首页> 美国卫生研究院文献>Plants >Interactions between Mycorrhizal Fungi Tea Wastes and Algal Biomass Affecting the Microbial Community Soil Structure and Alleviating of Salinity Stress in Corn Yield (Zeamays L.)
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Interactions between Mycorrhizal Fungi Tea Wastes and Algal Biomass Affecting the Microbial Community Soil Structure and Alleviating of Salinity Stress in Corn Yield (Zeamays L.)

机译:菌根真菌茶渣和藻类生物量之间的相互作用影响玉米产量(Zea)的微生物群落土壤结构和盐分胁迫的缓解梅斯L.)

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摘要

Soil salinity has an adverse impact on soil biological properties and growth of corn plant, majorly in arid and semi-arid lands. A mesocosm experiment was conducted to investigate the effect of mycorrhizal fungi (M) (Glomus mosseae), tea wastes (T), algal dried biomass (A), and their combinations on soil respiration, total bacteria, total fungi, soil mean weight diameter (MWD), and corn yield (Zea mays L.). under saline and non-saline soils. Results showed that M, T, and A treatments increased significantly CO2 release compared to the control. Whereas, M significantly decreased CO2 release compared to T and A treatments. In non-saline soil, M increased greatly MWD, bacterial and fungal counts, and infection rate. Whereas, the opposite was true in the saline soil; neither M nor T improved bacterial communities and MWD. However, in the saline soil, M + T was highly efficient in improving MWD, SOC, bacterial and fungal counts, infection rate, and corn grain yield. It can be suggested that the inoculation of mycorrhizal fungi with tea wastes in saline soils considered an important strategy that increases the toleration of the corn plant to salinity by improving soil microbial activity, MWD, SOC, infection rate, and total grain yield.
机译:土壤盐分主要对干旱和半干旱地区的土壤生物学特性和玉米植物的生长有不利影响。进行了介观试验,以研究菌根真菌(M)(苔藓),茶渣(T),藻类干生物量(A)及其组合对土壤呼吸,总细菌,总真菌,土壤平均体重直径的影响(MWD)和玉米产量(Zea mays L.)。在盐碱和非盐渍土壤下。结果表明,与对照相比,M,T和A处理显着增加了CO2释放。而与T和A处理相比,M显着降低了CO2释放。在非盐渍土壤中,M大大增加了MWD,细菌和真菌数量以及感染率。相反,在盐渍土中情况恰恰相反。 M和T均不能改善细菌群落和MWD。但是,在盐碱土壤中,M + T在改善MWD,SOC,细菌和真菌数量,感染率和玉米籽粒产量方面非常有效。可以认为,在盐渍土壤中用茶渣接种菌根真菌被认为是重要的策略,可通过改善土壤微生物活性,MWD,SOC,感染率和总谷物产量来提高玉米对盐分的耐受性。

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