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首页> 外文期刊>Soil Biology & Biochemistry >An AM fungus and a PGPR intensify the adverse effects of salinity on the stability of rhizosphere soil aggregates of Lactuca sativa
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An AM fungus and a PGPR intensify the adverse effects of salinity on the stability of rhizosphere soil aggregates of Lactuca sativa

机译:AM真菌和PGPR增强盐度对紫花苜蓿根际土壤团聚体稳定性的不利影响

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A mesocosm experiment was conducted to examine the effect of an arbuscular mycorrhizal (AM) fungus (Glomus mosseae (Nicol & Gerd.) Gerd. & Trappe) and a plant growth-promoting rhizobacterium (PGPR) (Pseudomonas mendocina Palleroni), alone or in combination, on the structural stability of the rhizosphere soil of Lactuca sativa L. grown under two levels of salinity. The plants inoculated with P. mendocina had significantly greater shoot biomass than the control plants at both salinity levels, whereas the mycorrhizal inoculation was only effective in increasing shoot biomass at the moderate salinity level. The aggregate stability of soils inoculated with the PGPR and/or G. mosseae significantly decreased with increasing saline stress (about 29% lower than those of soils under non-saline conditions). Only the inoculated soils showed higher concentrations of sodium (Na) under severe saline stress. The severe salinity stress decreased the glomalin-related soil protein (GRSP) concentration, but the highest values of GRSP were recorded in the inoculated soils. Our findings suggest that the use of AM fungi and/or a PGPR for alleviating salinity stress in lettuce plants could be limited by their detrimental effect on soil structural stability.
机译:进行了介观试验,以单独或在植物中研究丛枝菌根(AM)真菌(Glomus mosseae(Nicol&Gerd。)Gerd。&Trappe)和植物促生根瘤菌(PGPR)(Pseudomonas mendocina Palleroni)的作用。组合,对两种盐度下生长的紫花苜蓿根际土壤的结构稳定性。在两个盐度水平下,接种门尾假单胞菌的植物均具有比对照植物明显更高的芽生物量,而菌根接种仅在中等盐度水平下有效地增加了芽生物量。 PGPR和/或G. mosseae接种的土壤的总体稳定性随着盐胁迫的增加而显着降低(比非盐条件下的土壤低约29%)。在严重的盐胁迫下,只有接种的土壤显示出较高的钠(Na)浓度。严重的盐分胁迫降低了gloomalin相关的土壤蛋白(GRSP)浓度,但在接种的土壤中记录到了最高的GRSP值。我们的发现表明,AM真菌和/或PGPR缓解莴苣植物盐分胁迫的应用可能受到其对土壤结构稳定性的不利影响所限制。

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