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Role of plant–fungal nutrient trading and host control in determining the competitive success of ectomycorrhizal fungi

机译:植物真菌养分交易和宿主控制在确定外生菌根真菌竞争成功中的作用

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摘要

Multiple ectomycorrhizal fungi (EMF) compete to colonise the roots of a host plant, but it is not known whether their success is under plant or fungal control, or a combination of both. We assessed whether plants control EMF colonisation by preferentially allocating more carbon to more beneficial partners in terms of nitrogen supply or if other factors drive competitive success. We combined stable isotope labelling and RNA-sequencing approaches to characterise nutrient exchange between the plant host Eucalyptus grandis and three Pisolithus isolates when growing alone and when competing either indirectly (with a physical barrier) or directly. Overall, we found that nitrogen provision to the plant does not explain the amount of carbon that an isolate receives nor the number of roots that it colonises. Differences in nutrient exchange among isolates were related to differences in expression of key fungal and plant nitrogen and carbon transporter genes. When given a choice of partners, the plant was able to limit colonisation by the least cooperative isolate. This was not explained by a reduction in allocated carbon. Instead, our results suggest that partner choice in EMF could operate through the upregulation of defence-related genes against those fungi providing fewer nutrients.
机译:多种外生菌根真菌(EMF)竞争在寄主植物的根部定植,但尚不清楚它们的成功是在植物控制下还是在真菌控制下,或两者结合。我们评估了植物是否通过在氮供应方面优先向更多有益的伙伴分配更多的碳来控制EMF的定殖,或者其他因素是否推动了竞争的成功。我们结合了稳定的同位素标记和RNA测序方法来表征植物寄主桉树和三个Pisolithus分离株在单独生长以及间接竞争(与物理屏障)或直接竞争时的养分交换。总体而言,我们发现向植物提供的氮不能解释分离株吸收的碳量,也不能解释其定殖的根数。分离株之间营养交换的差异与关键真菌和植物氮,碳转运蛋白基因表达的差异有关。当选择伙伴时,该植物能够通过最不合作的分离株来限制定植。分配碳减少并未解释这一点。相反,我们的结果表明,EMF中的伴侣选择可以通过防御相关基因的上调来抵抗那些提供较少营养的真菌。

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