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首页> 外文期刊>African Journal of Agricultural Research >Salinity-alkalinity tolerance in wheat: Seed germination, early seedling growth, ion relations and solute accumulation
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Salinity-alkalinity tolerance in wheat: Seed germination, early seedling growth, ion relations and solute accumulation

机译:小麦的耐盐碱性:种子发芽,幼苗早期生长,离子关系和溶质积累

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摘要

Germination and early seedling growth are the most critical stages for plant establishment in saline-alkaline soil. To gain a better understanding of relations between germination and seedling establishment, and the physiological adaptive mechanisms of the two stages under salt and alkali environments, wheat was tested by mixing two neutral salts (NaCl:Na2SO4) and two alkaline salts (NaHCO3:Na2CO3). Results showed that reductions of germination percentage and seedling growth were greater under alkali stress. Nongerminated seeds germinated well after being transferred from higher salinity and lower alkalinity to distilled water. The Na+ concentration and Na+/K+ ratio increased much greater under alkali stress, especially in root. The K+ concentrations in both shoot and root were not affected under salt stress, but decreased under alkali stress. Proline and soluble sugars were the primary organic osmolytes under the two stresses. Our results suggest that the deleterious effects of alkali stress are more severe than salt stress. Higher Na+ concentration in root is an important feature of wheat tolerance of salinity-alkalinity at early seedling stage. The different saline-alkaline tolerant abilities between germination and early seedling stage indicate that for wheat, successful germination does not ensure seedlings can survive in saline-alkaline soil of Northeast China.
机译:萌发和幼苗早期生长是在盐碱土壤中建立植物的最关键阶段。为了更好地了解发芽和幼苗建立之间的关系以及盐和碱环境下两个阶段的生理适应机制,通过将两种中性盐(NaCl:Na2SO4)和两种碱性盐(NaHCO3:Na2CO3)混合来测试小麦。结果表明,碱胁迫下发芽率和幼苗生长的降低幅度更大。从较高盐度和较低碱度转移到蒸馏水中后,未发芽的种子发芽良好。在碱胁迫下,尤其是在根部,Na +浓度和Na + / K +比增加得多。在盐胁迫下,枝条和根部的钾离子浓度均不受影响,而在碱胁迫下,钾离子浓度下降。在两种胁迫下,脯氨酸和可溶性糖是主要的有机渗透物。我们的结果表明,碱胁迫的有害作用比盐胁迫更为严重。根系中较高的Na +浓度是小麦苗期耐盐碱度的重要特征。萌发与幼苗早期之间不同的耐盐碱能力表明,对于小麦而言,成功的发芽并不能确保幼苗能够在中国东北的盐碱土壤中生存。

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