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转Bt 和非转Bt 棉地膜对不同冬作物杂草动态、土壤特性和生产力的影响。

The influence of transgenic (Bt) and non-transgenic (non-Bt) cotton mulches on weed dynamics, soil properties and productivity of different winter crops.

机构信息

Department of Agronomy, Bahauddin Zakariya University, Multan, Pakistan.

Physiology/Chemistry Section, Central Cotton Research Institute, Multan, Pakistan.

出版信息

PLoS One. 2020 Sep 4;15(9):e0238716. doi: 10.1371/journal.pone.0238716. eCollection 2020.

Abstract

The introduction of transgenic cotton (Bt-cotton) for controlling bollworms has resulted in increased production; however, the residual effects of mulches from Bt-cotton are poorly understood. Therefore, the current study evaluated the impact of Bt and non-Bt cotton mulches on soil properties, weed dynamics and yield of winter crops sown after cotton. Three different winter crops, i.e., wheat (Triticum aestivum L.), canola (Brassica napus L.) and Egyptian clover (Trifolium alexandrinum L.) and two mulch types, i.e., Bt mulch (obtained from Bt-cotton cultivars, i.e., 'CIM-616' and 'GH-Mubarik') and non-Bt mulch (obtained from non-Bt cultivars, i.e., 'CIM-620' and 'N-414') were included in the study. The mulches were applied at a rate of 2 t ha-1 before planting the winter crops. The Bt and non-Bt mulches differentially affected soil properties, weed dynamics and productivity of winter crops. The non-Bt mulches decreased the soil bulk density and penetration resistance, while increased the soil porosity. Wheat crop increased the soil porosity, pH, available N and soil organic matter content. Overall, non-Bt mulches improved the productivity of winter crops compared with Bt mulches. The toxins released by Bt mulches lowered the weed density; however, it negatively influenced soil properties (bulk density and available nitrogen) and productivity of winter crops. Therefore, appropriate crop rotation measures may be opted for the soils cultivated with Bt-cotton to conserve soil and achieve yield sustainability for the crops sown after cotton. Nonetheless, non-Bt mulches can be used for improving soil properties and productivity of winter crops.

摘要

转Bt 棉花(Bt-cotton)的引入控制了棉铃虫,从而提高了产量;然而,Bt 棉花残膜的残留效应还不太清楚。因此,本研究评估了 Bt 和非 Bt 棉花残膜对土壤性质、杂草动态和棉花后茬冬作物产量的影响。本研究包括三种不同的冬作物,即小麦(Triticum aestivum L.)、油菜(Brassica napus L.)和埃及三叶草(Trifolium alexandrinum L.),以及两种覆盖物类型,即 Bt 覆盖物(来自 Bt 棉花品种,即“CIM-616”和“GH-Mubarik”)和非 Bt 覆盖物(来自非 Bt 品种,即“CIM-620”和“N-414”)。在种植冬作物前,将覆盖物以 2 t ha-1 的速率施用于土壤。Bt 和非 Bt 覆盖物对土壤性质、杂草动态和冬作物生产力有不同的影响。非 Bt 覆盖物降低了土壤容重和穿透阻力,同时增加了土壤孔隙度。小麦作物增加了土壤孔隙度、pH 值、有效氮和土壤有机质含量。总的来说,与 Bt 覆盖物相比,非 Bt 覆盖物提高了冬作物的生产力。Bt 覆盖物释放的毒素降低了杂草密度;然而,它对土壤性质(容重和有效氮)和冬作物的生产力产生了负面影响。因此,对于种植 Bt 棉花的土壤,可以采取适当的轮作措施来保护土壤,实现棉花后茬作物的可持续产量。不过,非 Bt 覆盖物可用于改善土壤性质和提高冬作物的生产力。

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