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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Cotton mitogen-activated protein kinase4 (GhMPK4) confers the transgenic Arabidopsis hypersensitivity to salt and osmotic stresses
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Cotton mitogen-activated protein kinase4 (GhMPK4) confers the transgenic Arabidopsis hypersensitivity to salt and osmotic stresses

机译:棉花促分裂原激活蛋白激酶4(GhMPK4)赋予转基因拟南芥对盐和渗透胁迫的超敏性

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摘要

Cotton (Gossypium hirsutum) as one of the most important economic crop in the world is often suffering from biotic and abiotic stresses during its growth seasons. Mitogen-activated protein kinase (MAPK) cascades participate in signal transduction of extracellular stimuli and regulate multiple biotic and abiotic stress responses in plants. In this study, a MAPK gene (GhMPK4) belonging to the group B of MAPK family was identified in cotton. Quantitative RT-PCR analysis showed that expression of GhMPK4 was induced by high salinity and osmotic stresses. Overexpression of GhMPK4 in Arabidopsis significantly enhanced the transgenic plants' sensitivity to salt and osmotic stresses and exogenous abscisic acid (ABA). Under NaCl, mannitol and ABA treatments, the rates of seed germination and cotyledon expansion/greening of the GhMPK4 overexpression transgenic lines were remarkably declined compared with those of wild type, and roots of the GhMPK4 overexpression transgenic seedlings were shorter than those of wild type. Chlorophyll and proline contents in leaves of the GhMPK4 transgenic lines were obviously lower than those in wild type. Growth status of the GhMPK4 transgenic plants was worse than that of wild type when being subjected to drought and salinity stresses. Furthermore, the expression levels of the stress-related genes were altered in the transgenic plants under NaCl, mannitol and ABA treatments, compared with those in wild type. Taken the data together, it is suggested that GhMPK4 as a negative regulator may participate in response to salt and osmotic stresses and ABA signaling through affecting the expression of the stress-related genes in plants.
机译:棉花(陆地棉)是世界上最重要的经济作物之一,在其生长季节经常遭受生物和非生物胁迫。丝裂原激活的蛋白激酶(MAPK)级联参与细胞外刺激的信号转导,并调节植物中的多种生物和非生物胁迫响应。在这项研究中,在棉花中鉴定了一个属于MAPK家族B组的MAPK基因(GhMPK4)。定量RT-PCR分析表明,高盐度和渗透胁迫诱导了GhMPK4的表达。 GhMPK4在拟南芥中的过表达显着增强了转基因植物对盐和渗透胁迫以及外源脱落酸(ABA)的敏感性。在NaCl,甘露醇和ABA处理下,与野生型相比,GhMPK4过表达转基因品系的种子发芽率和子叶扩展/绿化率均显着下降,而GhMPK4过表达转基因幼苗的根部比野生型更短。 GhMPK4转基因株系叶片中的叶绿素和脯氨酸含量明显低于野生型。当遭受干旱和盐分胁迫时,GhMPK4转基因植物的生长状况比野生型差。此外,与野生型相比,在NaCl,甘露醇和ABA处理下,转基因植物中胁迫相关基因的表达水平发生了变化。综合考虑这些数据,表明GhMPK4作为负调节剂可能通过影响植物中与胁迫相关的基因的表达而参与盐和渗透胁迫以及ABA信号转导。

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