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首页> 外文期刊>Journal of Experimental Botany >Expressions of OsHKT1, OsHKT2, and OsVHA are differentially regulated under NaCl stress in salt-sensitive and salt-tolerant rice (Oryza sativa L.) cultivars
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Expressions of OsHKT1, OsHKT2, and OsVHA are differentially regulated under NaCl stress in salt-sensitive and salt-tolerant rice (Oryza sativa L.) cultivars

机译:在盐敏感和耐盐水稻(Oryza sativa L.)品种的NaCl胁迫下,OsHKT1,OsHKT2和OsVHA的表达受到差异调节。

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Under NaCl-dominated salt stress, the key to plant survival is maintaining a low cytosolic Na+ level or Na+/K+ ratio. The OsHKT1, OsHKT2, and OsVHA transporter genes might play important roles in maintaining cytosolic Na+ homeostasis in rice (Oryza sativa L. indica cvs Pokkali and BRRI Dhan29). Upon NaCl stress, the OsHKT1 transcript was significantly down-regulated in salt-tolerant cv. Pokkali, but not in salt-sensitive cv. BRRI Dhan29. NaCl stress induced the expression of OsHKT2 and OsVHA in both Pokkali and BRRI Dhan29. In cv. Pokkali, OsHKT2 and OsVHA transcripts were induced immediately after NaCl stress. However, in cv. BRRI Dhan29, the induction of OsHKT2 was quite low and of OsVHA was low and delayed, compared with that in cv. Pokkali. OsHKT2 and OsVHA induction mostly occurred in the phloem, in the transition from phloem to mesophyll cells, and in the mesophyll cells of the leaves. The vacuolar area in cv. Pokkali did not change under either short- (5–10 min) or long-term (24 h) salt stress, although it significantly increased 24 h after the stress in cv. BRRI Dhan29. When expressional constructs of VHA-c and VHA-a with YFP and CFP were introduced into isolated protoplasts of cvs Pokkali and BRRI Dhan29, the fluorescence resonance energy transfer (FRET) efficiency between VHA-c and VHA-a upon salt stress decreased slightly in cv. Pokkali, but increased significantly in cv. BRRI Dhan29. The results suggest that the salt-tolerant cv. Pokkali regulates the expression of OsHKT1, OsHKT2, and OsVHA differently from how the salt-sensitive cv. BRRI Dhan29 does. Together, these proteins might confer salt tolerance in Pokkali by maintaining a low cytosolic Na+ level and a correct ratio of cytosolic Na+/K+.
机译:在以NaCl为主的盐胁迫下,植物存活的关键是维持较低的胞质Na + 水平或Na + / K + 比。 OsHKT1,OsHKT2和OsVHA转运蛋白基因可能在维持稻米中的胞质Na + 稳态中发挥重要作用(Oryza sativa L. indica cvs Pokkali和BRRI Dhan29)。在NaCl胁迫下,耐盐性简历中OsHKT1转录物显着下调。 Pokkali,但不包括对盐敏感的简历。 BRRI丹29。 NaCl胁迫诱导Pokkali和BRRI Dhan29中OsHKT2和OsVHA的表达。在简历中NaCl胁迫后立即诱导Pokkali,OsHKT2和OsVHA转录本。但是,在简历中。 BRRI Dhan29,与cv相比,OsHKT2的诱导非常低,而OsVHA的诱导则很低且延迟。 Pokkali。 OsHKT2和OsVHA的诱导主要发生在韧皮部,从韧皮部到叶肉细胞的过渡以及叶片的叶肉细胞中。简历中的液泡面积。 Pokkali在短期(5–10分钟)或长期(24小时)盐胁迫下都没有变化,尽管它在cv应力后24小时显着增加。 BRRI丹29。当将具有YFP和CFP的VHA-c和VHA-a的表达构建体引入到cvs Pokkali和BRRI Dhan29的分离原生质体中时,盐胁迫下VHA-c和VHA-a之间的荧光共振能量转移(FRET)效率略有降低。简历。 Pokkali,但简历却大幅增加。 BRRI丹29。结果表明耐盐性简历。 Pokkali对OsHKT1,OsHKT2和OsVHA的表达的调节与对盐敏感的cv的调节不同。 BRRI Dhan29做到了。这些蛋白质在一起可以通过维持较低的胞质Na + 水平和正确的胞质Na + / K + 比例来赋予Pokkali耐盐性。

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