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首页> 外文期刊>Archives of Agronomy and Soil Science >Effect of Capsicum annuum cultivated in sub-alkaline soil on bacterial community and activities of cultivable plant growth promoting bacteria under field conditions
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Effect of Capsicum annuum cultivated in sub-alkaline soil on bacterial community and activities of cultivable plant growth promoting bacteria under field conditions

机译:亚碱土中辣椒植物植物对细菌群落的影响及培养植物生长促进细菌的影响

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In literature, it remains little explored the soil-plant relationships within Capsicum agroecosystem. We studied how chili peppers plants contribute to influence microbial diversity. Across the bulk and rhizosphere soils of three genotypes of Capsicum annuum, the structure, the diversity and the abundance of bacteria was evaluated by means of DNA-based culture-independent approach. Furthermore, 515 bacterial strains isolated from the bulk and rhizosphere soil, were used to investigate the effect of C. annuum on four plant growth promoting bacteria (PGPB) abilities. Our results indicated that the three genotypes influence differently the physical-chemical and microbial properties of soil around the roots. Bacterial abundance resulted in increasing with different trend rhizospheres to bulk soil ratio; however, bacterial diversity was significantly higher only in the rhizosphere of one genotype. Only the indolic compounds production was stimulated in the rhizosphere of the three cultivars. Inhibition of Fusarium oxysporum was stimulated just with one genotype, where 53 of rhizosphere isolates showed more than 10% of inhibition. 165 of isolates produced siderophores and the major part belonged to the high production level. Interactions between PGPB features revealed that anti-phytopathogenic activity was not associated with the others characteristics; however, phosphate solubilization was associated with both siderophores and indolic compounds productions.
机译:在文学中,它仍然很少探索辣椒藻生物系统内的土壤植物关系。我们研究了辣椒植物如何有助于影响微生物多样性。通过DNA的培养无关方法评估了三种基因分型的肿块和根际土壤,结构,多样性和细菌的丰度。此外,515个从散装和根际土壤中分离的细菌菌株,用于研究C. anuum对四种植物生长促进细菌(PGPB)能力的影响。我们的结果表明,三种基因型会影响不同根系土壤的物理化学和微生物特性。细菌丰度导致不同趋势根茎增加到散装土壤比例;然而,只有一种基因型的根际,细菌多样性显着高。只有三种品种的根际刺激了吲哚化合物的产生。抑制镰刀酸镰刀酸的抑制作用刺激了一种基因型,其中53个根际分离物显示出超过10%的抑制。 165个分离物产生的绵延和主要部分属于高生产水平。 PGPB特征之间的相互作用表明,抗植物疗法活性与其他特征无关;然而,磷酸盐溶解与施用过的施胶团和吲哚化合物制造有关。

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