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首页> 外文期刊>The Journal of Ecology >Novel interactions between alien pathogens and native plants increase plant-pathogen network connectance and decrease specialization
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Novel interactions between alien pathogens and native plants increase plant-pathogen network connectance and decrease specialization

机译:外星病原体和原生植物之间的新型相互作用增加了植物 - 病原体网络的连接和减少专业化

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摘要

Alien plant pathogens are a threat to native plants and are increasingly integrating into native plant-pathogen networks, but how these novel plant-pathogen networks are structured remains unclear. Theory predicts that novel antagonists are likely to be generalists, resulting in interaction networks with greater nestedness as well as lower modularity and specialization than native networks. We tested these predictions by quantifying associations between native plants and their native and alien pathogens using a comprehensive database of plant-fungal associations in New Zealand. We compared the host ranges of alien and native pathogens and the structure of native and alien pathogen subnetworks. As predicted, alien pathogens associated with a greater number and diversity of native plant host species than native pathogens. The alien pathogen subnetwork was more nested and connected, but less modular and less specialized than the native pathogen subnetwork, consistent with expectations for novel interactions. Alien pathogens altered the overall native plant-pathogen network structure, making the full network more connected and less specialized than the native network. Modules in the native and alien subnetworks were clustered by host phylogeny but did not show a clear signal associated with host habitat or region.Synthesis. Our study provides some of the first empirical insights into the structure of novel plant-pathogen networks and the changes that occur when alien pathogens invade a native network. Because alien pathogens interacted with more hosts than native pathogens, alien pathogens have an increased risk of adverse indirect effects, including pathogen spillover, host jumps and network destabilization.
机译:外星植物病原体是对原生植物的威胁,并且越来越掺入本地植物病原体网络,但这些新颖的植物病原体网络是如何结构难以忽略的。理论预测,新的拮抗剂可能是一般主义者,导致相互作用网络具有更大的嵌套和比本机网络的模块化和专业化。我们通过使用新西兰的综合植物真菌协会的综合数据库量化本地植物和天然和外星病原体之间的关联来测试这些预测。我们比较了外星人和本地病原体的宿主范围和本土和外星病原子网的结构。如预测的那样,与原生植物宿主物种的更大数量和多样性相关的外星病原体多于原生病原体。外星病原体子网更加嵌套​​和连接,但比本土病原体子网更少的模块化和更少专业化,与新的互动的期望一致。外星病原体改变了整个本机植物病原体网络结构,使得完整的网络更加连接,而不是本机网络。本机和外星子网子网中的模块由宿主发育聚集,但没有显示与宿主栖息地或区域相关的明确信号。合成。我们的研究为新型植物病原体网络结构提供了一些第一实证洞察力以及外星病原体侵入本机网络时发生的变化。因为外星病原体与更多的宿主相互作用而不是原生病原体,所以外星病原体具有增加的间接影响的风险,包括病原体溢出,主机跳跃和网络稳定化。

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