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Can Transgenic Maize Affect Soil Microbial Communities?

机译:转基因玉米会影响土壤微生物群落吗?

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摘要

The aim of the experiment was to determine if temporal variations of belowground activity reflect the influence of the Cry1Ab protein from transgenic maize on soil bacteria and, hence, on a regulatory change of the microbial community (ability to metabolize sources belonging to different chemical guilds) and/or a change in numerical abundance of their cells. Litter placement is known for its strong influence on the soil decomposer communities. The effects of the addition of crop residues on respiration and catabolic activities of the bacterial community were examined in microcosm experiments. Four cultivars of Zea mays L. of two different isolines (each one including the conventional crop and its Bacillus thuringiensis cultivar) and one control of bulk soil were included in the experimental design. The growth models suggest a dichotomy between soils amended with either conventional or transgenic maize residues. The Cry1Ab protein appeared to influence the composition of the microbial community. The highly enhanced soil respiration observed during the first 72 h after the addition of Bt-maize residues can be interpreted as being related to the presence of the transgenic crop residues. This result was confirmed by agar plate counting, as the averages of the colony-forming units of soils in conventional treatments were about one-third of those treated with transgenic straw. Furthermore, the addition of Bt-maize appeared to induce increased microbial consumption of carbohydrates in BIOLOG EcoPlates. Three weeks after the addition of maize residues to the soils, no differences between the consumption rate of specific chemical guilds by bacteria in soils amended with transgenic maize and bacteria in soils amended with conventional maize were detectable. Reaped crop residues, comparable to post-harvest maize straw (a common practice in current agriculture), rapidly influence the soil bacterial cells at a functional level. Overall, these data support the existence of short Bt-induced ecological shifts in the microbial communities of croplands' soils.
机译:该实验的目的是确定地下活性的时间变化是否反映了转基因玉米中Cry1Ab蛋白对土壤细菌的影响,并因此反映了微生物群落的调控变化(能够代谢属于不同化学行会的来源)和/或其细胞的数量丰度变化。凋落物放置以其对土壤分解者群落的强大影响而闻名。在微观实验中检查了添加农作物残留物对细菌群落的呼吸和分解代谢活性的影响。实验设计中包括了两个不同等值线的玉米(Zea mays L.)的四个品种(每个都包括常规作物及其苏云金芽孢杆菌(Bacillus thuringiensis)品种)和一个对照。生长模型表明用传统或转基因玉米残留物改良过的土壤之间存在二分法。 Cry1Ab蛋白似乎会影响微生物群落的组成。在添加Bt-玉米残留后的最初72小时内观察到的土壤呼吸高度增强,可以解释为与转基因农作物残留的存在有关。琼脂平板计数证实了这一结果,因为常规处理中土壤菌落形成单位的平均值约为转基因秸秆处理过的土壤菌落形成单位的三分之一。此外,在BIOLOG EcoPlates中添加Bt玉米似乎会引起微生物对碳水化合物的消耗增加。在向土壤中添加玉米残留物三周后,在转基因玉米改良的土壤中细菌对特定化学行会的消费率与传统玉米改良的土壤中细菌的消费率之间没有发现差异。与收割后的玉米秸秆(当前农业中的普遍做法)相当的收割作物残渣在功能水平上会迅速影响土壤细菌细胞。总体而言,这些数据支持耕地土壤微生物群落中短Bt诱导的生态转变的存在。

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