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不同营养水平对Bt和常规油菜植株中昆虫诱导植物挥发物的影响。

The influence of different nutrient levels on insect-induced plant volatiles in Bt and conventional oilseed rape plants.

作者信息

Ibrahim M A, Stewart-Jones A, Pulkkinen J, Poppy G M, Holopainen J K

机构信息

Department of Environmental Science, University of Kuopio, Kuopio, Finland.

出版信息

Plant Biol (Stuttg). 2008 Jan;10(1):97-107. doi: 10.1111/j.1438-8677.2007.00013.x.

Abstract

Transgenic Bt (expressing the cry1Ac endotoxin gene) and conventional oilseed rape plants grown in different soils were used to study nutrient uptake and emission of volatiles after herbivore damage. All plants were greenhouse-grown in soils representing low-, medium- and high-nutrient levels. The concentrations of N, P, K, Mg and Zn were significantly affected by the transgene, while the main effect of soil type appeared in N, P, Ca, Mg, B, Mn and Zn concentrations in the plants. Plants with four to five leaves were infested with the third instar larvae of Bt-susceptible Plutella xylostella for 48 h, and samples of volatiles were collected and analysed. In the first experiment, the soil nutrient level had a significant effect on the emissions of (Z)-3-hexen-1-ol, (Z)-3-hexenyl acetate, hexyl acetate, (E)-4,8-dimethyl-1,3,7-non-atriene (DMNT), beta-elemene, gamma-bisabolene, alpha-bisabolene and (E)-nerolidol. The induction of these volatiles was significantly higher in infested conventional plants grown at a high-soil nutrient level compared to infested conventional plants at a low-soil nutrient level. In the second experiment, the soil nutrient level had a significant effect on the emissions of (Z)-3-hexen-1-ol, (Z)-3-hexenyl acetate and beta-elemene and, again, this was significantly higher in infested conventional plants grown at high-soil nutrient levels in comparison with infested plants at a low-soil nutrient level. In both experiments, the transgene effect was significant on the emissions of DMNT and (E,E)-alpha-farnesene. The differences in emissions between the two separate experiments suggest that growth conditions (particularly daylength) and sampling procedure may affect the ratio of compounds detected in the emission blend, even though the response to herbivory, nutrient availability and the transgene were similar.

摘要

利用在不同土壤中生长的转基因Bt(表达cry1Ac内毒素基因)油菜和常规油菜植株,研究草食动物取食损伤后养分吸收和挥发性物质的释放情况。所有植株均在代表低、中、高养分水平的土壤中于温室中种植。氮、磷、钾、镁和锌的浓度受转基因显著影响,而土壤类型的主要影响体现在植株中氮、磷、钙、镁、硼、锰和锌的浓度上。对具有四到五片叶子的植株接种对Bt敏感的小菜蛾三龄幼虫48小时,然后收集并分析挥发性物质样本。在第一个实验中,土壤养分水平对(Z)-3-己烯-1-醇、(Z)-3-己烯基乙酸酯、己基乙酸酯、(E)-4,8-二甲基-1,3,7-壬三烯(DMNT)、β-榄香烯、γ-红没药烯、α-红没药烯和(E)-橙花叔醇的释放有显著影响。与在低土壤养分水平下受侵染的常规植株相比,在高土壤养分水平下受侵染的常规植株中这些挥发性物质的诱导水平显著更高。在第二个实验中,土壤养分水平对(Z)-3-己烯-1-醇、(Z)-3-己烯基乙酸酯和β-榄香烯的释放有显著影响,同样,与在低土壤养分水平下受侵染的植株相比,在高土壤养分水平下受侵染的常规植株中这些物质的释放水平显著更高。在两个实验中,转基因对DMNT和(E,E)-α-法尼烯的释放均有显著影响。两个独立实验中释放情况的差异表明,生长条件(尤其是日照长度)和采样程序可能会影响在释放混合物中检测到的化合物比例,尽管对草食动物取食、养分有效性和转基因的响应相似。

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