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Loading and Light Degradation Characteristics of Bt Toxin on Nanogoethite: A Potential Material for Controlling the Environmental Risk of Bt Toxin

机译:纳米藻硝酸盐蛋白的装载和光降解特性:一种控制BT毒素环境风险的潜在材料

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摘要

Transgenic Bt-modified crops release toxins into soil through root exudates and upon decomposition of residues. The fate of these toxins in soil has not been yet clearly elucidated. Nanogoethite was found to have a different influence on the lifetime and insecticidal activity of Bt toxin. The aim of this study was to elucidate the adsorption characteristics of Bt toxin on nanogoethite and its activity changes before and after adsorption. The adsorption of toxin on nanogoethite reached equilibrium within 5 h, and the adsorption isotherm of Bt toxin on nanogoethite conformed to the Langmuir equation (R2>0.9690). In the range of pH from 6.0 to 8.0, larger adsorption occurred at lower pH value. The toxin adsorption decreased with the temperature between 10 and 50°C. The results of FTIR, XRD, and SEM indicated that toxin did not influence the structure of nanogoethite and the adsorption of toxin only on the surface of nanogoethite. The LC50 value for bound toxin was higher than that of free toxin, and the nanogoethite greatly accelerated the degradation of toxin by ultraviolet irradiation. The above results suggested that nanogoethite is a potential material for controlling the environmental risk of toxin released by Bt transgenic plants.
机译:转基因BT改性的作物通过根除渗透物并在残留物分解时将毒素释放到土壤中。这些毒素在土壤中的命运尚未明确阐明。发现纳米藻硝酸盐对Bt毒素的寿命和杀虫活性产生了不同的影响。本研究的目的是阐明纳米乙酸Bt毒素的吸附特性及其在吸附前后的活性变化。在纳米乙钛矿内达到毒素的吸附在5小时内达到平衡,并且Bt毒素对纳米乙酸吲哚的吸附等温符合Langmuir方程(R2> 0.9690)。在pH的pH从6.0至8.0的范围内,在较低的pH值下发生较大的吸附。毒素吸附随温度10至50℃的温度降低。 FTIR,XRD和SEM的结果表明,毒素没有影响纳米乙酸盐的结构和仅在纳米乙型淀粉表面上吸附毒素。结合毒素的LC50值高于游离毒素的LC50值,纳米藻脂省大大加速了紫外线辐射的毒素的降解。上述结果表明,纳米乙钛矿是用于控制BT转基因植物释放的毒素环境风险的潜在材料。

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