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作为多寄主寄生菌——白锈菌不同生理小种基因组渐渗和寄主范围扩张驱动因素的免疫抑制证据。

Evidence for suppression of immunity as a driver for genomic introgressions and host range expansion in races of Albugo candida, a generalist parasite.

作者信息

McMullan Mark, Gardiner Anastasia, Bailey Kate, Kemen Eric, Ward Ben J, Cevik Volkan, Robert-Seilaniantz Alexandre, Schultz-Larsen Torsten, Balmuth Alexi, Holub Eric, van Oosterhout Cock, Jones Jonathan D G

机构信息

The Sainsbury Laboratory, Norwich, United Kingdom.

Max Planck Research Group Fungal Biodiversity, Max Planck Institute for Plant Breeding Research, Cologne, Germany.

出版信息

Elife. 2015 Feb 27;4:e04550. doi: 10.7554/eLife.04550.

Abstract

How generalist parasites with wide host ranges can evolve is a central question in parasite evolution. Albugo candida is an obligate biotrophic parasite that consists of many physiological races that each specialize on distinct Brassicaceae host species. By analyzing genome sequence assemblies of five isolates, we show they represent three races that are genetically diverged by ∼1%. Despite this divergence, their genomes are mosaic-like, with ∼25% being introgressed from other races. Sequential infection experiments show that infection by adapted races enables subsequent infection of hosts by normally non-infecting races. This facilitates introgression and the exchange of effector repertoires, and may enable the evolution of novel races that can undergo clonal population expansion on new hosts. We discuss recent studies on hybridization in other eukaryotes such as yeast, Heliconius butterflies, Darwin's finches, sunflowers and cichlid fishes, and the implications of introgression for pathogen evolution in an agro-ecological environment.

摘要

具有广泛宿主范围的泛寄生生物如何进化是寄生虫进化中的核心问题。白锈菌是一种专性活体营养型寄生虫,由许多生理小种组成,每个小种都专门寄生于不同的十字花科宿主物种。通过分析五个分离株的基因组序列组装,我们发现它们代表三个种族,其基因差异约为1%。尽管存在这种差异,但它们的基因组呈镶嵌状,约25%的基因组是从其他种族渗入的。连续感染实验表明,适应性小种的感染能使通常无感染性的小种随后感染宿主。这促进了基因渗入和效应子库的交换,并可能促成新小种的进化,使其能够在新宿主上进行克隆群体扩张。我们讨论了最近关于其他真核生物如酵母、赫氏凤蝶、达尔文雀、向日葵和丽鱼科鱼类杂交的研究,以及基因渗入对农业生态环境中病原体进化的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5daa/4384639/c29fe26d3265/elife04550f001.jpg

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