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Chemotaxis can take plant-parasitic nematodes to the source of a chemo-attractant via the shortest possible routes

机译:趋化性可通过最短途径将植物寄生线虫带入化学吸引剂的来源

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摘要

It has long been recognized that chemotaxis is the primary means by which nematodes locate host plants. Nonetheless, chemotaxis has received scant attention. We show that chemotaxis is predicted to take nematodes to a source of a chemo-attractant via the shortest possible routes through the labyrinth of air-filled or water-filled channels within a soil through which the attractant diffuses. There are just two provisos: (i) all of the channels through which the attractant diffuses are accessible to the nematodes and (ii) nematodes can resolve all chemical gradients no matter how small. Previously, this remarkable consequence of chemotaxis had gone unnoticed. The predictions are supported by experimental studies of the movement patterns of the root-knot nematodes Meloidogyne incognita and Meloidogyne graminicola in modified Y-chamber olfactometers filled with Pluronic gel. By providing two routes to a source of the attractant, one long and one short, our experiments, the first to demonstrate the routes taken by nematodes to plant roots, serve to test our predictions. Our data show that nematodes take the most direct route to their preferred hosts (as predicted) but often take the longest route towards poor hosts. We hypothesize that a complex of repellent and attractant chemicals influences the interaction between nematodes and their hosts.
机译:长期以来,人们已经认识到趋化性是线虫定位寄主植物的主要手段。尽管如此,趋化性却很少受到关注。我们表明,趋化性预计将通过最短的路径通过土壤中的空气填充或注水通道的迷宫而将线虫带到化学吸引剂的源,引诱剂扩散通过该迷宫。仅有两个条件:(i)线虫可通过其吸引剂扩散的所有通道,以及(ii)线虫可分辨所有化学梯度,无论多小。以前,这种趋化性的显着后果是未被注意到的。这些预测得到了在装有Pluronic凝胶的改良型Y室嗅觉计中根结线虫Meloidogyne incognita和Meloidogyne graminicola的运动模式的实验研究的支持。通过提供两条引诱剂来源的路径,一条长短一条,我们的实验(第一个证明线虫到植物根部的途径)有助于检验我们的预测。我们的数据表明,线虫采取最直接的途径到达其首选宿主(如预测的),但通常采取最长的途径到达不良宿主。我们假设驱虫剂和引诱剂的复合物会影响线虫与其宿主之间的相互作用。

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