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首页> 外文期刊>Sociedade Brasileira da Ciencia das Plantas Daninhas >Does the Introgression of Bt Gene Affect Physiological Cotton Response to Water Deficit?
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Does the Introgression of Bt Gene Affect Physiological Cotton Response to Water Deficit?

机译:BT基因的均产生对水资源赤字的生理棉花反应吗?

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Water deficit may affect the expression of lepidoptera-controlling proteins in cotton. However, it is unknown if there is a differential response of conventional and Bt cotton cultivars to water deficit, what could potentially affect the plant competition with weeds. The objective of this work was to investigate the response of Bt cotton cultivars to water deficit compared with their conventional near-isolines. The experiment was conducted in a greenhouse, where the cotton cultivars FMT 705, FMT 709 and IMACD 8276, with and without the Bt gene, were grown under two water regimens: 100% and 50% (moderate water deficit) of available soil water. Cotton phenology was severely affected by moderate water deficit, with a reduction in shoot and root dry matter production, root length and diameter, plant height and leaf area. No effect of the Bt gene was observed. Water deficit during cotton flowering decrease stomatal conductance, net assimilation of CO2 and transpiration rates. The leaf water potential is lower in plants exposed to a moderate water deficit compared with non-stressed plants. However, the introgression of the Bt gene does not modify cotton physiological and phenotypic response to water deficit.
机译:水缺陷可能影响棉花中鳞翅目控制蛋白的表达。然而,如果常规和BT棉花品种对水赤字的差异反应,则尚不清楚,可能会使植物竞争与杂草影响。这项工作的目的是探讨BT棉品种与常规接近Isol ine的常规紫外线的缺陷的反应。实验是在温室中进行的,其中棉花品种FMT 705,FMT 709和IMACD 8276,有和没有BT基因的8276,在两种水方案下生长:100%和50%(中等水赤字)的可用土壤水。棉酚素受到中等水缺损的严重影响,枝芽和根部干物质生产,根部长度和直径,植物高度和叶面积。观察到BT基因的影响。棉花开花期间的水缺损降低了气孔导电,净同化二氧化碳和蒸腾率。与非应激植物相比,暴露于中等水缺损的植物中的植物潜水较低。然而,BT基因的迟钝不会改变棉花生理和表型对水资源缺陷的反应。

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