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首页> 外文期刊>Archives of Agronomy and Soil Science >Gaseous carbon emission in relation to soil carbon fractions and microbial diversities as affected by organic amendments in tropical rice soil.
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Gaseous carbon emission in relation to soil carbon fractions and microbial diversities as affected by organic amendments in tropical rice soil.

机译:受热带水稻土中有机改良剂影响的与土壤碳组分和微生物多样性相关的气态碳排放。

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摘要

The interactive effects of moisture and organic amendments (farmyard manure (FYM), crop residue (CR) and green manure (GM)) (Sesbania aculeata) on gaseous carbon (C) emission, soil labile C fractions, enzymatic activities and microbial diversity in tropical, flooded rice soil were investigated. The amendments were applied on equal C basis in two moisture regimes, that is, aerobic and submergence conditions. The CO2 production was significantly higher by 22% in aerobic than in submergence condition; on the contrary, the CH4 production was 27% higher under submergence condition. The labile C fractions were significantly higher in GM by 26% under aerobic and 30% under submergence conditions, respectively, than control (without any kind of fertilizer or amendments). Eubacterial diversity identified by PCR-DGGE method (polymerase chain reaction coupled with denaturant gradient gel electrophoresis) was higher under GM followed by FYM, CR, and control and it is pronounced in submerged condition. GM favored the labile C accumulation and biological activities under both submergence and aerobic conditions, which makes it most active for soil-plant interactions compared to other organic amendments. Considering environmental sustainability, the use of GM is the better adoptable option, which could enhance labile C pools, microbial diversities in soil and keep soil biologically more active.
机译:水分和有机修正物(农家肥(FYM),农作物残渣(CR)和绿肥(GM))(Sesbania aculeata)对气态碳(C)排放,土壤中不稳定的碳组分,酶活性和微生物多样性的交互作用。对热带,淹没的水稻土进行了调查。修正是在两个湿度条件下(即有氧条件和浸没条件)在相等的C基础上应用的。有氧条件下CO 2 的产生比淹水条件下高22%。相反,在淹没条件下,CH 4 的产量提高了27%。在有氧条件下,GM中的不稳定碳含量分别比在不添加任何肥料或改良剂的情况下,在有氧条件下和在淹没条件下分别高出26%和30%。在GM,FYM,CR和对照条件下,PCR-DGGE方法(聚合酶链反应与变性梯度凝胶电泳结合)鉴定的真细菌多样性较高,在淹没条件下明显。 GM偏爱在淹水和有氧条件下不稳定的C积累和生物活性,这使其与其他有机改良剂相比对土壤与植物的相互作用最为活跃。考虑到环境的可持续性,转基因的使用是更好的选择,它可以增强不稳定的碳库,土壤中的微生物多样性并保持土壤生物活性。

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