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首页> 外文期刊>Pedobiologia >Specific respiration rates, adenylates, and energy budgets of soil microorganisms after addition of transgenic Bt-maize straw
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Specific respiration rates, adenylates, and energy budgets of soil microorganisms after addition of transgenic Bt-maize straw

机译:添加转基因Bt玉米秸秆后土壤微生物的特定呼吸速率,腺苷酸和能量收支

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摘要

An arable soil was incubated with straw (stem+leaves) of two transgenic Bt-maize varieties (Novelis: event MON810 and Valmont: event Bt176) and the two corresponding near-isogenic varieties (Nobilis and Prelude). The aim was to evaluate the use of these substrates for microbial growth and maintenance in soil during early decomposition. The addition of Bt-maize straw increased CO_2 production rates and the specific respiration rates CO_2-C/microbial biomass C and CO_2-C/ATP significantly compared with the addition of non-Bt maize straw. This extra energy in the Bt-maize straw could not be used for microbial biomass or ATP and ADP production, and was lost for maintenance. In addition, increased death rates of microbial biomass occurred in the soils treated with the Bt-maize straw from day 3 to 21. Generally, most of the energy was stored in microbial biomass, whereas only 10% of energy was stored in ATP, and only 1-2% in ADP. The AEC (adenylate energy charge: (ATP+0.5×ADP)/(AMP+ADP+ATP)) was not affected by any treatment. The reasons for the lower efficiency of microbial substrate use after adding Bt-maize straw cannot be fully explained by the present experiment. However, a risk assessment has to look at the impact of transgenic plant material on soil microorganisms at different maturity stages.
机译:将可耕种土壤与两种转基因Bt-玉米品种(Novelis:MON810事件和Valmont:Bt176事件)和两个相应的近等基因品种(Nobilis和Prelude)的稻草(茎+叶)一起孵育。目的是评估在早期分解过程中这些基质在土壤中微生物生长和维持中的用途。与不添加Bt玉米秸秆相比,添加Bt玉米秸秆可显着提高CO_2的生产率和特定呼吸速率CO_2-C /微生物生物量C和CO_2-C / ATP。 Bt玉米秸秆中的这种多余能量无法用于微生物生物量或ATP和ADP的生产,并失去了维护成本。此外,从第3天到21天,用Bt玉米秸秆处理过的土壤中微生物生物量的死亡率提高了。通常,大部分能量都存储在微生物生物量中,而只有10%的能量存储在ATP中,并且在ADP中只有1-2%。 AEC(腺苷酸能电荷:(ATP + 0.5×ADP)/(AMP + ADP + ATP))不受任何处理的影响。本实验无法完全解释添加Bt-玉米秸秆后微生物底物使用效率较低的原因。但是,风险评估必须考虑转基因植物材料在不同成熟阶段对土壤微生物的影响。

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