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首页> 外文期刊>Anthropod-plant interactions >Allocation of resources away from sites of herbivory under simultaneous attack by aboveground and belowground herbivores in the common milkweed, Asclepias syriaca.
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Allocation of resources away from sites of herbivory under simultaneous attack by aboveground and belowground herbivores in the common milkweed, Asclepias syriaca.

机译:在常见乳草(Asclepias syriaca)的地上和地下食草动物的同时攻击下,将资源从草食场所分配出去。

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Following herbivory, plants can preferentially allocate newly acquired resources away from attacked sites as an important mechanism conferring tolerance. Although reported previously for both aboveground and belowground herbivores, it remains unclear whether plants can simultaneously allocate resources away from both kinds of herbivore attack, and whether they have interactive effects on plant resource allocation. In the current study, we used dual-isotopic techniques to compare the allocation of newly acquired carbon (C) and nitrogen (N) by the common milkweed Asclepias syriaca following attack by an aboveground herbivore, the monarch caterpillar Danaus plexippus and a belowground herbivore, larvae of the red milkweed beetle Tetraopes tetraophthalmus. Both species induced significant changes in the allocation of C and N in A. syriaca. Specifically, A. syriaca increased allocation of new N to stems at the expense of allocation to damaged tissues (i.e., leaf or root). When under simultaneous attack, the allocation of resources to stems was greater than that induced by either herbivore alone, suggesting that (1) the herbivores have additive effects on allocation patterns by A. syriaca and (2) A. syriaca was able to mitigate the effects of future attack by both herbivore species simultaneously.CAS Registry Numbers 7440-44-0 7727-37-9
机译:食草后,植物可以优先分配新获得的资源,使其远离受灾地点,这是赋予其耐受性的重要机制。尽管以前曾报道过地下和地下食草动物,但尚不清楚植物是否可以同时从两种食草动物攻击中分配资源,以及它们是否对植物资源分配产生交互作用。在目前的研究中,我们使用双重同位素技术比较了常见的马利筋草(Asclepias syriaca)在地上食草动物,帝王毛虫Danaus plexippus和地下食草动物的攻击下新获得的碳(C)和氮(N)的分配,红色乳草甲虫Tetraopestetraophthalmus的幼虫。两种物种均引起了A. syriaca中C和N分配的显着变化。具体而言,拟南芥增加了对茎的新氮分配,但以分配给受损组织(即叶或根)为代价。当同时遭受攻击时,对茎的资源分配要比任一种食草动物单独诱导的要大,这表明(1)食草动物对拟南芥的分配模式有累加效应,(2)拟南芥能够减轻茎尖的分配。食草动物同时攻击的影响.CAS注册号7440-44-0 7727-37-9

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