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首页> 外文期刊>Journal of Economic Entomology >Interactions among white spruce tannins, Bacillus thuringiensis subsp kurstaki, and spruce budworm (Lepidoptera : Tortricidae), on larval survival, growth, and development
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Interactions among white spruce tannins, Bacillus thuringiensis subsp kurstaki, and spruce budworm (Lepidoptera : Tortricidae), on larval survival, growth, and development

机译:白云杉单宁,苏云金芽孢杆菌库尔斯塔克亚种和云杉芽虫(鳞翅目:Tor科)之间的相互作用对幼虫存活,生长和发育的影响

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摘要

The interactions among white spruce, Picea glauca (Moench) Voss, purified acetone tannin extracts (hydrolyzable and condensed tannin), Bacillus thuringiensis subsp. kurstaki CrylA(c) delta-endotoxin strain HD-73 (Btk), and spruce budworm, Chotistoneura fumiferana (Clemens) (Lepidoptera: Tortricidae) on larval survival, growth, and development were investigated over the whole larval feeding period by using artificial diet supplemented with three concentrations of Btk toxins per milliliter of diet (0, 0.021, and 1.72 mu g/ml) and three concentrations of foliar tannin extract (0, 8, and 15% dry mass basis). At high Btk concentration, tannin antagonized Btk potency against spruce budworm by lowering Btk-related larval mortality from 83 to 43%. At moderate Btk concentration tannin did not affect Btk potency. Host tree tannins antagonized not only the lethal effects of Btk toxin but also sublethal Btk-related impacts in terms of larval development, pupal weight, relative consumption rate, and growth rate. When alone in the diet, tannin negatively affected larval survival, growth, and development. Maximum potency of tannins against spruce budworm larvae (60% mortality) was reached at dietary concentrations corresponding to what is found in the plant (8% dry mass). The addition of Btk toxin in food containing tannin reduced percentage of larval mortality by one-third, indicating that Btk toxin can antagonize tannin potency against the insect. Development of Btk transgenic spruce trees should consider the antagonistic effect the toxin may have on the resistance conferred by tannins that have evolved naturally in spruce trees.
机译:白云杉,云杉云杉(Moench)Voss,纯化的丙酮单宁提取物(可水解和浓缩的单宁),苏云金芽孢杆菌亚种之间的相互作用。通过使用人工饮食,研究了库尔斯塔克CrylA(c)δ-内毒素菌株HD-73(Btk)和云杉芽虫Chotistoneura fumiferana(Clemens)(鳞翅目:Tortricidae)在整个幼体摄食期间的幼体存活,生长和发育。每毫升日粮中添加三种浓度的Btk毒素(0、0.021和1.72微克/毫升)和三种浓度的叶面单宁提取物(以干质量计为0、8和15%)。在高Btk浓度下,单宁酸通过将与Btk相关的幼虫死亡率从83%降低到43%而对抗Btk对云杉芽虫的效力。在中等Btk浓度下,单宁酸不会影响Btk效力。寄主树单宁酸不仅拮抗了Btk毒素的致死作用,而且还拮抗了幼虫发育,幼虫体重,相对消耗率和生长率等与Btk相关的致死性影响。单单在饮食中,单宁会对幼虫的存活,生长和发育产生负面影响。在与植物中发现的浓度(干质量为8%)相对应的日粮浓度下,达到了单宁酸对云杉bud虫幼虫的最大效力(死亡率60%)。在含单宁的食物中添加Btk毒素可使幼虫死亡率降低三分之一,这表明Btk毒素可以拮抗单宁对昆虫的效力。 Btk转基因云杉树的开发应考虑毒素对云杉树中自然进化的单宁酸所产生的抗性的拮抗作用。

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