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首页> 外文期刊>Archives of Agronomy and Soil Science >Evidence for enhanced N availability during switchgrass establishment and seeding year production following inoculation with rhizosphere endophytes.
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Evidence for enhanced N availability during switchgrass establishment and seeding year production following inoculation with rhizosphere endophytes.

机译:接种根际内生菌后,柳枝establishment建立和种子年生产过程中氮利用率提高的证据。

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摘要

Improvement in sustainable production of switchgrass (SG, Panicum virgatum L), as a purpose-grown biomass feedstock crop, could be realized through investigation of plant-microbe interactions associated with plant growth promoting rhizobacteria (PGPR), capable of biological nitrogen fixation (BNF). The objective of this study is to increase establishment year production of SG biofuels by inoculation with a mixed PGPR inoculum. We isolated pure strains of N2-fixing, and other PGPR, from SG rhizomes. The bacteria were identified as Paenibacillus polymyxa, an N2-fixing bacterium, and other PGPR capable of solubilizing phosphate and/or producing auxins. Field trials utilizing these strains in a mixed PGPR inoculum showed that inoculated plants contained more N in tillers during anthesis but not at senescence, suggesting that more N could be cycled to belowground roots and rhizomes for winter storage. The amount of N removal in biomass and recovery of fertilizer N were also greater for inoculated than uninoculated plants. PGPR inoculation also resulted in positive N balances, suggesting improved access to N from non-fertilizer N sources, possibly through BNF and improved soil N uptake. Overall, inoculation of SG with PGPR enhanced N acquisition and could be an effective strategy to increase the establishment year production of this crop.
机译:通过研究与能够促进生物固氮(BNF)的植物促生根瘤菌(PGPR)相关的植物-微生物相互作用,可以实现作为目的生长的生物质原料作物的柳枝sustainable(SG,Panicum virgatum L)的可持续生产的改善。 )。这项研究的目的是通过接种PGPR混合接种物来增加SG生物燃料的建立年产量。我们从SG根茎中分离了N 2 -fixing和其他PGPR的纯菌株。该细菌被鉴定为多粘芽孢杆菌,一种N 2 固定细菌,以及其他能够溶解磷酸盐和/或产生生长素的PGPR。在混合PGPR接种物中利用这些菌株进行的田间试验表明,接种的植物在花期中分till中含有更多的氮,而在衰老时则没有,这表明可以将更多的氮循环到地下根和根茎中进行冬季贮藏。与未接种植物相比,接种后生物量中氮的去除量和肥料氮的回收率也更高。 PGPR接种还导致正氮平衡,表明可能通过BNF改善了非肥料氮源对氮的获取,并提高了土壤对氮的吸收。总体而言,用PGPR接种SG可以增加氮素的吸收,并且可能是增加该作物定植年产量的有效策略。

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