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Transposable element-assisted evolution and adaptation to host plant within the Leptosphaeria maculans-Leptosphaeria biglobosa species complex of fungal pathogens

机译:可转产元辅助进化和适应宿主植物在瘦性病原体的瘦性病原体大洛磷酸盐物种络合物中

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摘要

Background Many plant-pathogenic fungi have a tendency towards genome size expansion, mostly driven by increasing content of transposable elements (TEs). Through comparative and evolutionary genomics, five members of the Leptosphaeria maculans-Leptosphaeria biglobosa species complex (class Dothideomycetes, order Pleosporales), having different host ranges and pathogenic abilities towards cruciferous plants, were studied to infer the role of TEs on genome shaping, speciation, and on the rise of better adapted pathogens. Results L. maculans ‘brassicae’, the most damaging species on oilseed rape, is the only member of the species complex to have a TE-invaded genome (32.5%) compared to the other members genomes (in planta. Conclusions Invasion of L. maculans ‘brassicae’ genome by TEs followed by bursts of TE activity allowed this species to evolve and to better adapt to its host, making this genome species a peculiarity within its own species complex as well as in the Pleosporales lineage.
机译:背景技术许多植物致病性真菌具有基因组大小膨胀的趋势,主要通过增加转移元素(TES)的含量来驱动。通过比较和进化基因组学,研究了具有不同宿主范围和对十字杀植物植物的致病性能的百分之三甲基氯脲 - 瘦磷酸盐(类Dihothideomycetes,Order Pleosporospersporosperperperspleales),以推断TES对基因组塑造,物种的作用。并且在更好的调整病原体的兴起。结果L. Maculans'Brassicae'是油菜油菜最有害的物种,是物种复合物的唯一成员,与其他成员基因组(在Planta中的其他成员基因组相比(32.5%)。结论入侵L. Maculans'Brassicae'基因组随着TE活动的爆发,允许这种物种进化并更好地适应其宿主,使得这种基因组在其自身物种中的特殊性以及隆起的血统。
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