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Effects of Salt Stress on Ion Balance at Vegetative Stage in Rice (Oryza sativa L.)

机译:盐胁迫对水稻营养期离子平衡的影响。

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Rice (Oryza sativa L.) plants were subjected to NaCl stress within 35 days. The shoot dry weight, root dry weight, total survival percentage and contents of inorganic ions in dry samples of stressed plants were measured to identify the physiological adaptive mechanisms by which rice plants at vegetative stage tolerate salt stresses. Laboratory testing of the 10 rice cultivars showed that the salt concentration for the treatment is especially significant for assessment of the relationship between ionaccumulation and salt tolerance. Salt treatment strongly stimulated accumulations of Na+, Na+/K+ ratio, CI" in shoot and root and reduced K+, N03" contents in both organs under 1.2% NaCl stress condition, but not always under 0.6% NaCl concentration. Itwas shown significantly negative correlation (p<0.5) between the Na+ content and dry weight of shoot and root under 1.2% NaCl stress condition. Also, was founded significantly negative impact (p<0.5) of CI" ions on biomass growth and survival rice plantsand positive relationship (p<0.5) among the root dry weight and K+, N03" content under the high NaCl concentration (1.2% NaCl). So, in addition to Na+, the contributions of CI" to abiotic stresses of rice should not be ignored.
机译:水稻(Oryza sativa L.)植物在35天内受到NaCl胁迫。测量了受胁迫植物的干样品中的茎干重量,根部干重,总存活百分比和无机离子含量,以鉴定水稻植物在营养阶段耐盐胁迫的生理适应机制。对10个水稻品种的实验室测试表明,处理中的盐浓度对于评估离子积累与耐盐性之间的关系尤为重要。盐处理强烈刺激了Na +,Na + / K +比,CI“在茎和根中的积累,并在1.2%NaCl胁迫条件下降低了两个器官中的K +,NO3”含量,但在0.6%NaCl浓度下并不总是如此。在1.2%NaCl胁迫条件下,Na +含量与枝和根的干重之间呈显着负相关(p <0.5)。此外,还发现在高NaCl浓度(1.2%NaCl)下,CI“离子对水稻生物量的生长和存活水稻植株有显着负面影响(p <0.5),并且根干重与K +,NO3”含量之间存在正相关(p <0.5)。 )。因此,除了Na +之外,CI“对水稻非生物胁迫的贡献也不容忽视。

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