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Reappraising the role of plant nutrients as mediators of interactions between root- and foliar-feeding insects

机译:重新评估植物营养物作为根与叶饲昆虫之间相互作用的媒介的作用

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1. There is increasing evidence that many above-ground and below-ground processes are tightly linked through plant-mediated mechanisms, including indirect interactions between foliar and root herbivores underpinned by changes in host plant chemistry (e.g. defensive or nutritional status). To date, studies addressing interactions involving nutritional mechanisms have relied on rudimentary chemical measurements (e.g. total/soluble nitrogen), overlooking other nutrients such as minerals and specific amino acids. 2. This study investigated how the nutrient composition of barley (Hordeum vulgare) responded to separate and simultaneous attack by root-feeding wireworms (Agriotes spp.) and foliar-feeding aphids (Rhopalosiphum padi) after short and long exposures to herbivory, and determined whether the two insects indirectly interacted with each other. 3. Wireworms significantly reduced total plant mass and leaf dry mass by up to 25%, but had little impact on nutritional chemistry compared with aphids. Aphids did not affect plant growth but caused significant reductions in most leaf minerals: nitrogen (N), sulphur (S), calcium (Ca) and phosphorus (P). In contrast, aphids increased root mineral concentrations: N, S, Ca and potassium (K). Aphid-induced changes occurred in both short and long exposure experiments, with the exception of leaf Ca, and root N and K which were only significantly affected in the short exposure experiment. 4. Above-ground and below-ground herbivory had several interactive (often reversible) effects on plant nutrients. For example, wireworms strengthened the aphid-driven increases in root S by 35% after short exposure, but reduced aphid-induced increases by 10% after longer exposure. 5. There was evidence for positive bi-directional interactions between above-ground and below-ground herbivores, with wireworms promoting aphid numbers by 30% and aphids increasing wireworm mass by 25%. 6. Contrary to previous mechanistic explanations, below-ground herbivory had little impact on foliar amino acid concentrations, whereas aphids caused significant (approximately 50%) reductions in essential amino acids. However, after longer exposure to wireworm herbivory, aphid-driven reductions in essential amino acids were attenuated. Aphids caused significant increases in root mineral concentrations (especially root S) which potentially promoted wireworm performance. 7. The significance of these findings is discussed in the context of current hypotheses of above-ground x below-ground herbivore interactions. In particular, examining specific plant nutrients could be critical to understanding conditional outcomes of insect x plant interactions.
机译:1.越来越多的证据表明,许多地上和地下过程是通过植物介导的机制紧密联系在一起的,其中包括以宿主植物化学变化(例如防御性或营养状态)为基础的叶和根食草动物之间的间接相互作用。迄今为止,针对涉及营养机制相互作用的研究都依赖于基本的化学测量(例如总氮/可溶性氮),而忽略了其他营养物质,例如矿物质和特定氨基酸。 2.这项研究调查了大麦(Hordeum vulgare)的营养成分如何在短期和长期接触食草动物后,分别响应以根为食的线虫(Agriotes spp。)和以叶为食的蚜虫(Rhopalosiphum padi)的单独侵袭,并确定了两种昆虫是否彼此间接相互作用。 3.蚕明显减少了总植物量和叶片干重达25%,但与蚜虫相比,对营养化学的影响很小。蚜虫不会影响植物的生长,但会导致大多数叶片矿物质的显着减少:氮(N),硫(S),钙(Ca)和磷(P)。相反,蚜虫增加了根矿物质的浓度:N,S,Ca和钾(K)。蚜虫引起的变化在短期和长期暴露实验中均发生,但叶片Ca,根N和K除外,后者仅在短期暴露实验中受到显着影响。 4.地上和地下的食草对植物养分具有多种相互作用(通常是可逆的)的作用。例如,在短时间接触后,线虫将蚜虫驱动的根S的增加量提高了35%,而在长时间接触后,蚜虫诱导的根S的增加量减少了10%。 5.有证据表明地上和地下食草动物之间存在积极的双向相互作用,线虫将蚜虫数量提高了30%,而蚜虫使线虫质量增加了25%。 6.与以前的机理解释相反,地下食草对叶氨基酸的浓度影响很小,而蚜虫引起必需氨基酸的显着减少(约50%)。但是,在长时间接触线虫草食后,蚜虫驱动的必需氨基酸减少量减弱。蚜虫引起根部矿物质浓度(尤其是根部S)的显着增加,这可能会促进线虫的生长。 7.这些发现的意义在地上x地下草食动物相互作用的当前假设的背景下进行了讨论。特别是,检查特定的植物养分对于理解昆虫x植物相互作用的条件结果可能至关重要。

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