首页> 外文期刊>Applied Soil Ecology >Co-inoculation of Dietzia natronolimnaea and Glomus intraradices with vermicompost positively influences Ocimum basilicum growth and resident microbial community structure in salt affected low fertility soils
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Co-inoculation of Dietzia natronolimnaea and Glomus intraradices with vermicompost positively influences Ocimum basilicum growth and resident microbial community structure in salt affected low fertility soils

机译:盐渍病低肥力土壤中共同接种Dietsia natronolimnaea和Glomus inradiradies与ver虫的行为对罗勒茄的生长和微生物群落结构产生积极影响

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摘要

Plant growth promoting microorganisms (rhizospheric bacteria and mycorrhizal fungi) provide a sustainable alternative to enhanced crop production along with improved soil health in varying environments. The present study was aimed to elucidate the alteration occurring in innate rhizospheric microbial communities associated with inoculation of AM fungi and PGPR along with organic manure and the resulting improved plant growth under naturally occurring salt stress. The results demonstrate improved growth of Ocimum basilicum CIM-Saumya plants applied with bio-inoculants (Dietzia natronolimnaea STR1 and Glomus intraradices (Gi)) along with organic manure (vermicompost) under salt stressed soil conditions in both glasshouse and field trials. Rhizospheric microbial (bacteria and fungi) community structure as analyzed through terminal restriction fragment length polymorphism (TRFLP) demonstrated a positive effect of microbial inoculation on the indigenous microbial community structure. A notable impact of combined inoculations on the bacterial community was observed in comparison to single applications of either of the bio-inoculants; however, this effect was not iterated in fungal community structure. (C) 2016 Elsevier B.V. All rights reserved.
机译:促进植物生长的微生物(根际细菌和菌根真菌)提供了一种可持续的替代方法,可以在多种环境下提高作物产量并改善土壤健康状况。本研究旨在阐明先天根际微生物群落中与AM真菌和PGPR以及有机肥一起接种相关的变化,以及在天然盐胁迫下植物生长的改善。结果表明,在温室和田间试验中,在盐分胁迫的土壤条件下,施用有机生物灭活剂(Dietzia natronolimnaea STR1和Glomus intraradices(Gi))以及有机肥料(vermicompost)的罗勒罗勒CIM-Saumya植物的生长均得到改善。通过末端限制性片段长度多态性(TRFLP)分析的根际微生物(细菌和真菌)群落结构证明了微生物接种对本地微生物群落结构的积极影响。与任何一种生物接种剂的单次施用相比,联合接种对细菌群落产生了显着影响。但是,这种作用并未在真菌群落结构中反复出现。 (C)2016 Elsevier B.V.保留所有权利。

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