Natural genetic variation and negative density effects in plant–nematode interactions

Maisara Mukhaimar, Marina Pfalz, Jacqui Shykoff, Juergen Kroymann
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Abstract

Arabidopsis thaliana is a suitable host for phytoparasitic nematodes of the genus Meloidogyne. Successful nematode infection leads to the formation of root galls. We tested for natural genetic variation and inoculation density effects on nematode reproductive success in the interaction between A. thaliana and Meloidogyne javanica. We inoculated different Arabidopsis genotypes with two sources of nematodes at two different doses, using a mild protocol for inoculum preparation. We counted root galls and egg masses 2 months after inoculation. We obtained a high number of successful nematode infections. Infection success differed among Arabidopsis genotypes in interaction with the nematode source. Overall, infection success and reproductive success of nematodes were lower at a higher inoculum dose of nematodes. Our results indicate that natural genetic variation in both host plants and nematodes, as well as short‐ and long‐term negative density effects, shape nematode reproductive success.
植物与线虫相互作用中的自然遗传变异和负密度效应
拟南芥是拟南芥属植物寄生线虫的合适宿主。线虫感染成功后会形成根瘿。我们测试了拟南芥和拟南芥线虫(Meloidogyne javanica)之间相互作用的自然遗传变异和接种密度对线虫繁殖成功率的影响。我们采用温和的接种体制备方案,用两种不同剂量的线虫接种不同的拟南芥基因型。接种 2 个月后,我们对根瘿和卵块进行了计数。我们获得了大量成功的线虫感染。拟南芥不同基因型的感染成功率因线虫来源而异。总体而言,线虫接种剂量越高,感染成功率和繁殖成功率越低。我们的研究结果表明,寄主植物和线虫的自然遗传变异以及短期和长期的负密度效应影响了线虫的繁殖成功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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