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Responses of Germination and seedling growth in Leymus chinensis to Sodic-saline Soils and their adaptive mechanisms

机译:羊草萌发和幼苗生长对盐渍土壤的萌发和幼苗生长及其自适应机制

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We investigated the effect of soils with different pH on the germination, seedling growth and ion distribution of Leymus chinensis. Soils with different pH values were obtained by mixing the nonsodic-saline soil and sodic-saline soil at different ratios. Results showed that seed germination percentages in soils with pH 7.49-9.14 were all higher than 50%. and the seedlings could grow normally. When the pH was higher than 9.53, the germination percentage was lower than 50% and only some of the seedlings could grow normally but when the pH was higher than 9.86. germination was lower than 3.3% and most of the seedlings died within 50 days after their germination. Faster seedling growth rate in the early stage and more tillers during the whole growth stage were obtained in mild sodic-saline stresses. With the increase of sodic-saline stress. Na+content in shoots and roots were increased. while the content of K+, Ca2+and the ratio of K+/Na+and Ca2+/Na+were all decreased. However, the shoots of L. chinensis showed higher K+/Na+ratio while lower Ca2+/Na+ratio compared with that of the roots. The ratios of K+/Na+were higher than 1 when the pH was no more than 9.14 and this showed that maintaining high content of K+made the L. chinensis more adaptive to the sodic saline soil. Selective uptake of K+and Na+, maintaining higher level of K+/Na+and Ca2+/Na+ratios, strong K+, Ca2+transport activity from roots to shoots were the main mechanisms for L. chinensis adapting the sodic saline stress.
机译:我们调查了土壤对不同pH的萌发,幼苗生长和卵巢离子分布的影响。通过在不同比例的不同比例中混合非霉素土壤和盐水土壤来获得具有不同pH值的土壤。结果表明,pH 7.49-9.14的土壤中的种子萌发百分比均高于50%。幼苗通常会成长。当pH高于9.53时,发芽率低于50%,只有一些幼苗可以通常会生长,但是当pH高于9.86时。萌发低于3.3%,大部分幼苗在萌发后50天内死亡。在轻度盐水应激中获得早期阶段和更多分蘖的更快幼苗生长速率和更多的分蘖。随着盐酸盐胁迫的增加。芽和根部的含量增加。虽然K +,Ca2 +和K + / Na +和Ca2 + / Na +的比例均降低。然而,L.Chinensis的芽显示出较高的K + / Na +比,同时与根的较低的Ca2 + / Na +比率。当pH不超过9.14时,K + / Na +的比率高于1,并且这表明将高含量的K +保持L. Chinensis更适应于癸二盐土壤。选择性摄取K +和Na +,维持较高水平的K + / Na +和Ca2 + / Na +比率,强烈的K +,Ca2 +转运活性从根部射击的主要机制是适应碳酸盐胁迫的主要机制。

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