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Maize Inoculation with Microbial Consortia: Contrasting Effects on Rhizosphere Activities, Nutrient Acquisition and Early Growth in Different Soils

机译:玉米与微生物联盟接种:对根际活动的对比作用,不同土壤中的营养收购和早期生长

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摘要

The benefit of plant growth-promoting microorganisms (PGPMs) as plant inoculants is influenced by a wide range of environmental factors. Therefore, microbial consortia products (MCPs) based on multiple PGPM strains with complementary functions, have been proposed as superior, particularly under challenging environmental conditions and for restoration of beneficial microbial communities in disturbed soil environments. To test this hypothesis, the performance of a commercial MCP inoculant based on 22 PGPM strains was investigated in greenhouse experiments with maize on three soils with contrasting pH, organic matter content and microbial activity, under different P and N fertilization regimes. Interestingly, the MCP inoculant stimulated root and shoot growth and improved the acquisition of macronutrients only on a freshly collected field soil with high organic matter content, exclusively in combination with stabilized ammonium fertilization. This was associated with transiently increased expression of AuxIAA5 in the root tissue, a gene responsive to exogenous auxin supply, suggesting root growth promotion by microbial auxin production as a major mode of action of the MCP inoculant. High microbial activity was indicated by intense expression of soil enzyme activities involved in C, N and P cycling in the rhizosphere (cellulase, leucine peptidase, alkaline and acid phosphatases) but without MCP effects. By contrast, the MCP inoculation did not affect maize biomass production or nutrient acquisition on soils with very little Corg and low microbial activity, although moderate stimulation of rhizosphere enzymes involved in N and P cycling was recorded. There was also no indication for MCP-induced solubilization of Ca-phosphates on a calcareous sub-soil fertilized with rock-phosphate. The results demonstrate that the combination of multiple PGPM strains with complementary properties as MCP inoculants does not necessarily translate into plant benefits in challenging environments. Thus, a better understanding of the conditions determining successful MCP application is mandatory.
机译:植物生长促进微生物(PGPMs)作为植物接种物的益处是由多种环境因素的影响。因此,基于具有互补功能的多个PGPM菌株的微生物聚生产品(MCP)的,已被提议作为优异的,特别是在具有挑战性的环境条件和用于在扰动土环境有益的微生物群落的恢复。为了检验这一假设,根据22个PGPM菌株商业MCP孕育剂的性能在温室实验中,研究了玉米上三种土壤具有对比pH值,有机质含量和微生物活性,不同的P和N施肥方式下。有趣的是,MCP孕育剂刺激根和枝条生长,提高了获取的常量营养物仅在新鲜收集的田间土壤与有机质含量高,只在与稳定化铵受精组合。这是与在根组织AuxIAA5的表达瞬时增加,响应于外源生长素供给的基因相关联,提示通过微生物生产生长素根生长促进作为MCP孕育剂作用的主要模式。高的微生物活性是通过参与C,N,并在根际磷循环(纤维素酶,亮氨酸肽酶,碱性和酸性磷酸酶)土壤酶活性的强烈表达,但不影响MCP指示。相比之下,MCP接种并不会影响很少Corg和低微生物活性土壤玉米生物量生产或营养收购,虽然根际中度刺激酶参与N和记录磷循环。另外,也没有指示对钙质子土岩磷酸受精钙磷酸盐的MCP-引发的增溶。结果表明,具有互补性质MCP菌剂多个PGPM菌株的组合未必能转化到植物好处在挑战性的环境。因此,更好地了解确定成功MCP应用的条件是强制性的。

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