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Comparative Genomics Using Microarrays Reveals Divergence and Loss of Virulence-Associated Genes in Host-Specific Strains of the Insect Pathogen Metarhizium anisopliae

机译:使用微阵列的比较基因组学揭示了在昆虫病原体Metahrizium anisopliae的宿主特定菌株中毒力相关基因的发散和丢失。

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Many strains of Metarhizium anisopliae have broad host ranges, but others are specialists and adapted to particular hosts. Patterns of gene duplication, divergence, and deletion in three generalist and three specialist strains were investigated by heterologous hybridization of genomic DNA to genes from the generalist strain Ma2575. As expected, major life processes are highly conserved, presumably due to purifying selection. However, up to 7% of Ma2575 genes were highly divergent or absent in specialist strains. Many of these sequences are conserved in other fungal species, suggesting that there has been rapid evolution and loss in specialist Metarhizium genomes. Some poorly hybridizing genes in specialists were functionally coordinated, indicative of reductive evolution. These included several involved in toxin biosynthesis and sugar metabolism in root exudates, suggesting that specialists are losing genes required to live in alternative hosts or as saprophytes. Several components of mobile genetic elements were also highly divergent or lost in specialists. Exceptionally, the genome of the specialist cricket pathogen Ma443 contained extra insertion elements that might play a role in generating evolutionary novelty. This study throws light on the abundance of orphans in genomes, as 15% of orphan sequences were found to be rapidly evolving in the Ma2575 lineage.
机译:的许多菌株具有广泛的寄主范围,但是其他菌株是专家,并且适合于特定的寄主。通过基因组DNA与来自通配株Ma2575的基因的异源杂交,研究了三种通配株和三支专用株中基因的重复,分化和缺失模式。正如预期的那样,主要的生命过程是高度保守的,大概是由于纯化选择。但是,高达7%的Ma2575基因在专业菌株中高度趋异或不存在。这些序列中的许多在其他真菌物种中都是保守的,这表明专门的 Metarhizium 基因组已迅速进化并丢失。专家中一些杂交较差的基因在功能上协调一致,表明还原性进化。其中包括涉及根分泌液中毒素生物合成和糖代谢的几种物质,这表明专家正在失去生活在替代宿主或腐生植物中的基因。流动遗传要素的几个组成部分在专家中也高度分歧或丢失。例外地,专家病原体Ma443的基因组包含可能在产生进化新奇中起作用的额外插入元件。这项研究揭示了基因组中孤儿的数量,因为发现Ma2575世系中有15%的孤儿序列正在迅速进化。

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