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Effects of Soil Salinity on the Expression of Bt Toxin (Cry1Ac) and the Control Efficiency of Helicoverpa armigera in Field-Grown Transgenic Bt Cotton

机译:土壤盐分对田间种植转基因Bt棉中Bt毒素(Cry1Ac)表达和棉铃虫控制效率的影响

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摘要

An increasing area of transgenic Bacillus thuringiensis (Bt) cotton is being planted in saline-alkaline soil in China. The Bt protein level in transgenic cotton plants and its control efficiency can be affected by abiotic stress, including high temperature, water deficiency and other factors. However, how soil salinity affects the expression of Bt protein, thus influencing the control efficiency of Bt cotton against the cotton bollworm (CBW) Helicoverpa armigera (Hübner) in the field, is poorly understood. Our objective in the present study was to investigate the effects of soil salinity on the expression of Bt toxin (Cry1Ac) and the control efficiency of Helicoverpa armigera in field-grown transgenic Bt cotton using three natural saline levels (1.15 dS m-1 [low soil-salinity], 6.00 dS m-1 [medium soil-salinity] and 11.46 dS m-1 [high soil-salinity]). We found that the Bt protein content in the transgenic Bt cotton leaves and the insecticidal activity of Bt cotton against CBW decreased with the increasing soil salinity in laboratory experiments during the growing season. The Bt protein content of Bt cotton leaves in the laboratory were negatively correlated with the salinity level. The CBW populations were highest on the Bt cotton grown in medium-salinity soil instead of the high-salinity soil in field conditions. A possible mechanism may be that the relatively high-salinity soil changed the plant nutritional quality or other plant defensive traits. The results from this study may help to identify more appropriate practices to control CBW in Bt cotton fields with different soil salinity levels.
机译:在中国盐碱土壤上种植的转基因苏云金芽胞杆菌(Bt)棉越来越多。非生物胁迫,包括高温,缺水和其他因素,会影响转基因棉株中Bt蛋白的水平及其控制效率。然而,在土壤中盐分如何影响Bt蛋白的表达,从而影响Bt棉花对棉铃虫(CBW)棉铃虫(Hübner)的控制效率知之甚少。我们在本研究中的目的是使用三种天然盐水平(1.15 dS m ->,研究土壤盐分对田间种植的转基因Bt棉花中Bt毒素(Cry1Ac)表达和棉铃虫控制效率的影响。 1 [低土壤盐分],6.00 dS m -1 [中等土壤盐分]和11.46 dS m -1 [高土壤盐分]) 。我们发现转基因Bt棉叶中的Bt蛋白含量和Bt棉对CBW的杀虫活性随生长期的实验室盐分增加而降低。实验室中Bt棉花叶片的Bt蛋白含量与盐度水平呈负相关。在田间条件下,在中盐度土壤而不是高盐度土壤中种植的Bt棉花的CBW种群最高。可能的机制可能是较高盐度的土壤改变了植物的营养品质或其他植物的防御性状。这项研究的结果可能有助于确定控制土壤盐分不同的Bt棉田中CBW的更合适方法。

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