首页> 外文期刊>Journal of Plant Biology >Brassica carinata CIL1 mediates extracellular ROS production during auxin- and ABA-regulated lateral root development
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Brassica carinata CIL1 mediates extracellular ROS production during auxin- and ABA-regulated lateral root development

机译:甘蓝型油菜CIL1在生长素和ABA调节的侧根发育过程中介导细胞外ROS的产生

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In the plant cytoplasm signals from multiple sources interact to control development. Lateral root proliferation is controlled by the antagonistic action of the hormones auxin and abscisic acid (ABA). Auxin stimulates the separation of pericycle initials and cell expansion. ABA is required for lateral root initiation and elongation and acts as an antagonist through auxin-dependent pathways. These hormones also mediate reactive oxygen species (ROS) accumulation in growing roots and promote cell expansion. We describe the isolation and characterization of a copper- and auxin-induced gene, COPPER INDUCED in LEAVES (CIL1), from Brassica carinata. Transgenic B. carinata seedlings expressing antisense CIL1 were used to determine the biological function of this gene. Lines with reduced CIL1 expression showed a decrease in lateral root development, as well as reduced sensitivity to auxin and ABA. Steady-state analysis of redox components showed a decrease in NADPH oxidase, superoxide dismutase, and catalase activity, accompanied by an increase in hydrogen peroxide concentration. GFP-tagged CIL1 accumulated at the plasma membrane and in the apoplast indicating CIL1 is likely extracellular. From these data we propose that CIL1 is an extracellular protein involved in ROS cycling mediating auxin and ABA signals.
机译:在植物中,来自多个来源的细胞质信号相互作用以控制发育。侧根增殖受激素生长素和脱落酸(ABA)的拮抗作用控制。生长素刺激周轮细胞的初始分离和细胞扩增。 ABA是侧向根部起始和伸长所必需的,并通过生长素依赖性途径充当拮抗剂。这些激素还介导生长中的根中的活性氧(ROS)积累并促进细胞膨胀。我们描述了分离和表征的铜和生长素诱导基因,从芸苔属中的叶子中诱导铜(CIL1)。表达反义CIL1的转基因卡那氏芽孢杆菌幼苗用于确定该基因的生物学功能。 CIL1表达降低的品系显示侧根发育减少,对生长素和ABA的敏感性降低。氧化还原成分的稳态分析表明,NADPH氧化酶,超氧化物歧化酶和过氧化氢酶活性降低,同时过氧化氢浓度升高。 GFP标记的CIL1积累在质膜和质外体中,表明CIL1可能在细胞外。根据这些数据,我们认为CIL1是参与ROS周期介导生长素和ABA信号的细胞外蛋白。

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