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Genomics analysis of genes encoding respiratory burst oxidase homologs (RBOHs) in jatropha and the comparison with castor bean

机译:麻疯树中呼吸爆发氧化酶同源基因(RBOHs)编码基因的基因组分析和与蓖麻子的比较

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摘要

Respiratory burst oxidase homologs (RBOHs), which catalyze the production of superoxide from oxygen and NADPH, play key roles in plant growth and development, hormone signaling, and stress responses. Compared with extensive studies in model plants arabidopsis and rice, little is known about RBOHs in other species. This study presents a genome-wide analysis of Rboh family genes in jatropha (Jatropha curcas) as well as the comparison with castor bean (Ricinus communis), another economically important non-food oilseed crop of the Euphorbiaceae family. The family number of seven members identified from the jatropha genome is equal to that present in castor bean, and further phylogenetic analysis assigned these genes into seven groups named RBOHD, -C, -B, -E, -F, -N, and -H. In contrast to a high number of paralogs present in arabidopsis and rice that experienced several rounds of recent whole-genome duplications, no duplicate was identified in both jatropha and castor bean. Conserved synteny and one-to-one orthologous relationship were observed between jatropha and castor bean Rboh genes. Although exon-intron structures are usually highly conserved between orthologs, loss of certain introns was observed for JcRbohB, JcRbohD, and RcRbohN, supporting their divergence. Global gene expression profiling revealed diverse patterns of JcRbohs over various tissues. Moreover, expression patterns of JcRbohs during flower development as well as various stresses were also investigated. These findings will not only improve our knowledge on species-specific evolution of the Rboh gene family, but also provide valuable information for further functional analysis of Rboh genes in jatropha.
机译:呼吸爆发性氧化酶同源物(RBOH)催化氧气和NADPH产生的超氧化物,在植物生长发育,激素信号传递和胁迫响应中起着关键作用。与模型植物拟南芥和水稻的大量研究相比,对其他物种的RBOH知之甚少。这项研究提供了麻风树(麻风树)中Rboh家族基因的全基因组分析,以及与蓖麻子(大戟科的另一种经济上重要的非食用油料作物)的蓖麻子(Ricinus communis)的比较。从麻风树基因组中鉴定出的7个成员的家族数目与蓖麻子中存在的家族成员的数目相等,进一步的系统发育分析将这些基因分为7组,分别为RBOHD,-C,-B,-E,-F,-N和- H。与在拟南芥和水稻中出现的大量旁系同源物相比,它们最近经历了几轮全基因组重复,但在麻风树和蓖麻子中均未发现重复。在麻疯树和蓖麻子Rboh基因之间观察到保守的同位和一对一的直系同源关系。尽管外显子-内含子结构通常在直系同源物之间高度保守,但是对于JcRbohB,JcRbohD和RcRbohN观察到某些内含子的丢失,支持了它们的差异。全球基因表达谱揭示了JcRbohs在各种组织上的不同模式。此外,还研究了JcRbohs在花发育过程中的表达模式以及各种胁迫。这些发现不仅将提高我们对Rboh基因家族的物种特异性进化的了解,而且还将为麻风树中Rboh基因的进一步功能分析提供有价值的信息。

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