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Contrasting microbial community responses to salinization and straw amendment in a semiarid bare soil and its wheat rhizosphere

机译:半干旱裸土及其小麦根际中盐渍化和秸秆改良对微生物群落的响应

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摘要

Soil salinization is a major constraint of agriculture in semiarid ecosystems. In this study soil microcosms were applied to evaluate the impact of a lower- and higher-level salinization treatment of a pristine scrubland soil on the abundance of Bacteria, Archaea, and Fungi, and on prokaryotic diversity in bare soil and the rhizosphere of wheat assessed by qPCR and high-throughput sequencing of 16S rRNA gene amplicons. Furthermore, the impact of soil straw amendment as a salt-stress alleviation strategy was studied. While the low-level salinity stimulated plant growth, the seedlings did not survive under the higher-level salinity unless the soil was amended with straw. Without the straw amendment, salinization had only minor effects on the microbial community in bare soil. On the other hand, it decreased prokaryotic diversity in the rhizosphere of wheat, but the straw amendment was effective in mitigating this effect. The straw however, was not a significant nutrient source for the rhizosphere microbiota but more likely acted indirectly by ameliorating the salinity stress on the plant. Members of Proteobacteria, Actinobacteria, and Firmicutes were abundant among the bacteria that reacted to soil salinization and the straw amendment but showed inconsistent responses indicating the large physiological diversity within these phyla.
机译:土壤盐渍化是半干旱生态系统中农业的主要制约因素。在这项研究中,土壤微观世界被用来评估原始灌丛土壤的低水平和高水平盐渍化处理对细菌,古细菌和真菌的丰度以及裸土和小麦根际中原核生物多样性的影响。通过qPCR和16S rRNA基因扩增子的高通量测序。此外,研究了土壤秸秆改良剂作为缓解盐胁迫策略的影响。虽然低盐度刺激了植物的生长,但除非用稻草改良土壤,否则在高盐度下幼苗无法存活。如果不进行秸秆改良,盐渍化对裸露土壤中的微生物群落影响很小。另一方面,它减少了小麦根际中的原核生物多样性,但秸秆改良剂可有效减轻这种影响。然而,秸秆并不是根际微生物群落的重要营养来源,而是更有可能通过缓解植物的盐分胁迫而间接发挥作用。在对土壤盐渍化和秸秆改良剂起反应的细菌中,Proteobacteria,Actinobacteria和Firmicutes的成员丰富,但显示出不一致的响应,表明这些门内的生理多样性很大。

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