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首页> 外文期刊>Journal of Plant Physiology >Osmotic adjustment, gas exchanges and chlorophyll fluorescence of a hexaploid triticale and its parental species under salt stress
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Osmotic adjustment, gas exchanges and chlorophyll fluorescence of a hexaploid triticale and its parental species under salt stress

机译:盐胁迫下六倍体小黑麦及其亲本的渗透调节,气体交换和叶绿素荧光

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The effect of salt stress (NaCl 85.7 or 110 mmol/L) was investigated in the triticale T300 and its parental species, Triticum dicoccum farrum (Triticum df) and Secale cereale cv. Petkus. Triticum df and T300 were more salt-tolerant than the rye (1110 mmol/L NaCl was the highest concentration allowing rye growth to the three-leaf stage). Na+, K+ and Cl- ions accounted for almost half of the osmotic adjustment in Triticum df and T300, and up to 90% in rye. Salinity decreased the net photosynthesis and transpiration rates of the three cereals as compared to control plants, but induced no significant change in chlorophyll a fluorescence parameters. Water-use efficiency (WUE) increased with salinity. In the presence of 110 mmol/L NaCl, the K+/Na+ ratio decreased markedly in rye as compared to the other two cereals. Proline concentration, which increased in Triticum off and T300, could have protected membrane selectivity in favour of K+. Proline content remained low in rye, and increasing soluble sugar content did not appear to prevent competition between Na+ and K+. The salt sensitivity of rye could be due to low K+ uptake in the presence of a high NaCl concentration.
机译:在小黑麦T300及其亲本物种Triticum dicoccum farrum(Triticum df)和Secale graine cv中研究了盐胁迫(NaCl 85.7或110 mmol / L)的影响。佩特克斯。 Triticum df和T300的耐盐性比黑麦高(1110 mmol / L NaCl是允许黑麦生长到三叶阶段的最高浓度)。 Na +,K +和Cl-离子在Triticum df和T300中几乎占渗透调节的一半,在黑麦中高达90%。与对照植物相比,盐度降低了三种谷物的净光合作用和蒸腾速率,但叶绿素a荧光参数没有明显变化。水分利用效率(WUE)随着盐度的增加而增加。与其他两种谷物相比,在110 mmol / L NaCl的存在下,黑麦中的K + / Na +比明显降低。在Triticum off和T300中增加的脯氨酸浓度可以保护膜的选择性,有利于K +。黑麦中脯氨酸的含量仍然很低,可溶性糖含量的增加似乎并未阻止Na +和K +之间的竞争。黑麦的盐敏感性可能是由于在高NaCl浓度下对K +的吸收较低。

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