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首页> 外文期刊>Journal of Plant Nutrition >Differential responses of conventional and Bt-transgenic cotton to potassium deficiency.
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Differential responses of conventional and Bt-transgenic cotton to potassium deficiency.

机译:常规和Bt转基因棉花对钾缺乏的差异反应。

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摘要

Bacillus thuringiensis (Bt) transgenic (insect-resistant) cotton cultivars senesce prematurely under potassium (K+) deficiency, more often than conventional cultivars, in the North China Plain. To verify if Bt-transgenic cotton was more susceptible to K+ deficit, two transgenic cultivars, 'CCRI 41' and 'DP 99B', and two conventional cultivars, 'CCRI 35' and 'CCRI 36', selected from widely used cultivars in China, were used in a seedling hydroponic study. The culture solution K+ concentration was 0.5 mM for high K+ and 0.02 mM for low K+ conditions. Seedlings of all four cultivars accumulated more dry matter and K+ when grown at high K+ than low K+ conditions. However, under low K+ condition, the dry weight and K+ content of Bt-transgenic cultivars CCRI 41 and DP 99B were lower than those of the conventional cultivars CCRI 36 and CCRI 35. The results indicated that Bt-transgenic cultivars CCRI 41 and DP 99B were more sensitive to K+ deficiency than conventional cultivars CCRI 36 and CCRI 35, which could be the reason for premature senescence symptoms observed from fields of Bt-transgenic cotton under K+ deficiency. Seedlings of all four cultivars had a higher K+ use efficiency (KUE) under low K+ than high K+ conditions, but the KUE did not account for the differential responses between Bt-transgenic and conventional cultivars at the low K+ concentration. The K+ depletion results did not reveal the mechanism for the above differential responses in Vmax and Km of the seedlings either. Further experiments with more cultivars are needed to clarify the differential mechanisms in these genotypes..
机译:在华北平原,苏云金芽胞杆菌(Bt)转基因(抗虫)棉花品种在缺钾(K +)的情况下过早衰老,发生频率比常规品种高。为了验证转Bt基因棉花是否更容易缺钾,我们从中国广泛使用的两个品种中选择了两个'CCRI 41'和'DP 99B'转基因品种以及两个'CCRI 35'和'CCRI 36'常规品种。 ,被用于幼苗的水培研究。对于高K +,培养液K +浓度为0.5 mM,对于低K +条件为0.02 mM。当在高K +条件下生长时,所有四个品种的幼苗比低K +条件下积累更多的干物质和K +。然而,在低K +条件下,转Bt基因的CCRI 41和DP 99B品种的干重和K +含量低于常规品种CCRI 36和CCRI35。结果表明,转Bt基因的品种CCRI 41和DP 99B与传统品种CCRI 36和CCRI 35相比,它们对钾离子缺乏更为敏感,这可能是在钾离子缺乏下从Bt转基因棉花田中观察到过早衰老症状的原因。在低K +条件下,所有四个品种的幼苗均具有较高的K +利用效率(KUE),但在低K +浓度下,KUE并未解释Bt转基因品种与常规品种之间的差异反应。 K +消耗的结果也没有揭示幼苗的V max和K m的上述差异响应的机制。需要更多品种的进一步实验来阐明这些基因型的差异机制。

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