T

Alexander Tong, Jessie Huang, Guy Wolf, D. V. Dijk, Smita Krishnaswamy
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引用次数: 0

Abstract

Plant growth-promoting rhizobacteria (PGPR) effects on plant yield are highly variable under field conditions due to competition with soil microbiota. Previous research determined that many Bacillus velezensis PGPR strains can use pectin as a sole carbon source and that seed inoculation with PGPR plus pectin-rich orange peel (OP) can enhance PGPR-mediated increases in plant growth. Because the previous studies used a single soybean cultivar, the objective of this research was to test the effect of PGPR plus OP inoculation on plant responses in a wide range of soybean cultivars. Preliminary screening with 20 soybean cultivars in the greenhouse showed that the PGPR plus OP produced a positive increase in all plant growth parameters when all cultivar data was averaged. However, when the inoculation response was examined cultivar by cultivar there was a range of cultivar response from a 60% increase in growth parameters to a 12% decrease, pointing to the presence of a cultivar-PGPR specificity. Further greenhouse and field experiments that studied cultivars with contrast responses to synbiotic inoculation revealed that the environment and/or the molecular interactions between the plant and microorganisms may play an important role in plant
T
由于与土壤微生物群的竞争,促进植物生长的根瘤菌(PGPR)对植物产量的影响在田间条件下变化很大。先前的研究表明,许多velezensis芽孢杆菌PGPR菌株可以以果胶作为唯一的碳源,并且用PGPR和富含果胶的橘皮(OP)接种种子可以增强PGPR介导的植物生长的增加。由于以往的研究使用的是单一的大豆品种,因此本研究的目的是在广泛的大豆品种中测试PGPR + OP接种对植物反应的影响。在温室对20个大豆品种进行初步筛选,结果表明,当对所有品种数据进行平均时,PGPR + OP对植株的所有生长参数均有正的提高。然而,当对不同品种进行接种反应检测时,生长参数增加60%到减少12%不等,这表明存在一种不同品种的pgpr特异性。进一步的温室和田间试验研究了不同品种对共生接种反应的差异,表明环境和/或植物与微生物之间的分子相互作用可能在植物中起重要作用
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