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Dose-dependent sensitivity of Arabidopsis thaliana seedling root to copper is regulated by auxin homeostasis

机译:拟南芥的剂量依赖性敏感性蜂窝生根对铜进行调节

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摘要

Plants need copper for normal growth and development; however, excess Cu interfere numerous biological functions in plants. To investigate the complex network controlling Cu sensitivity and adaptability, a wide range of Cu concentrations were tested for their differential impacts on primary root length of Arabidopsis thaliana seedlings. Three CuSO4 concentrations (5, 20 and 60 mu m) were further analyzed in parallel due to their highly distinguishable impacts on multiple morphogenetic characteristics of Arabidopsis roots. Excessive (Cu60) but not moderate amount of Cu (Cu5 and Cu20) reduced the meristem size by affecting meristematic cell division potential and stem cell niche activity. As revealed by the DR5:GUS marker line, the Cu-triggered root phenotype was correlated well with the change in the levels of endogenous auxin in Arabidopsis. The role of auxin homeostasis in regulating the differential Cu responses was verified by exogenous NAA application and in Arabidopsis mutants defective in auxin production, signaling sensitivity or transport. This study also presents evidences for the involvement of an auxin/cytokinin crosstalk in regulating auxin biosynthesis upon Cu treatment and demonstrated that the decreased level of auxin is achieved by the repressed expression of TAA1 and YUCCA family members in the indole-3-pyruvic acid pathway.
机译:植物需要铜正常增长和发展;然而,过量的Cu干扰植物中的许多生物学功能。为了研究控制Cu敏感性和适应性的复杂网络,测试了各种Cu浓度,以对拟南芥幼苗的初级根长度的差异影响。由于它们对拟南芥的多种形态发生特征的高度明显的影响,进一步平行分析了三种CUSO4浓度(5,20和60μm)。过量(Cu60)但不是中等量的Cu(Cu5和Cu20)通过影响共源细胞分裂电位和干细胞Niche活性来降低分类尺寸。如DR5:GUS标记线所揭示,随着拟南芥中内源性毒素水平的变化,Cu触发的根表型是很好的。养肝稳态在调节差异Cu反应方面的作用是通过外源NAA申请和拟南芥突变体验证了疾病生产,信号灵敏度或运输。本研究还提出了一种疾病/细胞分裂蛋白串扰在Cu治疗中调节蟾蜍蛋白生物合成的证据,并证明了吲哚-3-丙酮酸途径中的TaA1和Yucca家族成员的抑制表达降低了蟾蜍蛋白水平降低。

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