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Transposable Elements Adaptive Role in Genome Plasticity Pathogenicity and Evolution in Fungal Phytopathogens

机译:转座因子在真菌植物病原体基因组可塑性致病性和进化中的适应性作用

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摘要

Transposable elements (TEs) are agents of genetic variability in phytopathogens as they are a source of adaptive evolution through genome diversification. Although many studies have uncovered information on TEs, the exact mechanism behind TE-induced changes within the genome remains poorly understood. Furthermore, convergent trends towards bigger genomes, emergence of novel genes and gain or loss of genes implicate a TE-regulated genome plasticity of fungal phytopathogens. TEs are able to alter gene expression by revamping the cis-regulatory elements or recruiting epigenetic control. Recent findings show that TEs recruit epigenetic control on the expression of effector genes as part of the coordinated infection strategy. In addition to genome plasticity and diversity, fungal pathogenicity is an area of economic concern. A survey of TE distribution suggests that their proximity to pathogenicity genes TEs may act as sites for emergence of novel pathogenicity factors via nucleotide changes and expansion or reduction of the gene family. Through a systematic survey of literature, we were able to conclude that the role of TEs in fungi is wide: ranging from genome plasticity, pathogenicity to adaptive behavior in evolution. This review also identifies the gaps in knowledge that requires further elucidation for a better understanding of TEs’ contribution to genome architecture and versatility.
机译:转座因子(TEs)是植物病原体中遗传变异的媒介,因为它们是通过基因组多样化进行适应性进化的来源。尽管许多研究已经发现了关于TEs的信息,但是TE引起的基因组内变化背后的确切机制仍然知之甚少。此外,趋向于更大的基因组的趋同趋势,新基因的出现以及基因的获得或丧失都暗示着真菌对真菌性植物病原体的基因组可塑性具有调节作用。 TE能够通过改变顺式调控元件或募集表观遗传控制来改变基因表达。最近的发现表明,作为协同感染策略的一部分,TEs对效应子基因的表达募集了表观遗传控制。除基因组可塑性和多样性外,真菌的致病性也是一个经济问题。对TE分布的调查表明,TE与致病性基因的接近性可能通过核苷酸变化以及基因家族的扩展或减少而成为新致病性因子出现的位点。通过对文献的系统研究,我们可以得出结论,TEs在真菌中的作用是广泛的:从基因组可塑性,致病性到进化中的适应性行为。这篇综述还指出了需要进一步阐明的知识差距,以便更好地了解TE对基因组结构和多功能性的贡献。

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