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首页> 外文期刊>Symbiosis >Combined pre-seed treatment with microbial inoculants and Mo nanoparticles changes composition of root exudates and rhizosphere microbiome structure of chickpea (Cicer arietinum L.) plants
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Combined pre-seed treatment with microbial inoculants and Mo nanoparticles changes composition of root exudates and rhizosphere microbiome structure of chickpea (Cicer arietinum L.) plants

机译:与微生物映制和MO纳米粒子的组合预种子处理改变了鹰嘴豆(Cicer Arietinum L.)植物的根渗出物和根际微生物组结构的组成

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Chickpea (Cicer arietinum L.), a valuable legume crop, is an essential component of diet in many Asian, African, European and American countries. A major role in increasing its adaptive potential, quality and quantity of the yield is played by symbiotic and associative bacteria. The main aim of this research was to study the effect of combined pre-seed treatment with microbial inoculants and Mo nanoparticles on the composition of root exudates and the taxonomic diversity of microorganisms in the chickpea plants rhizosphere. We studied seed germination, the activity of enzymes involved in antioxidant protection system and the formation of plant-microbial system under the influence of nodule and rhizosphere bacteria and molybdenum (Mo) nanoparticles introduced into seeds before sowing. Rhizosphere microbiome was studied with the help of pyrosequencing method. Maximum numbers of introduced bacteria were observed in variants with Mo nanoparticles. The symbiotic effectiveness of Mesorhizobium ciceri strain ST282 was further improved by co-inoculation with "helper bacteria" Bacillus subtilis and Mo nanoparticles. Effective symbiosis was shown to be an important factor determining the formation of the rhizosphere microbiome by the representatives of the order Rhizobiales and influencing the numbers and the composition of the rhizosphere microbial community. A self-sufficient legume-rhizobium symbiosis improved the physiological status of the plant, increasing structural diversity of the microbial community of the rhizosphere through changes in the activity of root exudates, and paved the way for the development of the most effective associative bacteria.
机译:鹰嘴豆(Cicer Arietinum L.)是一个有价值的豆类作物,是许多亚洲,非洲,欧美国家的饮食的重要组成部分。共生和联想的细菌扮演了增加其自适应潜力,质量和产量的适应性潜力,质量和数量的主要作用。该研究的主要目的是研究组合的预种子处理与微生物孕育剂和MO纳米颗粒的影响对根渗出物组成和鹰嘴豆植物根际微生物的分类学分类。我们研究了种子萌发,参与抗氧化剂保护系统的酶活性以及在结节和根际细菌的影响下形成植物微生物体系,并在播种前引入种子中的钼(MO)纳米粒子。在焦肌法测定方法中研究了根际微生物组。在具有Mo纳米粒子的变体中观察到最大引入的细菌数。通过用“舵细菌”枯草芽孢杆菌和Mo纳米粒子共同接种,进一步改善了胚轴CICERI菌株ST282的共生效果。有效的共生是由订单Rhizobiales的代表和影响根际微生物群落的数量和组成来确定根际微生物组的形成的重要因素。一种自给自足的豆类植物 - 根序和植物的生理状态改善了植物的生理状态,通过根除渗漏活体的变化来增加根际微生物群体的结构多样性,并为最有效的联想细菌的发展铺平了道路。

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