcription factor ELONGATED HYPOCOTYL 5 ( HY5 ) is a key regulator of light signalling, acting downstream of photoreceptors. We hypothesised that HY5 could regulate stomatal development in response to light signals due to the putative presence of HY5 binding sites in the promoter of the STOMAGEN ( STOM ) gene, which encodes a peptide regulator of stomatal development. Our analysis shows that HY5 does have the potential to regulate the STOM promoter in vitro and that HY5 is expressed in both the epidermis and mesophyll. However, analysis of hy5 and hy5 hyh double mutants ( HYH ; HY5-HOMOLOG ), found that they had normal stomatal development under different light conditions and the expression of stomatal developmental genes was not perturbed following light shift experiments. Analysis of stable lines overexpressing HY5 also showed no change in stomatal development or the expression of stomatal developmental genes. We therefore conclude that whilst HY5 has the potential to regulate the expression of STOM , it does not have a major role in regulating stomatal development in response to light signals.
机译:光是一种重要的信号,调节植物生理学和生长的许多方面,包括气孔的发展,叶片表皮表面中的毛孔。光信号积极调节气孔发育,导致气孔密度和气孔指数的变化(Si;表皮中的细胞比例为气孔)。植物色彩和加密色素感光体都需要调节气孔发育以响应光。转录因子细长的下胚轴5(HY5)是光信号传导的关键调节器,作用在光感受器的下游。我们假设Hy5可以根据STOPEN(STOM)基因启动子中的HY5结合位点的调整存在,调节气孔发育,其编码气孔发育的肽调节剂。我们的分析表明,Hy5确实有可能在体外调节STH启动子,并且HY5在表皮和培养基中表达。然而,Hy5和Hy5 Hyh双突变体(Hyh; Hy5-Homolog)的分析,发现它们在不同的光线条件下具有正常的气孔发育,并且在光移实验之后,气孔发育基因的表达不会扰动。过表达HY5过表达稳定线的分析也显示了气孔发育的变化或气孔发育基因的表达。因此,我们得出结论,虽然HY5有可能调节肚子的表达,但在调节光信号时没有具有重要作用。

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