Li Dahui, Wu Di, Li Shizhou, Dai Yu, Cao Yunpeng
College of Life Science, Anhui Agricultural University, Hefei 230036, People's Republic of China.
R Soc Open Sci. 2019 Feb 27;6(2):181727. doi: 10.1098/rsos.181727. eCollection 2019 Feb.
NADPH oxidases (NOXs) have been known as respiratory burst oxidase homologues (RBOHs) in plants. To characterize the evolutionary relationships and functions of RBOHs in , 134 homologues were identified from 13 plant species, including 14 members (namely -) from . There presented 47 gene-pairs among 14 s and other s, consisting of five pairs within , and 15 pairs between and . Together with phylogenetic analysis, the results suggested that whole-genome duplication might have played an important role in gene expansion, and these duplication events occurred after the divergence of the eudicot and the monocot lineages examined. Furthermore, gene expression of s in both and were assayed via qRT-PCR. An RBOH gene, in , was transformed into wild-type plants. The transgenic lines with the overexpressed level of conferred to be more tolerant to heavy metal lead (0.05 mM) than wild-type plants. Overall, this integrated analysis at genome-wide level has provided some information on the evolutionary relationships among plant-specific NOXs and the coordinated diversification of gene structure and function in .
NADPH氧化酶(NOXs)在植物中被称为呼吸爆发氧化酶同源物(RBOHs)。为了表征RBOHs在[具体植物名称未明确]中的进化关系和功能,从13种植物中鉴定出134个同源物,其中包括来自[具体植物名称未明确]的14个成员(即[具体成员名称未明确])。在14个[具体成员名称未明确]和其他[具体成员名称未明确]之间存在47个基因对,其中包括[具体植物名称未明确]内的5对,以及[具体植物名称未明确]和[具体植物名称未明确]之间的15对。结合系统发育分析,结果表明全基因组复制可能在[具体植物名称未明确]基因扩展中发挥了重要作用,并且这些复制事件发生在被研究的双子叶植物和单子叶植物谱系分化之后。此外,通过qRT-PCR检测了[具体植物名称未明确]和[具体植物名称未明确]中[具体成员名称未明确]的基因表达。将[具体植物名称未明确]中的一个RBOH基因[具体基因名称未明确]转化到野生型[具体植物名称未明确]植物中。与野生型植物相比,[具体基因名称未明确]过表达水平的转基因系对重金属铅(0.05 mM)具有更强的耐受性。总体而言,这种全基因组水平的综合分析提供了一些关于植物特异性NOXs之间进化关系以及[具体植物名称未明确]中基因结构和功能协同多样化的信息。