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Crop management as a driving force of plant growth promoting rhizobacteria physiology

机译:作物管理作为植物生长的推动力促进根瘤菌生理

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摘要

Crop management systems influence plant productivity and nutrient use efficiency, as well as plant growth-promoting rhizobacteria (PGPR), which are known to influence the growth of plants via phytohormone production, phosphate solubilization, nitrogen (N) fixation and antimicrobial activity. The objective of this study was to compare the influence of two crop management system on microbial PGPR features. PGPR isolated from the rhizospheres of Carica papaya L. grown under two distinct management systems (conventional and organic) were identified and characterized. The 12 strains most efficient in solubilizing inorganic phosphate belonged to the genera Burkholderia, Klebsiella, and Leclercia. N fixation was observed in the strains B. vietnamiensis from the conventional farming system and B. vietnamiensis, B. cepacia and Leclercia sp. from the organic farming system. The B. vietnamiensis, B. cepacia, Klebsiella sp. and Klebsiella sp. isolates showed antifungal activity, while Leclercia sp. did not. The strains B. vietnamiensis and Enterobcter sp. (isolated from the conventional farming system) and Klebsiella sp. (isolated from the organic farming system) were efficient at solubilizing phosphate, producing phytohormones and siderophores, and inhibiting the mycelial growth of various phytopathogenic fungi (Botrytis cinerea, Pestalotia sp., Alternaria sp., Phoma sp., Fusarium culmorum, Geotrichum candidum). Physiological differences between the isolates from the two crop management regimes were distinguishable after 10 years of distinct management.
机译:作物管理系统影响植物的生产力和养分利用效率,以及促进植物生长的根际细菌(PGPR),众所周知,这些细菌会通过植物激素的产生,磷酸盐的溶解,氮(N)的固着和抗菌活性来影响植物的生长。这项研究的目的是比较两种作物管理系统对微生物PGPR特性的影响。从两个不同的管理系统(常规和有机)管理下生长的番木瓜根际分离的PGPR进行了鉴定和表征。最有效地溶解无机磷酸盐的12个菌株属于Burkholderia,Klebsiella和Leclercia属。在常规耕作系统的越南芽孢杆菌和越南芽孢杆菌,洋葱伯克霍尔德菌和勒克勒氏菌sp。Vietnamiensis中观察到了氮固定。来自有机耕作制度。越南越桔,洋葱越桔,克雷伯菌。和克雷伯菌属。分离株表现出抗真菌活性,而Leclercia sp。没有。越南芽孢杆菌和肠杆菌菌株。 (与常规耕作系统隔离)和克雷伯菌属。 (从有机耕作系统中分离)可有效溶解磷酸盐,生产植物激素和铁载体,并抑制各种植物病原真菌(灰霉病菌,灰霉病菌, Alternaria sp。, Phoma sp。, Fusarium culmorum Canotidum candidum 。两种作物管理方案的分离株之间的生理差异在经过10年的不同管理后就可以区分。

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