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渍涝与干旱对不同转Bt基因抗虫棉的影响
引用本文:王留明,王家宝,沈法富,张学坤,刘任重.渍涝与干旱对不同转Bt基因抗虫棉的影响[J].棉花学报,2001,13(2):87-90.
作者姓名:王留明  王家宝  沈法富  张学坤  刘任重
作者单位:1. 山东棉花研究中心,济南,250100
2. 山东农业大学,泰安,271018
摘    要:对 3个转 Bt基因棉花品种的研究表明 ,花铃期田间渍涝显著降低皮棉产量和棉株内的 Bt蛋白含量。积水后棉花主茎功能叶和幼蕾的 Bt蛋白含量平均分别比对照降低 2 7.7%和 2 9.9% ,主茎下部老叶的 Bt蛋白含量仅降低 6 .6 % ,说明渍涝对生长旺盛器官 Bt蛋白合成的影响远远大于衰老器官。干旱对棉株内 Bt蛋白合成的抑制更强 ,当花铃期干旱使棉叶致萎时 ,主茎下部老叶、幼蕾和主茎功能叶的 Bt蛋白含量分别降低了52 .9%、3 7.0 %和 3 0 .0 %。为充分发挥和利用转Bt基因棉花品种的产量与抗虫潜力 ,棉花生长发育的关键时期应尽量避免缺水干旱 ,及时排除田间积水 ,防止渍涝危害

关 键 词:渍涝  干旱  转Bt基因棉  Bt蛋白含量
文章编号:1002-7807(2001)02-0087-04
修稿时间:2000年7月1日

Influences of Waterlogging and Drought on Different Transgenic Bt Cotton Cultivars
WANG Liu ming ,WANG Jia bao ,SHEN Fa fu ,ZHANG Xue kun ,LIU Ren zhong.Influences of Waterlogging and Drought on Different Transgenic Bt Cotton Cultivars[J].Cotton Science,2001,13(2):87-90.
Authors:WANG Liu ming  WANG Jia bao  SHEN Fa fu  ZHANG Xue kun  LIU Ren zhong
Institution:WANG Liu ming 1,WANG Jia bao 1,SHEN Fa fu 2,ZHANG Xue kun 1,LIU Ren zhong 1
Abstract:Investigation on 3 transgenic Bt cotton cultivars showed that both lint yield and Bt protein content within plants were significantly decreased by the waterlogging in flowering and boll fruiting stage. After waterlogging,Bt protein content in the active function main stem leaves and the squares reduced 27.7% and 29.9% , respectively,the content in the old leaves of the second joint from main stem bottom only reduced 6.6%,indicating much stronger influence on the highly active growing organs.Aridness showed even stronger inhibition to Bt protein composation within the cotton plants.When leaves became wilt due to aridness in flowering and boll fruiting stage,Bt protein content in the old leaves,the active function leaves and the squares reduced 52.9%,37.0% and 30.0%,respectively.To get a high yield and to make the full use of the advantage of transgenic Bt cultivars in pest resistance ,it is very important to escape aridness and to drain waterlogging in time during the key growing and development stages of cotton plants.
Keywords:waterlogging  drought  transgenic Bt cotton  Bt  protein content
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