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Na+ compartmentalization related to salinity stress tolerance in upland cotton (Gossypium hirsutum) seedlings

机译:的Na +区域化陆地棉与盐胁迫耐受性(陆地棉)苗

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The capacity for ion compartmentalization among different tissues and cells is the key mechanism regulating salt tolerance in plants. In this study, we investigated the ion compartmentalization capacity of two upland cotton genotypes with different salt tolerances under salt shock at the tissue, cell and molecular levels. We found that the leaf glandular trichome could secrete more salt ions in the salt-tolerant genotype than in the sensitive genotype, demonstrating the excretion of ions from tissue may be a new mechanism to respond to short-term salt shock. Furthermore, an investigation of the ion distribution demonstrated that the ion content was significantly lower in critical tissues and cells of the salt-tolerant genotype, indicating the salt-tolerant genotype had a greater capacity for ion compartmentalization in the shoot. By comparing the membrane H(+)-ATPase activity and the expression of ion transportation-related genes, we found that the H(+)-ATPase activity and Na(+)/H(+) antiporter are the key factors determining the capacity for ion compartmentalization in leaves, which might further determine the salt tolerance of cotton. The novel function of the glandular trichome and the comparison of Na(+) compartmentalization between two cotton genotypes with contrasting salt tolerances provide a new understanding of the salt tolerance mechanism in cotton.
机译:不同组织和细胞之间的离子舱化能力是调节植物中耐盐性的关键机制。在这项研究中,我们研究了在组织,细胞和分子水平的盐冲击下具有不同耐盐性的两个普满棉基因型的离子分隔能力。我们发现叶腺滴毛组可以在耐盐基因型中分泌更多的盐离子,而不是在敏感基因型中分泌更多的盐离子,证明了来自组织的离子的排泄可能是响应短期盐冲击的新机制。此外,对离子分布的研究表明,在耐盐基因型的关键组织和细胞中,离子含量显着降低,表明耐盐基因型在芽中具有更大的离子舱化能力。通过比较膜H(+) - ATP酶活性和离子运输相关基因的表达,发现H(+) - ATP酶活性和Na(+)/ h(+)抗脂肪剂是确定能力的关键因素用于叶中的离子划分,这可能进一步确定棉的耐盐性。腺体滴毛组的新功能和具有对比盐耐药的两种棉基因型之间的Na(+)级分区的比较提供了对棉花耐盐机制的新了解。

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