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Bestatin, an Inhibitor of Aminopeptidases, Provides a Chemical Genetics Approach to Dissect Jasmonate Signaling in Arabidopsis1[W][OA]

机译:Bestatin,一种氨基肽酶的抑制剂,提供了一种化学遗传学方法来解剖拟南芥中的茉莉酸信号[W] [OA]

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摘要

Bestatin, a potent inhibitor of some aminopeptidases, was shown previously to be a powerful inducer of wound-response genes in tomato (Lycopersicon esculentum). Here, we present several lines of evidence showing that bestatin specifically activates jasmonic acid (JA) signaling in plants. First, bestatin specifically activates the expression of JA-inducible genes in tomato and Arabidopsis (Arabidopsis thaliana). Second, the induction of JA-responsive genes by bestatin requires the COI1-dependent JA-signaling pathway, but does not depend strictly on JA biosynthesis. Third, microarray analysis using Arabidopsis whole-genome chip demonstrates that the gene expression profile of bestatin-treated plants is similar to that of JA-treated plants. Fourth, bestatin promotes a series of JA-related developmental phenotypes. Taken together, the unique action mode of bestatin in regulating JA-signaled processes leads us to the hypothesis that bestatin exerts its effects through the modulation of some key regulators in JA signaling. We have employed bestatin as an experimental tool to dissect JA signaling through a chemical genetic screening, which yielded a collection of Arabidopsis bestatin-resistant (ber) mutants that are insensitive to the inhibitory effects of bestatin on root elongation. Further characterization efforts demonstrate that some ber mutants are defective in various JA-induced responses, which allowed us to classify the ber mutants into three phenotypic groups: JA-insensitive ber mutants, JA-hypersensitive ber mutants, and mutants insensitive to bestatin but showing normal response to JA. Genetic and phenotypic analyses of the ber mutants with altered JA responses indicate that we have identified several novel loci involved in JA signaling.
机译:Bestatin是某些氨基肽酶的有效抑制剂,以前被证明是番茄(Lycopersicon esculentum)伤口反应基因的强大诱导剂。在这里,我们提供了几条证据,表明Bestatin可以特异性激活植物中的茉莉酸(JA)信号传导。首先,Bestatin特异性激活JA诱导型基因在番茄和拟南芥(Arabidopsis thaliana)中的表达。其次,Bestatin诱导JA反应基因需要依赖COI1的JA信号通路,但并不严格依赖JA生物合成。第三,使用拟南芥全基因组芯片进行的微阵列分析表明,用Bestatin处理过的植物的基因表达谱与JA处理过的植物相似。第四,Bestatin促进了一系列与JA相关的发育表型。综上所述,bestatin在调节JA信号过程中的独特作用模式使我们得出这样的假设:bestatin通过调节JA信号中的一些关键调节剂发挥作用。我们已采用bestatin作为通过化学遗传筛选来解剖JA信号的实验工具,产生了对拟南芥bestatin抗性(ber)突变体的集合,这些突变体对bestatin对根伸长的抑制作用不敏感。进一步的表征工作表明,某些ber突变体在各种JA诱导的反应中均存在缺陷,这使我们可以将ber突变体分为三个表型组:JA敏感性ber突变体,JA过敏性ber突变体和对Bestatin不敏感但显示正常的突变体对JA的回应。对具有JA反应改变的ber突变体的遗传和表型分析表明,我们已经鉴定出几个参与JA信号传导的新基因座。

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