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首页> 外文期刊>Applied Soil Ecology >Mitigation of negative effects of progressive soil salinity gradients by application of humic acids and inoculation with Pseudomonas stutzeri in a salt-tolerant and a salt-susceptible pepper
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Mitigation of negative effects of progressive soil salinity gradients by application of humic acids and inoculation with Pseudomonas stutzeri in a salt-tolerant and a salt-susceptible pepper

机译:通过施用腐殖酸并在耐盐和对盐敏感的辣椒中接种斯图氏假单胞菌来减轻土壤盐分梯度递进的负面影响

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Humic acids and inoculation with the plant growth-promoting bacteria (PGPB) Pseudomonas stutzeri was used alone and combined to mitigate negative effects of progressive soil salinity gradients in a bell and a chili pepper. Plant height, length of root system, dry weight of stems,leaves and roots, number of leaves, leaf surface area, chlorophyll a and b content, total chlorophyll, and content of Na+, K+, Ca2+, and Mg2+ were measured in a salt-tolerant and a salt-susceptible pepper. We showed that applications of PGPB and humic acids did not have a clear-cut effect. Some plant parameters, such as leaf and root parameters, were positively affected at certain salinity gradients and others, such as plant height and number of leaves, did not. However, it appears that more positive effects by either treatment were more apparent in the salt resistant cultivar. No synergism on plant growth parameters and salt mitigation was detected when humic acids and PGPB were applied together. The K+/Na+ and Ca2+/Na+ ratios showed that single applications of humic acids and the PGPB enhanced these ratios in several salinity regimes. More increases in these ratios were detected in the susceptible cultivar. In several salinity regimes, metabolic synergism, leading to enhancement of these ratios, was obtained when humic acids and the PGPB were applied together. In summary, under increased salt gradient, application of the PGPB or humic acids improved some plant growth parameters. Central to those are some improvements in the K+/Na+ and Ca2+/Na+ ratios. Combined application of PGPB and humic acids indicate a potential to use this strategy to combat salinity. (C) 2016 Elsevier B.V. All rights reserved.
机译:腐殖酸和接种植物生长促进细菌(PGPB)的假单胞菌假单胞菌单独使用,并结合使用以减轻铃铛和辣椒中渐进的土壤盐分梯度的负面影响。测量盐中的植物高度,根系长度,茎,叶和根的干重,叶数,叶表面积,叶绿素a和b含量,总叶绿素以及Na +,K +,Ca2 +和Mg2 +的含量。耐盐和对盐敏感的胡椒。我们表明,PGPB和腐殖酸的应用没有明显效果。在某些盐度梯度下,某些植物参数(例如叶和根参数)受到正面影响,而其他参数(例如植物高度和叶数)则没有受到影响。但是,在耐盐品种中,两种处理均显示出更积极的效果。当腐殖酸和PGPB一起使用时,未发现对植物生长参数和减盐有协同作用。 K + / Na +和Ca2 + / Na +比值表明,在几种盐度条件下,一次施用腐殖酸和PGPB可以提高这些比值。在易感品种中检测到这些比率的更多增加。在几种盐度条件下,将腐殖酸和PGPB一起使用时,会获得代谢协同作用,从而提高这些比率。总之,在盐梯度增加的情况下,施用PGPB或腐殖酸可改善某些植物生长参数。关键的是K + / Na +和Ca2 + / Na +比例的一些改进。 PGPB和腐殖酸的联合应用表明使用该策略对抗盐度的潜力。 (C)2016 Elsevier B.V.保留所有权利。

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