首页> 美国卫生研究院文献>Journal of Experimental Botany >Expression of Xhdsi-1VOC a novel member of the vicinal oxygen chelate (VOC) metalloenzyme superfamily is up-regulated in leaves and roots during desiccation in the resurrection plant Xerophyta humilis (Bak) Dur and Schinz
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Expression of Xhdsi-1VOC a novel member of the vicinal oxygen chelate (VOC) metalloenzyme superfamily is up-regulated in leaves and roots during desiccation in the resurrection plant Xerophyta humilis (Bak) Dur and Schinz

机译:Xhdsi-1VOC是附近的氧合螯合物(VOC)金属酶超家族的新成员其表达在复活植物Xerophyta humilis(Bak)Dur和Schinz的干燥过程中在叶和根中上调。

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摘要

The annotation of novel plant genes is frequently based on sequence and structural similarity to known protein motifs. Understanding the biological function of these genes is dependent on identifying conditions under which they are activated, however. The resurrection plant, Xerophyta humilis is a good model system for identifying and characterizing genes which are important for desiccation tolerance. Desiccation induced-1 (dsi-1VOC), a previously uncharacterized plant gene, is up-regulated during desiccation in leaves, roots, and seeds in X. humilis. The X. humilis desiccation induced-1 gene, Xhdsi-1VOC, shares structural homology with the vicinal oxygen chelate (VOC) metalloenzyme superfamily. Proteins in this superfamily share little sequence similarity, but are characterized by a common βαβββ structural fold. A number of plant orthologues of XhDsi-1VOC have been identified, including Arabidopsis thaliana At1g07645, which is currently annotated as a glyoxalase I-like gene, and many ESTs derived from seed cDNA libraries. Xhdsi-1VOC and its orthologues do not, however, contain the glutathione and zinc binding sites conserved in glyoxalase I genes. Furthermore, expression of Xhdsi-1VOC in yeast failed to rescue a yeast glyoxalase I mutant. Messenger RNA transcripts for At1g07645 accumulate during seed maturation, but are not induced by water loss, salt or mannitol stress in vegetative tissue in Arabidopsis. It is concluded that dsi-1VOC is a seed-specific gene in desiccation-sensitive plants that is activated by water loss in vegetative tissues in the resurrection plant X. humilis and plays an important role in allowing plant tissues to survive loss of 95% of their relative water content.
机译:新植物基因的注释通常基于与已知蛋白质基序的序列和结构相似性。但是,了解这些基因的生物学功能取决于鉴定它们被激活的条件。复活植物Xerophyta humilis是一个很好的模型系统,用于鉴定和表征对脱水耐受性很重要的基因。脱水诱导的-1(dsi-1 VOC )是一种以前未表征的植物基因,在干燥过程中,在X. humilis的叶片,根和种子中均被上调。 Humilis干燥诱导的1基因Xhdsi-1 VOC 与邻近的氧螯合(VOC)金属酶超家族具有结构同源性。该超家族中的蛋白质几乎没有序列相似性,但以共同的βαβββ结构折叠为特征。已经鉴定出许多XhDsi-1 VOC 的植物直向同源物,包括拟南芥拟南芥At1g07645(目前被标注为乙二醛酶I样基因)以及许多从种子cDNA文库衍生的EST。 Xhdsi-1 VOC 及其直向同源物不包含乙二醛酶I基因中保守的谷胱甘肽和锌结合位点。此外,酵母中Xhdsi-1 VOC 的表达未能挽救酵母乙二醛酶I突变体。 At1g07645的Messenger RNA转录本在种子成熟期间积累,但不受拟南芥营养组织中的水分流失,盐分或甘露醇胁迫的诱导。结论是,dsi-1 VOC 是干燥敏感型植物的种子特异性基因,被复活植物X. humilis的营养组织中的失水激活并在允许植物生长中起重要作用。组织生存下来的相对水分含量减少了95%。

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