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Microbial communities and residues in robinia- and poplar-based alley-cropping systems under organic and integrated management

机译:有机综合管理下的罗宾逊和杨树和杨树的小巷种植系统的微生物社区和残留物

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Organic farming and agroforestry are considered as sustainable alternative agricultural practices for intensive agriculture. In a long-term field trial in Scheyern Germany, we evaluated the effects of 21-year organic farming and 4-year agroforestry (robinia and poplar) on microbial community and microbial residues. Microbial biomass and microbial community were determined by fumigation-extraction method and the analysis of phospholipid fatty acid (PLFA), respectively. Microbial residues were evaluated by the measurement of amino sugars. The results showed that organic farming had significantly positive effect on soil organic carbon (SOC) but that it tended to decrease microbial biomass C (MBC), PLFA functional guilds, muramic acid (MurN), and glucosamine (GlcN). Robinia system, however, significantly increased SOC and had the potential to enhance MBC, PLFA functional guilds especially Gram (+), but it tended to decrease MurN and GlcN, in comparison with poplar system. The hedgerow tree did not show significantly positive effect on SOC and microbial properties except the abundance of fungi and Gram (+) bacterial, after 4-year establishment period. The principal component analysis of the PLFA profile showed that in comparison with other investigated treatments, robinia system under organic farming had significantly a different microbial community structure. It also indicated tree species-specific effect on microbial community in the organic farming was stronger than that in the integrated farming. In summary, the short-term introduction of trees into an existing agricultural system will not substantially change the microbial biomass, but it has certain influence on the abundance of specific microbial groups in the hedgerow. Although organic farming did not show positive effect on overall microbial indices, we still see positive effect on SOC after 21-year organic farming and its additive effect with robinia on SOC in current study. We expect that alley-cropping agroforestry system that combines organic farming and robinia hedgerow has a great potential for sequestering SOC and developing sustainable agroecosystems with time.
机译:有机耕种和农业剧被视为集约化农业的可持续替代农业实践。在Scheyern德国的长期野外试验中,我们评估了21年的有机耕种和4岁的农林植物(Robinia和Poplar)对微生物群落和微生物残留物的影响。微生物生物质和微生物群落分别通过熏蒸 - 提取方法和磷脂脂肪酸(PLFA)分析。通过测量氨基糖评估微生物残留物。结果表明,有机耕种对土壤有机碳(SOC)具有显着积极影响,但它倾向于减少微生物生物量C(MBC),PLFA功能公会,蛋白酸(慕的)和葡糖胺(GLCN)。然而,Robinia系统显着增加了SoC,并且有可能增强MBC,PLFA功能公会尤其是克(+),但与杨树系统相比,它往往会减少默宁和GLCN。 Hedgerow树未对SoC和微生物特性显示出显着的积极作用,除了在4年的建立期后真菌和克(+)细菌的丰度。 PLFA型材的主要成分分析表明,与其他研究治疗相比,有机耕作的罗宾西亚体系具有显着不同的微生物群落结构。它还表明对有机农业的微生物群落的树木物种效果比综合养殖更强大。总之,将树木的短期引入到现有的农业系统中不会大大改变微生物生物量,但它对HEDGEROW中的特定微生物群的丰度有关。虽然有机农业对整体微生物指数没有显示出积极影响,但我们仍然会看到21年的有机农业后对SOC的积极影响及其在目前研究中的SOC上的罗宾尼亚罗宾西亚。我们预计将有机农业和罗宾尼亚Hedgerow结合的巷子汤农业系统系统具有卓越的抵消SoC和随着时间的推移开发可持续农业系统的潜力。

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