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The Ectomycorrhizal Fungus Laccaria bicolor Produces Lipochitooligosaccharides and Uses the Common Symbiosis Pathway to Colonize Populus Roots

机译:Ectomycorrhizal真菌双色紫胶产生脂低聚果糖并使用常见的共生途径定居杨树根

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摘要

Mycorrhizal fungi form mutualistic associations with the roots of most land plants and provide them with mineral nutrients from the soil in exchange for fixed carbon derived from photosynthesis. The common symbiosis pathway (CSP) is a conserved molecular signaling pathway in all plants capable of associating with arbuscular mycorrhizal fungi. It is required not only for arbuscular mycorrhizal symbiosis but also for rhizobia–legume and actinorhizal symbioses. Given its role in such diverse symbiotic associations, we hypothesized that the CSP also plays a role in ectomycorrhizal associations. We showed that the ectomycorrhizal fungus Laccaria bicolor produces an array of lipochitooligosaccharides (LCOs) that can trigger both root hair branching in legumes and, most importantly, calcium spiking in the host plant Populus in a CASTOR/POLLUX-dependent manner. Nonsulfated LCOs enhanced lateral root development in Populus in a calcium/calmodulin-dependent protein kinase (CCaMK)-dependent manner, and sulfated LCOs enhanced the colonization of Populus by L. bicolor. Compared with the wild-type Populus, the colonization of CASTOR/POLLUX and CCaMK RNA interference lines by L. bicolor was reduced. Our work demonstrates that similar to other root symbioses, L. bicolor uses the CSP for the full establishment of its mutualistic association with Populus.
机译:菌根真菌与大多数陆地植物的根形成相互联系,并向它们提供土壤中的矿物质营养,以交换光合作用产生的固定碳。在所有能够与丛枝菌根真菌相关联的植物中,共生共生途径(CSP)是保守的分子信号传导途径。它不仅对于丛枝菌根共生是必需的,而且对于根瘤菌-豆类和放线菌共生菌也是必需的。鉴于其在多种多样的共生关联中的作用,我们假设CSP在外生菌根关联中也起着作用。我们发现,外生菌根真菌双色紫胶产生一系列脂低聚寡糖(LCO),它们可以触发豆类中的根毛分支,最重要的是,以依赖CASTOR / POLLUX的方式触发寄主植物胡杨中的钙尖峰。非硫酸化的LCO以钙/钙调蛋白依赖性蛋白激酶(CCaMK)依赖性的方式增强了胡杨的侧根发育,硫酸化的LCO增强了双色乳杆菌对杨的定植。与野生型胡杨相比,双色乳杆菌对CASTOR / POLLUX和CCaMK RNA干扰株的定殖减少了。我们的工作表明,与其他根共生菌相似,双色乳杆菌使用CSP来完全建立其与胡杨的互惠联系。

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