...
首页> 外文期刊>Global change biology >Interactions of elevated carbon dioxide and temperature with aphid feeding on transgenic oilseed rape: Are Bacillus thuringiensis (Bt) plants more susceptible to nontarget herbivores in future climate?
【24h】

Interactions of elevated carbon dioxide and temperature with aphid feeding on transgenic oilseed rape: Are Bacillus thuringiensis (Bt) plants more susceptible to nontarget herbivores in future climate?

机译:二氧化碳和温度升高与转基因油菜蚜虫取食的相互作用:苏云金芽胞杆菌(Bt)植物在未来的气候中是否更容易受到非目标草食动物的侵害?

获取原文
获取原文并翻译 | 示例
           

摘要

Climate change factors such as elevated carbon dioxide (CO2) and temperature typically affect carbon (C) and nitrogen (N) dynamics of crop plants and the performance of insect herbivores. Insect-resistant transgenic plants invest some nutrients to the production of specific toxic proteins [i.e. endotoxins from Bacillus thuringiensis (Bt)], which could alter the C-N balance of these plants, especially under changed abiotic conditions. Aphids are nonsusceptible to Lepidoptera-targeted Bt Cry1Ac toxin and they typically show response to abiotic conditions, and here we sought to discover whether they might perform differently on compositionally changed Bt oilseed rape. Bt oilseed rape had increased N content in the leaves coupled with reduced total C compared with its nontransgenic counterpart, but in general the C : N responses of both plant types to elevated CO2 and temperature were similar. Elevated CO2 decreased N content and increased C : N ratio of both plant types. Elevated temperature increased C and N contents, total chlorophyll and carotenoid concentrations under ambient CO2, but decreased these under elevated CO2. In addition, soluble sugars were increased and starch decreased by elevated temperature under ambient but not under elevated CO2, whereas photosynthesis was decreased in plants grown under elevated temperature in both CO2 levels. Myzus persicae, a generalist aphid species, responded directly to elevated temperature with reduced developmental time and decreased adult and progeny weights, whereas the development of the Brassica specialist Brevicoryne brassicae was less affected. Feeding by M. persicae resulted in an increase in the N content of oilseed rape leaves under ambient CO2, indicating the potential of herbivore feeding itself to cause allocation changes. The aphids performed equally well on both plant types despite the differences between C-N ratios of Bt and non-Bt oilseed rape, revealing the absence of plant composition-related effects on these pests under elevated CO2, elevated temperature or combined elevated CO2 and temperature conditions.
机译:气候变化因素,例如二氧化碳(CO2)和温度升高,通常会影响农作物的碳(C)和氮(N)动态以及昆虫食草动物的性能。抗昆虫的转基因植物投入一些养分来生产特定的有毒蛋白质[即苏云金芽孢杆菌(Bt)的内毒素,可改变这些植物的C-N平衡,特别是在非生物条件下。蚜虫对鳞翅目为目标的Bt Cry1Ac毒素不敏感,它们通常表现出对非生物条件的响应,在这里我们试图发现它们在组成改变的Bt油料油菜中是否表现出不同的表现。与非转基因油菜相比,Bt油菜油菜叶片中的N含量增加,总C降低,但总的来说,两种植物对CO2和温度升高的C:N响应相似。升高的CO 2降低了两种植物的氮含量并增加了碳氮比。升高温度会增加环境CO2下的C和N含量,总叶绿素和类胡萝卜素浓度,但在升高CO2下会降低这些含量。此外,在环境温度升高但在CO2升高的情况下,可溶性糖增加,而淀粉含量降低,而在CO2升高的条件下,光合作用降低。蚜虫(Myzus persicae)是一种普通蚜虫,对温度升高直接反应,减少了发育时间,降低了成虫和子代体重,而芸苔属Brevicoryne Brassicae的发育受到的影响较小。在环境CO2下,百日草的饲喂导致油菜油菜叶片N含量的增加,这表明草食动物饲喂本身可能引起分配变化。尽管Bt和非Bt油菜的C-N比有所不同,但蚜虫在两种植物上的表现均一样好,这表明在CO2升高,温度升高或CO2和温度升高的综合条件下,对这些害虫没有植物组成相关的影响。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号