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首页> 外文期刊>BMC Plant Biology >CRISPR/Cas9-Mediated SlNPR1 mutagenesis reduces tomato plant drought tolerance
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CRISPR/Cas9-Mediated SlNPR1 mutagenesis reduces tomato plant drought tolerance

机译:CRISPR / CAS9介导的SLNPR1诱变减少了番茄植物干旱耐受性

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NPR1, nonexpressor of pathogenesis-related gene 1, is a master regulator involved in plant defense response to pathogens, and its regulatory mechanism in the defense pathway has been relatively clear. However, information about the function of NPR1 in plant response to abiotic stress is still limited. Tomato is the fourth most economically crop worldwide and also one of the best-characterized model plants employed in genetic studies. Because of the lack of a stable tomato NPR1 (SlNPR1) mutant, little is known about the function of SlNPR1 in tomato response to biotic and abiotic stresses. Here we isolated SlNPR1 from tomato ‘Ailsa Craig’ and generated slnpr1 mutants using the CRISPR/Cas9 system. Analysis of the cis-acting elements indicated that SlNPR1 might be involved in tomato plant response to drought stress. Expression pattern analysis showed that SlNPR1 was expressed in all plant tissues, and it was strongly induced by drought stress. Thus, we investigated the function of SlNPR1 in tomato-plant drought tolerance. Results showed that slnpr1 mutants exhibited reduced drought tolerance with increased stomatal aperture, higher electrolytic leakage, malondialdehyde (MDA) and hydrogen peroxide (H2O2) levels, and lower activity levels of antioxidant enzymes, compared to wild type (WT) plants. The reduced drought tolerance of slnpr1 mutants was further reflected by the down-regulated expression of drought related key genes, including SlGST, SlDHN, and SlDREB. Collectively, the data suggest that SlNPR1 is involved in regulating tomato plant drought response. These results aid in further understanding the molecular basis underlying SlNPR1 mediation of tomato drought sensitivity.
机译:NPR1,致病性相关基因1的非抑制剂是涉及对病原体的植物防御反应的母稳压器,其在防御途径中的调节机制相对清晰。然而,有关NPR1在植物对非生物应激的反应中的功能的信息仍然有限。番茄是全球第四次经济作物,也是基因研究中使用的最佳特征模型植物之一。由于缺乏稳定的番茄NPR1(SLNPR1)突变体,关于SLNPR1在番茄响应对生物和非生物应激的响应中的功能很少。在这里,我们使用CRISPR / CAS9系统从番茄'AILSA CRAIG'和生成SLNPR1突变体的SLNPR1。对顺式作用元件的分析表明,SLNPR1可能参与番茄植物对干旱胁迫的反应。表达模式分析表明,SLNPR1在所有植物组织中表达,并通过干旱胁迫强烈诱导。因此,我们研究了SLNPR1在番茄植物干旱耐受性的功能。结果表明,与野生型(WT)植物相比,SLNPR1突变体表现出降低的润孔,较高的气孔孔径,较高的电解泄漏,丙醛(MDA)和过氧化氢(H2O2)水平,以及降低活性水平的抗氧化剂酶。通过下调干旱相关关键基因的下调表达,包括SLGST,SLDHN和SLDREB,进一步反映了SLNPR1突变体的耐旱性降低。统称,数据表明SLNPR1参与调节番茄植物干旱反应。这些结果有助于进一步了解番茄干旱敏感性的SLNPR1调解的分子基础。

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