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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 >A rice (Oryza sativa L.) MAP kinase gene, OsMAPK44, is involved in response to abiotic stresses.
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A rice (Oryza sativa L.) MAP kinase gene, OsMAPK44, is involved in response to abiotic stresses.

机译:水稻(Oryza sativa L.)MAP激酶基因OsMAPK44参与了对非生物胁迫的反应。

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We have isolated and characterized a putative rice MAPK gene (designated OsMAPK44) encoding for a protein of 593 amino acids that has the MAPK family signature and phosphorylation activation motif, TDY. Alignment of the predicted amino acid sequences of OsMAPK44 showed high homology with other rice MAPKs. Under normal conditions, the OsMAPK44 gene is highly expressed in root tissues, but relatively less in leaf and stem tissues of the japonica type rice plant (O. sativa L. Donggin). mRNA expression of the gene is highly inducible by salt and drought treatment, but not by cold treatment. Moreover, the mRNA level of the OsMAPK44 is up-regulated by exogenously applied Abscisic acid (ABA) and H2O2. When we compared the OsMAPK44 gene expression level between a salt sensitive indica cultivar (IR64) and a salt resistant indica cultivar (Pokkali), they showed some difference in expression kinetics with the salt treatment. OsMAPK44 gene expression in Pokkali was slightly up-regulated within 30 min and then disappeared rapidly, while IR64 maintained its expression for 1 h following down-regulation. Under the salinity stress, OsMAPK44 overexpression transgenic rice plants showed less damage and greater ratio of potassium and sodium than OsMAPK44 suppressed transgenic lines did, suggesting that OsMAPK44 may have a role to prevent damages due to working for favorable ion balance in the presence of salinity..
机译:我们已经分离并鉴定了一个假定的水稻MAPK基因(称为OsMAPK44),该基因编码具有MAPK家族标记和磷酸化激活基序TDY的593个氨基酸。 OsMAPK44的预测氨基酸序列的比对显示与其他水稻MAPK的高度同源性。在正常情况下,OsMAPK44基因在粳稻类型水稻(O. sativa L. Donggin)的根组织中高表达,而在叶和茎组织中相对较少。盐和干旱处理可高度诱导该基因的mRNA表达,而冷处理则不能。此外,外源施加的脱落酸(ABA)和H2O2会上调OsMAPK44的mRNA水平。当我们比较盐敏感的d品种(IR64)和抗盐的d品种(Pokkali)之间的OsMAPK44基因表达水平时,它们在盐处理方面表现出一些动力学差异。 Pokkali中的OsMAPK44基因表达在30分钟内略有上调,然后迅速消失,而IR64在下调后保持其表达1小时。在盐分胁迫下,OsMAPK44过表达的转基因水稻植株比OsMAPK44抑制的转基因株系显示出更少的伤害和更大的钾和钠比例,这表明OsMAPK44可能由于在盐分存在的情况下通过有利的离子平衡而起到防止损害的作用。 。

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