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Expression of LeNHX isoforms in response to salt stress in salt sensitive and salt tolerant tomato species

机译:盐敏感和耐盐番茄品种中响应盐胁迫的LeNHX亚型表达

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In general, wild tomato species are more salt tolerant than cultivated species, a trait that is related to enhanced Na ~+ accumulation in aerial parts in the wild species, but the molecular basis for these differences is not known. Plant NHX proteins have been suggested to be important for salt tolerance by promoting accumulation of Na ~+ or K ~+ inside vacuoles. Therefore, differences in expression or activity of NHX proteins in tomato could be at the basis of the enhanced salt tolerance in wild tomato species. To test this hypothesis, we studied the expression level of four NHX genes in the salt sensitive cultivated species Solanum lycopersicum L. cv. Volgogradskij and the salt tolerant wild species Solanum pimpinelifolium L in response to salt stress. First, we determined that in the absence of salt stress, the RNA abundance of LeNHX2, 3 and 4 was comparable in both species, while more LeNHX1 RNA was detected in the tolerant species. LeNHX2 and LeNHX3 showed comparable expression levels and were present in all tissues, while LeNHX4 was expressed above all in stem and fruit tissues. Next, we confirmed that the wild species was more tolerant and accumulated more Na ~+ in aerial parts of the plant. This correlated with the observation that salt stress induced especially the LeNHX3 and LeNHX4 isoforms in the tolerant species. These results support a role of NHX genes as determinants of salt tolerance in tomato, inducing enhanced Na ~+ accumulation observed in the wild species when grown in the presence of NaCl.
机译:一般而言,野生番茄品种比栽培品种更耐盐,该特性与野生品种空中部分Na〜+积累的增强有关,但这些差异的分子基础尚不清楚。通过促进液泡内Na〜+或K〜+的积累,植物NHX蛋白对于耐盐性很重要。因此,番茄中NHX蛋白表达或活性的差异可能是野生番茄中耐盐性增强的基础。为了验证该假设,我们研究了盐敏感栽培种茄茄中四个NHX基因的表达水平。伏尔加格勒斯基和耐盐的野生物种甜菜叶茄对盐胁迫的响应。首先,我们确定在没有盐胁迫的情况下,LeNHX2、3和4的RNA丰度在两个物种中都是可比的,而在耐性物种中检测到了更多的LeNHX1 RNA。 LeNHX2和LeNHX3显示可比的表达水平,并存在于所有组织中,而LeNHX4首先在茎和果实组织中表达。接下来,我们确认了野生物种对植物的耐受性更高,并且在植物的地上部分积累了更多的Na〜+。这与以下观察结果相关:盐胁迫特别诱导了耐性物种中的LeNHX3和LeNHX4亚型。这些结果支持了NHX基因作为番茄耐盐性的决定因素的作用,当在NaCl存在下生长时,诱导了野生物种中Na +积累的增强。

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