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首页> 外文期刊>PLoS One >Genome-wide identification and characterization of Respiratory Burst Oxidase Homolog genes in six Rosaceae species and an analysis of their effects on adventitious rooting in apple
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Genome-wide identification and characterization of Respiratory Burst Oxidase Homolog genes in six Rosaceae species and an analysis of their effects on adventitious rooting in apple

机译:六种枸杞物种呼吸爆发氧化酶同源物基因的基因组鉴定及表征及其对苹果不定根的影响分析

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Adventitious root formation is essential for plant propagation, development, and response to various stresses. Reactive oxygen species (ROS) are essential for adventitious root formation. However, information on Respiratory Burst Oxidase Homolog (RBOH), a key enzyme that catalyzes the production ROS, remains limited in woody plants. Here, a total of 44 RBOH genes were identified from six Rosaceae species ( Malus domestica , Prunus avium , Prunus dulcis ' Texas’, Rubus occidentalis , Fragaria vesca and Rosa chinensis ), including ten from M . domestica . Their phylogenetic relationships, conserved motifs and gene structures were analyzed. Exogenous treatment with the RBOH protein inhibitor diphenyleneiodonium (DPI) completely inhibited adventitious root formation, whereas exogenous H 2 O 2 treatment enhanced adventitious root formation. In addition, we found that ROS accumulated during adventitious root primordium inducing process. The expression levels of MdRBOH-H , MdRBOH-J , MdRBOH-A , MdRBOH-E1 and MdRBOH-K increased more than two-fold at days 3 or 9 after auxin treatment. In addition, cis -acting element analysis revealed that the MdRBOH-E1 promoter contained an auxin-responsive element and the MdRBOH-K promoter contained a meristem expression element. Based on the combined results from exogenous DPI and H 2 O 2 treatment, spatiotemporal expression profiling, and cis -element analysis, MdRBOH-E1 and MdRBOH-K appear to be candidates for the control of adventitious rooting in apple.
机译:不定根形成对于植物繁殖,开发和对各种压力的反应至关重要。反应性氧(ROS)对于不定根形成至关重要。然而,关于呼吸爆发氧化酶同源物(RBOH)的信息,一种催化生产ROS的关键酶,在木质植物中仍然有限。在这里,共有44种ROBBOH基因被鉴定出六种Rosaceae物种(Malus Domestica,Prunus Avium,Prunus Dulcis'dexas',Rubus Occidentalis,Fragaria Vesca和Rosa Chinensis),包括来自M.国内。分析了它们的系统发育关系,保守的基序和基因结构。随着RBOH蛋白抑制剂二苯基碘鎓(DPI)的外源性处理完全抑制不定根形成,而外源H 2 O 2处理增强不定根根。此外,我们发现在不定根原始诱导过程中累积的ROS积累。 MDRBOH-H,MDRBOH-J,MDRBOH-A,MDRBOH-e1和MDRBOH-K的表达水平在养肝治疗后第3天或第9天增加超过两倍。此外,顺式元素分析显示,MDRBOH-E1启动子含有植物素响应元件,并且MDRBOH-K启动子含有分型表达元素。基于外源DPI和H 2 O 2治疗的组合结果,即时性表达分析和CIS -ELENCE分析,MDRBOH-E1和MDRBOH-K似乎是控制苹果中不定根的候选者。

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