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首页> 外文期刊>Journal of Biotech Research >Novel Arabidopsis jasmonate-responsive mutants have variations in bacterial disease resistance
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Novel Arabidopsis jasmonate-responsive mutants have variations in bacterial disease resistance

机译:新型拟南芥茉莉酸酯响应突变体在细菌抗病性方面有差异

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Jasmonates (JAs) regulate a wide range of developmental processes in plants and play a central role in regulating plant defense against biotic stresses such as pathogen infections and insect attacks. A transgenic Arabidopsis line containing the JA inducible VSP1 promoter linked to the Luciferase (LUC) reporter gene was mutagenized using random T-DNA insertion tags. Previous genetic screening of these lines through LUC activity identified 12 Arabidopsis mutants with reduced (jas mutants) or enhanced (jae mutants) PVSP1::Luciferase reporter gene expression upon JA treatment. Here we report phenotypic evaluation of these mutants in response to pathogen infection using Pseudomonas syringae pv. tomato DC 3000 strain. Out of 12 JA-related mutants, five (jas1, jas2, jas5, jas9 and jae1) showed increased susceptibility compared to the parental line, while one mutant (jas7) expressed significant resistance to the bacterial DC 3000 strain. Further molecular characterization of the selected resistant (jas7) and susceptible (jas1) mutants was conducted. Although both mutants were identified as jasmonate-signaling suppressors (jas) at the protein level, the LUC gene was constitutively expressed in jas7 at the mRNA level, while it was abolished in jas1. On the other hand, the endogenous VSP1 gene was constitutively expressed in jas1, but not in jas7 and the parental line. In addition, the expression of two pathogen responsive marker genes (PDF1.2 and THI2.1) were constitutively expressed in the disease resistant mutant (jas7), while expression in the disease susceptible mutant (jas1) was nearly undetectable before JA treatment. Genetic analysis of the jas1 mutant in an F2 segregation population demonstrated that a single recessive gene in jas1 regulates its disease susceptibility.
机译:茉莉酸酯(JAs)调节植物的广泛发育过程,并在调节植物防御生物胁迫(例如病原体感染和昆虫攻击)中发挥重要作用。使用随机T-DNA插入标签诱变含有与荧光素酶(LUC)报告基因连接的JA诱导型VSP1启动子的转基因拟南芥品系。通过LUC活性对这些品系的先前遗传筛选确定了JA处理后具有减少的(jas突变体)或增强的(jae突变体)PVSP1 ::荧光素酶报道基因表达的12个拟南芥突变体。在这里,我们报告这些突变体使用丁香假单胞菌光伏对病原体感染的表型评估。番茄DC 3000株。与亲本系相比,在12个与JA相关的突变体中,五个(jas1,jas2,jas5,jas9和jae1)显示出更高的易感性,而一个突变体(jas7)对细菌DC 3000菌株表现出显着的抗性。对选定的抗性(jas7)和易感性(jas1)突变体进行了进一步的分子表征。尽管两个突变体在蛋白质水平上均被确定为茉莉酸信号抑制剂(jas),但LUC基因在mRNA水平上在jas7中组成性表达,而在jas1中被取消。另一方面,内源性VSP1基因在jas1中组成性表达,但在jas7和亲本系中不表达。此外,两个病原体反应性标记基因(PDF1.2和THI2.1)的表达在抗病突变体(jas7)中组成性表达,而在易感突变体(jas1)中的表达在JA治疗前几乎不可检测。对F2隔离种群中jas1突变体的遗传分析表明,jas1中的单个隐性基因可调节其疾病易感性。

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