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Identification of genes differentially expressed in extraradical mycelium and ectomycorrhizal roots during Paxillus involutus-Betula pendula ectomycorrhizal symbiosis

机译:渐开线Paxillus-Betula pendula外生菌根共生过程中根外菌丝体和外生菌根根差异表达基因的鉴定

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摘要

The development of ectomycorrhizal symbiosis leads to drastic changes in gene expression in both partners. However, little is known about the spatial regulation of symbiosis-regulated genes. Using cDNA array profiling, we compared the levels of expression of fungal genes corresponding to approximately 1,200 expressed sequenced tags in the ectomycorrhizal root tips (ECM) and the connected extraradical mycelium (EM) for the Paxillus involutus-Betula pendula ectomycorrhizal association grown on peat in a microcosm system. Sixty-five unique genes were found to be differentially expressed in these two fungal compartments. In ECM, a gene coding for a putative phosphatidylserine decarboxylase (Psd) was up-regulated by 24-fold, while genes coding for urea (Dur3) and spermine (Tpo3) transporters were up-regulated 4.1- and 6.2-fold in EM. Moreover, urea was the major nitrogen compound found in EM by gas chromatography-mass spectrometry analysis. These results suggest that (i) there is a spatial difference in the patterns of fungal gene expression between ECM and EM, (ii) urea and polyamine transporters could facilitate the translocation of nitrogen compounds within the EM network, and (iii) fungal Psd may contribute to membrane remodeling during ectomycorrhiza formation.
机译:外生菌根共生的发展导致两个伴侣的基因表达发生巨大变化。然而,关于共生调控基因的空间调控知之甚少。使用cDNA阵列分析,我们比较了在外生菌根-桦木-桦皮外生菌根在土壤中生长的外生菌根根尖(ECM)和连接的根外菌丝体(EM)中对应于约1,200个已表达序列标签的真菌基因的表达水平。缩影系统。发现在这两个真菌区室中有65个独特的基因差异表达。在ECM中,编码假定的磷脂酰丝氨酸脱羧酶(Psd)的基因上调24倍,而编码尿素(Dur3)和精胺(Tpo3)转运蛋白的基因在EM中上调4.1倍和6.2倍。此外,通过气相色谱-质谱分析,尿素是EM中发现的主要氮化合物。这些结果表明(i)ECM和EM之间真菌基因表达模式存在空间差异;(ii)尿素和多胺转运蛋白可以促进EM网络内氮化合物的转运,(iii)真菌Psd可能在外生菌根形成过程中有助于膜重构。

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