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Isolation and gene expression analysis of Arabidopsis thaliana mutants with constitutive expression of ATL2, an early elicitor-response RING-H2 zinc-finger gene.

机译:组成型表达ATL2的拟南芥拟南芥突变体的分离和基因表达分析,ATL2是早期激发子响应的RING-H2锌指基因。

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摘要

Genes with unstable transcripts often encode proteins that play important regulatory roles. ATL2 is a member of a multigene family coding highly related RING-H2 zinc-finger proteins that may function as E3 ubiquitin ligases. ATL2 mRNA accumulation occurs rapidly and transiently after incubation with elicitors of pathogen response. We screened 50,000 M(2) families from a line that carries a fusion of pATL2 to the GUS reporter gene and isolated five mutants, which we named eca (expresión constitutiva de ATL2), that showed constitutive expression of the reporter gene. One mutant exhibits a drastic stunted phenotype while the other four grow similarly to wild type. Two early chitin-induced genes and known pathogenesis-related genes such as NPR1, PAL, and CHS are activated in all the mutants whereas members of the ATL family and PR-1 and PDF2.1, which are markers of the salicylic acid (SA) jasmonate (JA) defense-response pathways, display differential expression between the mutants. These observations indicate that the ECA gene products may function in the early steps of an elicitor-response pathway, although some of them may function at other stages on the SA or JA defense-response pathways. Likewise, the fact that ATL2 and other members of the ATL family are activated in eca mutants links the induction of this putative class of ubiquitin ligases to plant defense signaling pathways.
机译:具有不稳定转录本的基因通常会编码起重要调控作用的蛋白质。 ATL2是编码高度相关的RING-H2锌指蛋白的多基因家族的成员,该蛋白可能起E3泛素连接酶的作用。与病原体反应的引发剂一起孵育后,ATL2 mRNA的积累迅速而短暂地发生。我们从携带pATL2与GUS报告基因融合体的品系中筛选了50,000个M(2)家族,并分离了五个突变体,我们将其命名为eca(expresiónconstitutiva de ATL2),该突变体显示了报告基因的组成型表达。一个突变体表现出严重的发育不良表型,而其他四个突变体的生长与野生型相似。两个早期几丁质诱导基因和已知的发病相关基因如NPR1,PAL和CHS在所有突变体中均被激活,而ATL家族成员PR-1和PDF2.1是水杨酸(SA茉莉酸(JA)防御反应途径,在突变体之间显示差异表达。这些观察结果表明,ECA基因产物可能在激发子-反应途径的早期阶段起作用,尽管其中一些可能在SA或JA防御反应途径的其他阶段起作用。同样,在eca突变体中激活了ATL2和ATL家族其他成员的事实将这种假定的泛素连接酶与植物防御信号通路的诱导联系起来。

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