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首页> 外文期刊>Soil Biology & Biochemistry >Changes in available nitrogen and nematode abundance in response to Brassica seed meal amendment of orchard soil.
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Changes in available nitrogen and nematode abundance in response to Brassica seed meal amendment of orchard soil.

机译:果园土壤中芸苔种子粉改良对有效氮和线虫丰度的响应。

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摘要

A better understanding of the effects of Brassicaceae seed meals on resident soil microbial communities is necessary to predict the efficacy of these plant residues as either a biofumigant or organic fertilizer. This study analyzed the influence of high (Brassica juncea) and low (Brassica napus) glucosinolate content seed meals in addition to myrosinase-inactive derivatives on soil microbial community function with respect to nitrogen (N) cycling. All of the seed meal amendments stimulated nitric oxide (NO) generation in an orchard soil. N-mineralization occurred in response to B. juncea seed meal application but the amount of mineralization was reduced by the presence of active myrosinase and corresponding generation of allyl isothiocyanate. Microbial communities responded differentially to seed meal amendments: nematode abundance was enhanced by seed meals with either low glucosinolate or no myrosinase activity whereas fungal and bacterial abundance in soil did not exhibit significant changes in response to any seed meal amendment. In addition to changes in overall abundance, nematode diversity was also modified in response to seed meal amendment and differed among the amendments that enhanced nematode abundance. Collectively, these results indicate that microbial communities and overall soil function respond differentially to both seed meal type/glucosinolate content and isothiocyanate generation. These findings have significance for the efficient use of Brassicaceae residues as a source of plant available nitrogen.
机译:为了预测这些植物残渣作为生物熏蒸剂或有机肥料的功效,有必要更好地了解十字花科种子粉对居民土壤微生物群落的影响。这项研究分析了高芥蓝芥子油菜籽含量和低芥蓝芥子油菜籽粉含量,以及对黑素酶无活性的衍生物对土壤微生物群落功能的影响。所有的种子粉改良剂都能刺激果园土壤中一氧化氮(NO)的产生。 N-矿化作用是响应于芥菜芽孢杆菌种子粉的施用而发生的,但是由于存在活性黑芥子酶和相应的异硫氰酸烯丙酯的产生,矿化的量减少了。微生物群落对种粕改良剂的反应不同:线虫含量高的芥子油苷含量低或没有黑芥子酶活性,而土壤中的真菌和细菌的丰度并未因种粕改良剂的变化而显着变化。除了改变整体线虫的丰度外,线虫的多样性也因种子粉的改良而有所改变,并且在增强线虫丰富度的修正中有所不同。总的来说,这些结果表明,微生物群落和土壤的整体功能对种粉类型/芥子油苷含量和异硫氰酸盐的生成有不同的反应。这些发现对于将十字花科植物残留物有效地用作植物可用氮源具有重要意义。

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