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Application of Endophytic Pseudomonas fluorescens and a Bacterial Consortium to Brassica napus Can Increase Plant Height and Biomass under Greenhouse and Field Conditions

机译:在温室和田间条件下将内生荧光假单胞菌和细菌财团应用于甘蓝型油菜可以增加株高和生物量

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摘要

Plant associated bacteria with plant growth promotion (PGP) properties have been proposed for use as environmentally friendly biofertilizers for sustainable agriculture; however, analysis of their efficacy in the field is often limited. In this study, greenhouse and field trials were carried out using individual endophytic Pseudomonas fluorescens strains, the well characterized rhizospheric P. fluorescens F113 and an endophytic microbial consortium of 10 different strains. These bacteria had been previously characterized with respect to their PGP properties in vitro and had been shown to harbor a range of traits associated with PGP including siderophore production, 1-aminocyclopropane-1-carboxylic acid (ACC) deaminase activity, and inorganic phosphate solubilization. In greenhouse experiments individual strains tagged with gfp and Kmr were applied to Brassica napus as a seed coat and were shown to effectively colonize the rhizosphere and root of B. napus and in addition they demonstrated a significant increase in plant biomass compared with the non-inoculated control. In the field experiment, the bacteria (individual and consortium) were spray inoculated to winter oilseed rape B. napus var. Compass which was grown under standard North Western European agronomic conditions. Analysis of the data provides evidence that the application of the live bacterial biofertilizers can enhance aspects of crop development in B. napus at field scale. The field data demonstrated statistically significant increases in crop height, stem/leaf, and pod biomass, particularly, in the case of the consortium inoculated treatment. However, although seed and oil yield were increased in the field in response to inoculation, these data were not statistically significant under the experimental conditions tested. Future field trials will investigate the effectiveness of the inoculants under different agronomic conditions.
机译:具有植物生长促进(PGP)特性的植物相关细菌已被提议用作可持续农业的环保生物肥料。但是,对其效果的分析通常是有限的。在这项研究中,温室和田间试验是使用单个内生荧光假单胞菌菌株,特征明确的根际荧光假单胞菌F113和10种不同菌株的内生微生物联盟进行的。这些细菌先前已在体外对其PGP特性进行了表征,并已显示出与PGP相关的一系列特征,包括铁载体生成,1-氨基环丙烷-1-羧酸(ACC)脱氨酶活性和无机磷酸盐增溶。在温室实验中,将标记有gfp和Km r 的单个菌株作为种皮施用到甘蓝型油菜上,表明它们能有效地定居于甘蓝型油菜的根际和根部,此外,它们还证明了其显着增加。与未接种对照相比的植物生物量。在田间试验中,将细菌(个体和财团)喷雾接种到冬季油菜油菜B. napus var。在标准北欧农业条件下种植的罗盘。对数据的分析提供了证据,证明活细菌生物肥料的应用可以在田间规模上提高甘蓝型油菜的作物生长状况。田间数据表明,在作物高度,茎/叶和荚果生物量方面统计上显着增加,特别是在接受联合体处理的情况下。然而,尽管响应接种,田间种子和油的产量增加了,但是在测试的实验条件下,这些数据在统计学上并不显着。未来的田间试验将研究接种物在不同农艺条件下的有效性。

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