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首页> 外文期刊>Agriculture, Ecosystems & Environment: An International Journal for Scientific Research on the Relationship of Agriculture and Food Production to the Biosphere >Variation in total biological productivity and soil microbial biomass in rainfed agroecosystems: Impact of application of herbicide and soil amendments
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Variation in total biological productivity and soil microbial biomass in rainfed agroecosystems: Impact of application of herbicide and soil amendments

机译:雨养农业生态系统中总生物生产力和土壤微生物生物量的变化:除草剂和土壤改良剂的应用影响

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摘要

Total biological productivity and soil microbial biomass are important characteristics to describe sustainable agroecosystems. We investigated the impact of herbicide, alone or in combination with soil amendments, on crop and weed productivity and microbial biomass in a rice (Oryza sativa)-barley (Hordeum vulgare)-summer fallow rotation in a tropical rainfed agroecosystem. Total net productivity (TNP) of crops was greater with herbicide (Butachlor)+chemical fertilizer (NPK), herbicide+farmyard animal manure, and herbicide+green manure (Sesbania aculeata) than with herbicide+crop residue (Triticum aestivum straw), herbicide only, and the control without amendment. Weed TNP was highest in the control, lowest in herbicide only, and intermediate in combined herbicide and amendment treatments except herbicide+crop residue. The sum of crop TNP and weed TNP was highest in herbicide+green manure and lowest in herbicide only. Microbial biomass C and N were greater with herbicide and amendment treatments than with herbicide only. Microbial biomass showed distinct temporal variation. Yearly plant input to soil had strong correlation with microbial biomass in the control and herbicide only treatments. In these agroecosystems, combining organic soil amendments with herbicide application could help sustain soil fertility and maintain higher total biological productivity.
机译:总生物生产力和土壤微生物生物量是描述可持续农业生态系统的重要特征。我们调查了除草剂单独或与土壤改良剂结合使用对热带雨养农业生态系统中水稻(Oryza sativa)-大麦(Hordeum vulgare)-夏季休耕轮作的作物和杂草生产力和微生物生物量的影响。除草剂(丁草胺)+化学肥料(NPK),除草剂+农场动物粪便和除草剂+绿肥(Sesbania aculeata)的农作物总净生产率(TNP)比除草剂+农作物残余物(小麦草),除草剂大。仅此而已,而控件无需修改。对照中的杂草TNP最高,仅除草剂最低,除除草剂和农作物残渣外,除草剂和改良剂联合处理中的杂草TNP居中。作物TNP和杂草TNP之和在除草剂+绿肥中最高,而在除草剂中最低。除草剂和改良剂处理的微生物生物量碳和氮大于仅除草剂。微生物生物量显示出明显的时间变化。在对照和仅使用除草剂的处理中,每年向土壤中输入植物与微生物生物量有很强的相关性。在这些农业生态系统中,将有机土壤改良剂与除草剂组合使用可以帮助维持土壤肥力并保持更高的总生物生产力。

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