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Mitochondrial beta-Cyanoalanine Synthase Is Essential for Root Hair Formation in Arabidopsis thaliana

机译:线粒体β-氰丙氨酸合酶对于拟南芥根毛形成至关重要

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Cyanide is stoichiometrically produced as a coproduct of the ethylene biosynthesis pathway and is detoxified by beta-cyanoalanine synthase enzymes. The molecular and phenotypical analysis of T-DNA insertion mutants of the mitochondrial beta-cyanoalanine synthase CYS-C1 suggests that discrete accumulation of cyanide is not toxic for the plant and does not alter mitochondrial respiration rates but does act as a strong inhibitor of root hair development. The cys-c1 null allele is defective in root hair formation and accumulates cyanide in root tissues. The root hair defect is phenocopied in wild-type plants by the exogenous addition of cyanide to the growth medium and is reversed by the addition of hydroxocobalamin or by genetic complementation with the CYS-C1 gene. Hydroxocobalamin not only recovers the root phenotype of the mutant but also the formation of reactive oxygen species at the initial step of root hair tip growth. Transcriptional profiling of the cys-c1 mutant reveals that cyanide accumulation acts as a repressive signal for several genes encoding enzymes involved in cell wall rebuilding and the formation of the root hair tip as well as genes involved in ethylene signaling and metabolism. Our results demonstrate that mitochondrial beta-cyanoalanine synthase activity is essential to maintain a low level of cyanide for proper root hair development.
机译:氰化物以化学计量形式作为乙烯生物合成途径的副产物生产,并被β-氰基丙氨酸合酶解毒。线粒体β-氰丙氨酸合酶CYS-C1的T-DNA插入突变体的分子和表型分析表明,氰化物的离散积累对植物无毒,不会改变线粒体呼吸速率,但确实是根发的强力抑制剂发展。 cys-c1无效等位基因在根毛形成方面有缺陷,并在根组织中积累氰化物。通过向生长培养基中外源添加氰化物,根发缺陷在野生型植物中被表型复制,并通过添加羟钴胺素或通过与CYS-C1基因的遗传互补而逆转。羟考拉巴明不仅恢复了突变体的根表型,而且还恢复了根尖生长初期的活性氧种类。 cys-c1突变体的转录谱分析表明,氰化物积累对几种编码细胞壁重建和根尖形成的酶以及乙烯信号传导和代谢相关基因的编码基因起抑制信号的作用。我们的结果表明,线粒体β-氰基丙氨酸合酶活性对于维持低水平的氰化物对于正常的根毛发育至关重要。

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