首页> 外文期刊>Plant and cell physiology >beta-Cyanoalanine Synthase Action in Root Hair Elongation is Exerted at Early Steps of the Root Hair Elongation Pathway and is Independent of Direct Cyanide Inactivation of NADPH Oxidase
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beta-Cyanoalanine Synthase Action in Root Hair Elongation is Exerted at Early Steps of the Root Hair Elongation Pathway and is Independent of Direct Cyanide Inactivation of NADPH Oxidase

机译:根毛伸长率的β-氰基碱合成酶作用在根毛伸长型途径的早期步骤中施加,并且与NADPH氧化酶的直接氰化物灭活无关

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摘要

In Arabidopsis thaliana, cyanide is produced concomitantly with ethylene biosynthesis and is mainly detoxified by the beta-cyanoalanine synthase CAS-C1. In roots, CAS-C1 activity is essential to maintain a low level of cyanide for proper root hair development. Root hair elongation relies on polarized cell expansion at the growing tip, and we have observed that CAS-C1 locates in mitochondria and accumulates in root hair tips during root hair elongation, as shown by observing the fluorescence in plants transformed with the translational construct ProC1:CASC1-GFP, containing the complete CAS-C1 gene fused to green fluorescent protein (GFP). Mutants in the SUPERCENTIPEDE (SCN1) gene, that regulate the NADPH oxidase gene ROOT HAIR DEFECTIVE 2 (RHD2)/AtrbohC, are affected at the very early steps of the development of root hair that do not elongate and do not show a preferential localization of the GFP accumulation in the tips of the root hair primordia. Root hairs of mutants in CAS-C1 or RHD2/AtrbohC, whose protein product catalyzes the generation of ROS and the Ca2+ gradient, start to grow out correctly, but they do not elongate. Genetic crosses between the cas-c1 mutant and scn1 or rhd2 mutants were performed, and the detailed phenotypic and molecular characterization of the double mutants demonstrates that scn1 mutation is epistatic to cas-c1 and cas-c1 is epistatic to rhd2 mutation, indicating that CAS-C1 acts in early steps of the root hair development process. Moreover, our results show that the role of CAS-C1 in root hair elongation is independent of H2O2 production and of a direct NADPH oxidase inhibition by cyanide.
机译:在拟南芥中,氰化物伴随着乙烯生物合成,主要由β-氰基烷基合酶Cas-C1解毒。在根中,CAS-C1活性对于保持低水平的氰化物是必不可少的,以进行适当的根发发育。根毛伸长率依赖于生长尖端的偏振细胞膨胀,并且我们观察到CAS-C1位于线粒体中,在根发伸长期间在根发伸长期间累积,如通过观察转化构建体PROC1转化的植物中的荧光所示: CASC1-GFP,包含与绿色荧光蛋白(GFP)融合的完整CAS-C1基因。超中心(SCN1)基因中的突变体调节NADPH氧化酶基因根毛缺陷2(RHD2)/ ATRBOHC,受到不细长的根发的早期步骤的影响,并且不显示优先定位根发原束的尖端中的GFP积累。 CAS-C1或RHD2 / ATRBOHC中突变体的根毛,其蛋白质产品催化了ROS和CA2 +梯度的产生,开始正确延长,但它们不伸长。进行CAS-C1突变体和SCN1或RHD2突变体之间的遗传交叉,双突变体的详细表型和分子表征表明SCN1突变是CAS-C1的本质上,CAS-C1是rHD2突变的神经外观,表明CAS -C1在根发发育过程的早期步骤中起作用。此外,我们的结果表明,CAS-C1在根毛伸长中的作用与H 2 O 2生产和氰化物直接NADPH氧化酶抑制无关。

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