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Horizontal gene transfer and gene dosage drives adaptation to wood colonization in a tree pathogen

机译:水平基因转移和基因剂量驱动对树木病原体木材定殖的适应

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摘要

Some of the most damaging tree pathogens can attack woody stems, causing lesions (cankers) that may be lethal. To identify the genomic determinants of wood colonization leading to canker formation, we sequenced the genomes of the poplar canker pathogen, Mycosphaerella populorum, and the closely related poplar leaf pathogen, M. populicola. A secondary metabolite cluster unique to M. populorum is fully activated following induction by poplar wood and leaves. In addition, genes encoding hemicellulose-degrading enzymes, peptidases, and metabolite transporters were more abundant and were up-regulated in M. populorum growing on poplar wood-chip medium compared with M. populicola. The secondary gene cluster and several of the carbohydrate degradation genes have the signature of horizontal transfer from ascomycete fungi associated with wood decay and from prokaryotes. Acquisition and maintenance of the gene battery necessary for growth in woody tissues and gene dosage resulting in gene expression reconfiguration appear to be responsible for the adaptation of M. populorum to infect, colonize, and cause mortality on poplar woody stems.
机译:一些最具破坏性的树木病原体可以攻击木质茎,导致可能致命的病斑(溃疡)。为了鉴定导致溃疡形成的木材定植的基因组决定因素,我们对杨树溃疡病病原体,Mycosphaerella populorum和密切相关的杨树叶片病原体M. populicola的基因组进行了测序。杨木和叶片诱导后,完全激活了毛果杨独特的次生代谢产物簇。此外,与杨枯草相比,在杨木屑培养基上生长的杨枯草中编码半纤维素降解酶,肽酶和代谢物转运蛋白的基因更加丰富并且被上调。次生基因簇和一些碳水化合物降解基因具有与木材腐烂相关的子囊真菌和原核生物水平转移的特征。木本组织生长所必需的基因电池的获取和维持以及导致基因表达重新配置的基因剂量似乎是造成毛果分支杆菌适应于感染,定殖并导致杨木本生茎死亡的原因。

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