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首页> 外文期刊>Protoplasma: An International Journal of Cell Biology >Expression and functional analysis of putative vacuolar Ca~(2+)-transporters (CAXs and ACAs) in roots of salt tolerant and sensitive rice cultivars
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Expression and functional analysis of putative vacuolar Ca~(2+)-transporters (CAXs and ACAs) in roots of salt tolerant and sensitive rice cultivars

机译:水稻耐盐敏感品种根系中液泡Ca〜(2 +)-转运蛋白(CAXs和ACA)的表达和功能分析

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Vacuolar Ca~(2+)-transporters could play an important role for salt tolerance in rice (Oryza sativa L.) root. Here, we compared the expression profiles of putative vacuolar cation/ H~+ exchanger (CAX) and calmodulin-regulated autoinhibited Ca~(2+)-ATPase (ACA) in rice roots of salt tolerant cv. Pokkali and salt sensitive cv. IR29. In addition to five putative vacuolar CAX genes in the rice genome, a new CAX gene (OsCAX4) has been annotated. In the present study, we isolated the OsCAX4 gene and showed that its encoded protein possesses a unique transmembrane structure and is potentially involved in transporting not only Ca~(2+) but also Mn~(2+) and Cu~(2+). These six OsCAX genes differed in their mRNA expression pattern in roots of tolerant versus sensitive rice cultivars exposed to salt stress. For example, OsCAX4 showed abundant expression in IR29 (sensitive) upon prolonged salt stress. The mRNA expression profile of four putative vacuolar Ca~(2+)- ATPases (OsACA4-7) was also examined. Under control conditions, the mRNA levels of OsACA4, OsACA5, and OsACA7 were relatively high and similar among IR29 and Pokkali. Upon salt stress, only OsACA4 showed first a decrease in its expression in Pokkali (tolerant), followed by a significant increase. Based on these results, a role of vacuolar Ca~(2+) transporter for salt tolerance in rice root was discussed.
机译:液泡Ca〜(2+)转运体在水稻根系耐盐性中起重要作用。在这里,我们比较了在耐盐性简历的水稻根中假定的液泡阳离子/ H +交换子(CAX)和钙调蛋白调节的自抑制Ca〜(2 +)-ATPase(ACA)的表达谱。 Pokkali和盐敏感简历。 IR29。除了水稻基因组中的五个假定的液泡CAX基因外,还注释了一个新的CAX基因(OsCAX4)。在本研究中,我们分离了OsCAX4基因,并表明其编码的蛋白质具有独特的跨膜结构,不仅可能参与Ca〜(2+)的运输,而且还可能参与Mn〜(2+)和Cu〜(2+)的运输。 。这六个OsCAX基因在耐受盐胁迫的敏感和敏感水稻品种的根中,其mRNA表达模式不同。例如,延长盐胁迫后,OsCAX4在IR29(敏感)中显示大量表达。还检查了四个推定的液泡Ca〜(2 +)-ATPases(OsACA4-7)的mRNA表达谱。在控制条件下,IR29和Pokkali中OsACA4,OsACA5和OsACA7的mRNA水平相对较高,并且相似。在盐胁迫下,仅OsACA4首先显示其在Pokkali中的表达下降(耐性),然后显着增加。基于这些结果,讨论了液泡Ca〜(2+)转运蛋白在水稻根系耐盐性中的作用。

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