首页> 美国卫生研究院文献>Indian Journal of Microbiology >Development of Mesorhizobium ciceri-Based Biofilms and Analyses of Their Antifungal and Plant Growth Promoting Activity in Chickpea Challenged by Fusarium Wilt
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Development of Mesorhizobium ciceri-Based Biofilms and Analyses of Their Antifungal and Plant Growth Promoting Activity in Chickpea Challenged by Fusarium Wilt

机译:镰刀枯萎病挑战的鹰嘴豆中生根瘤菌生物膜的开发及其抗真菌和植物生长促进活性的分析

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摘要

Biofilmed biofertilizers have emerged as a new improved inoculant technology to provide efficient nutrient and pest management and sustain soil fertility. In this investigation, development of a Trichoderma viride–Mesorhizobium ciceri biofilmed inoculant was undertaken, which we hypothesized, would possess more effective biological nitrogen fixing ability and plant growth promoting properties. As a novel attempt, we selected Mesorhizobium ciceri spp. with good antifungal attributes with the assumption that such inoculants could also serve as biocontrol agents. These biofilms exhibited significant enhancement in several plant growth promoting attributes, including 13–21 % increase in seed germination, production of ammonia, IAA and more than onefold to twofold enhancement in phosphate solubilisation, when compared to their individual partners. Enhancement of 10–11 % in antifungal activity against Fusarium oxysporum f. sp. ciceri was also recorded, over the respective M. ciceri counterparts. The effect of biofilms and the M. ciceri cultures individual on growth parameters of chickpea under pathogen challenged soil illustrated that the biofilms performed at par with the M. ciceri strains for most plant biometrical and disease related attributes. Elicitation of defense related enzymes like l-phenylalanine ammonia lyase, peroxidase and polyphenol oxidase was higher in M. ciceri/biofilm treated plants as compared to uninoculated plants under pathogen challenged soil. Further work on the signalling mechanisms among the partners and their tripartite interactions with host plant is envisaged in future studies.Electronic supplementary materialThe online version of this article (doi:10.1007/s12088-016-0610-8) contains supplementary material, which is available to authorized users.
机译:生物膜生物肥料已成为一种新的改良接种剂技术,可提供有效的养分和害虫管理并维持土壤肥力。在这项调查中,我们开发了一种绿色木霉菌-中生根瘤菌生物膜接种剂,我们认为这种接种剂将具有更有效的生物固氮能力和促进植物生长的特性。作为一种新颖的尝试,我们选择了Mesorhizobium ciceri spp。具有良好的抗真菌特性,并假设此类接种剂也可以用作生物防治剂。这些生物膜在几种促进植物生长的特性上表现出显着增强,包括与它们各自的伙伴相比,种子发芽,氨,IAA的产生增加了13-21%,磷酸盐溶解性​​提高了超过一倍至两倍。抗尖孢镰刀菌f的抗真菌活性提高10-11%。 sp。还记录了西塞利犬的西塞利氏菌。在病原菌侵染的土壤下,生物膜和蝉分枝杆菌培养物对鹰嘴豆生长参数的影响表明,对于大多数植物生物特征和疾病相关属性,生物膜的表现与猕猴桃属菌株相同。与经病原菌侵染的土壤中未接种的植物相比,经M. ciceri /生物膜处理过的植物对防御相关酶(如1-苯丙氨酸氨裂合酶,过氧化物酶和多酚氧化酶)的诱导更高。合作伙伴之间的信号传导机制及其与寄主植物的三方相互作用的进一步工作预计将在未来的研究中进行。给授权用户。

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