首页> 外文期刊>Plant and cell physiology >Isolation and characterization of novel mutant loci suppressing the ABA hypersensitivity of the Arabidopsis coronatine insensitive 1-16 (coi1-16) mutant during germination and seedling growth. (Special Issue: Seed biology.)
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Isolation and characterization of novel mutant loci suppressing the ABA hypersensitivity of the Arabidopsis coronatine insensitive 1-16 (coi1-16) mutant during germination and seedling growth. (Special Issue: Seed biology.)

机译:新型突变基因座的分离和鉴定,可抑制发芽和幼苗生长过程中拟南芥冠状病毒不敏感的1-16 )突变体的ABA超敏性。 (特刊:种子生物学。)

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摘要

The phytohormone ABA regulates seed germination and stress responses. The identification of clade A protein phosphatase type 2C (PP2C)-interacting proteins PYRABACTIN RESISTANCE 1 (PYR1)/RCAR (REGULATORY COMPONENT OF ABA RECEPTOR) and PYR1-LIKEs (PYLs) as ABA receptors has been a major advance in understanding this process. Here, our aim was to identify additional ABA response loci by suppressor screening of the jasmonate (JA)-insensitive coronatine insensitive 1-16 (coi1-16) mutant using its ABA-hypersensitive phenotype. The identification and genetic characterization of Coi1-16 Resistant to ABA (CRA) loci revealed several unknown and three previously known abi mutants (abi1, abi3 and abi4), thus providing proof-of-concept evidence for this study. The synergistic effect of ABA and JA on seed germination and cotyledon expansion was analyzed in depth and the roles of cra5 coi1-16, cra6 coi1-16, cra7 coi1-16 and cra8 coi1-16 in ABA signaling during seed germination and stress responses were functionally characterized. The cra5 coi1-16 mutant showed resistance to ABA, paclobutrazol, and abiotic stresses during germination and early developmental stages. Furthermore, the cra5 coi1-16 mutation was mapped to the short arm of chromosome V and mutants exhibited differential expression of ABA-responsive genes, suggesting that CRA5 may function as a positive regulator of ABA signaling. Interestingly, cra6 coi1-16, cra7 coi1-16 and cra8 coi1-16 mutants display similar ABA- and abiotic stress-insensitive phenotypes during seed germination and seedling establishment. Taken together, our results demonstrate a key role for CRA genes in regulating the onset of seed germination by ABA, and highlight how cra mutants can be used as powerful tools to analyze novel molecular components of ABA signaling in seeds.
机译:植物激素ABA调节种子发芽和胁迫反应。进化枝A蛋白磷酸酶2C型(PP2C)相互作用蛋白PYRABACTIN耐药性1(PYR1)/ RCAR(ABA受体的调节成分)和PYR1-LIKEs(PYLs)作为ABA受体已经成为理解这一过程的重要进展。在这里,我们的目的是通过抑制子筛选茉莉酸(JA)不敏感的 Coronatine不敏感1-16 ( coi1-16 )突变体来确定其他ABA反应位点-超敏表型。耐ABA ( CRA )位点的 Coi1-16基因的鉴定和遗传特性揭示了几个未知的和三个先前已知的 abi 突变体( abi1 , abi3 和 abi4 ),从而为这项研究提供了概念验证证据。深入分析了ABA和JA对种子发芽和子叶扩展的协同作用,并研究了 cra5 coi1-16 , cra6 coi1-16 , cra7 coi1的作用。对种子发芽过程中ABA信号的-16 和 cra8 coi1-16 发芽及胁迫反应进行了功能表征。 cra5 coi1-16 突变体在发芽和早期发育阶段表现出对ABA,多效唑和非生物胁迫的抗性。此外, cra5 coi1-16 突变被定位到V染色体的短臂上,并且该突变体表现出ABA反应基因的差异表达,这表明 CRA5 可能起着阳性反应的作用。 ABA信号的调节剂。有趣的是, cra6 coi1-16 , cra7 coi1-16 和 cra8 coi1-16 突变体在种子期表现出相似的ABA和非生物胁迫敏感性表型发芽和幼苗的建立。综上所述,我们的结果证明了 CRA 基因在ABA调控种子发芽过程中的关键作用,并强调了 cra 突变体如何可以用作分析新型植物的有力工具。种子中ABA信号传导的分子成分。

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