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首页> 外文期刊>Ecological Entomology >Belowground infections of the invasive Phytophthora plurivora pathogen enhance the suitability of red oak leaves to the generalist herbivore Lymantria dispar
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Belowground infections of the invasive Phytophthora plurivora pathogen enhance the suitability of red oak leaves to the generalist herbivore Lymantria dispar

机译:地下感染性疫霉菌致病菌的地下感染增强了红橡树叶对普通食草动物Lymantria dispar的适应性

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摘要

1. Globally, vast areas of forest are currently threatened by Lymantria dispar L. and Phytophthora species, which cause widespread declines and cascading ecological impacts. One important aim of evolutionary and ecological studies is to understand their interactions. 2. The present study tests whether Quercus rubra L. trees naturally infected with P. plurivora T. Jung & T.I. Burgess or free of infection are more suitable for L. dispar herbivory, and if relationships between L. dispar performance and herbivory may vary depending on whether trees are infected or free of infection. 3. In choice tests, the consumed area of leaves from trees infected by P. plurivora was four times larger than that from non-infected trees, probably because the increased values of N, soluble protein, and water content observed in the leaves of infected trees enhanced acceptability. Although larval performance was better in Phytophthora-infected trees, relationships between larval performance and defoliation did not significantly interact with the health status of trees. 4. The present results suggest that the impact of P. plurivora on natural and managed ecosystems may generate a positive feedback loop for oak decline. The link between the behavioural and physiological responses of L. dispar to infected trees and the population growth in nature deserves further investigation.
机译:1.在全球范围内,目前大面积的森林都受到Lymantria dispar L.和Phytophthora物种的威胁,这造成了广泛的衰退和一系列的生态影响。进化和生态学研究的一个重要目标是了解它们之间的相互作用。 2.本研究测试了栎树是否自然感染了P. plurivora T. Jung和T.I.。凹凸不平或没有感染的植物更适合于L. dispar食草,并且L. dispar性能和食草之间的关系是否会根据树木是否被感染而有所不同。 3.在选择测试中,被P. plurivora感染的树木的叶片消耗面积是未感染的树木的四倍,这可能是因为在感染的叶片中观察到的N,可溶性蛋白和水分含量增加树木增强了可接受性。尽管感染疫霉菌的树木的幼虫性能更好,但是幼虫性能和脱叶之间的关系与树木的健康状况没有显着的相互作用。 4.目前的结果表明,P。plurivora对自然和管理型生态系统的影响可能会为橡树衰落产生积极的反馈回路。 Dispar对感染树木的行为和生理反应与自然种群增长之间的联系值得进一步研究。

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