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豆科感染尖孢镰刀菌专化型的比较基因组学及条件性可缺失序列预测有助于鉴定候选效应子。

Comparative genomics and prediction of conditionally dispensable sequences in legume-infecting Fusarium oxysporum formae speciales facilitates identification of candidate effectors.

作者信息

Williams Angela H, Sharma Mamta, Thatcher Louise F, Azam Sarwar, Hane James K, Sperschneider Jana, Kidd Brendan N, Anderson Jonathan P, Ghosh Raju, Garg Gagan, Lichtenzveig Judith, Kistler H Corby, Shea Terrance, Young Sarah, Buck Sally-Anne G, Kamphuis Lars G, Saxena Rachit, Pande Suresh, Ma Li-Jun, Varshney Rajeev K, Singh Karam B

机构信息

The Institute of Agriculture, The University of Western Australia, 35 Stirling Highway, Crawley, WA, 6009, Australia.

CSIRO Agriculture, Centre for Environment and Life Sciences, Wembley, WA, 6913, Australia.

出版信息

BMC Genomics. 2016 Mar 5;17:191. doi: 10.1186/s12864-016-2486-8.

Abstract

BACKGROUND

Soil-borne fungi of the Fusarium oxysporum species complex cause devastating wilt disease on many crops including legumes that supply human dietary protein needs across many parts of the globe. We present and compare draft genome assemblies for three legume-infecting formae speciales (ff. spp.): F. oxysporum f. sp. ciceris (Foc-38-1) and f. sp. pisi (Fop-37622), significant pathogens of chickpea and pea respectively, the world's second and third most important grain legumes, and lastly f. sp. medicaginis (Fom-5190a) for which we developed a model legume pathosystem utilising Medicago truncatula.

RESULTS

Focusing on the identification of pathogenicity gene content, we leveraged the reference genomes of Fusarium pathogens F. oxysporum f. sp. lycopersici (tomato-infecting) and F. solani (pea-infecting) and their well-characterised core and dispensable chromosomes to predict genomic organisation in the newly sequenced legume-infecting isolates. Dispensable chromosomes are not essential for growth and in Fusarium species are known to be enriched in host-specificity and pathogenicity-associated genes. Comparative genomics of the publicly available Fusarium species revealed differential patterns of sequence conservation across F. oxysporum formae speciales, with legume-pathogenic formae speciales not exhibiting greater sequence conservation between them relative to non-legume-infecting formae speciales, possibly indicating the lack of a common ancestral source for legume pathogenicity. Combining predicted dispensable gene content with in planta expression in the model legume-infecting isolate, we identified small conserved regions and candidate effectors, four of which shared greatest similarity to proteins from another legume-infecting ff. spp.

CONCLUSIONS

We demonstrate that distinction of core and potential dispensable genomic regions of novel F. oxysporum genomes is an effective tool to facilitate effector discovery and the identification of gene content possibly linked to host specificity. While the legume-infecting isolates didn't share large genomic regions of pathogenicity-related content, smaller regions and candidate effector proteins were highly conserved, suggesting that they may play specific roles in inducing disease on legume hosts.

摘要

背景

尖孢镰刀菌复合种的土传真菌对包括豆类在内的许多作物造成毁灭性的枯萎病,豆类在全球许多地区满足人类膳食蛋白质需求。我们展示并比较了三种感染豆类的专化型(ff. spp.)的基因组草图组装:尖孢镰刀菌鹰嘴豆专化型(Foc - 38 - 1)和豌豆专化型(Fop - 37622),它们分别是鹰嘴豆和豌豆的重要病原菌,鹰嘴豆和豌豆是世界上第二和第三重要的食用豆类,最后是苜蓿专化型(Fom - 5190a),我们利用蒺藜苜蓿建立了一个豆类模式病害系统。

结果

专注于致病性基因内容的鉴定,我们利用番茄感染型尖孢镰刀菌和豌豆感染型茄腐镰刀菌的参考基因组及其特征明确的核心染色体和非必需染色体,来预测新测序的感染豆类分离株的基因组组织。非必需染色体对于生长并非必需,在镰刀菌属中已知富含宿主特异性和致病性相关基因。对公开可用的镰刀菌属物种的比较基因组学揭示了尖孢镰刀菌不同专化型之间序列保守性的差异模式,感染豆类的专化型之间相对于非感染豆类的专化型并未表现出更高的序列保守性,这可能表明豆类致病性缺乏共同的祖先来源。将预测的非必需基因内容与模式感染豆类分离株在植物体内的表达相结合,我们鉴定出了小的保守区域和候选效应子,其中四个与另一种感染豆类的专化型的蛋白质具有最大的相似性。

结论

我们证明,区分新型尖孢镰刀菌基因组的核心和潜在非必需基因组区域是促进效应子发现和鉴定可能与宿主特异性相关的基因内容的有效工具。虽然感染豆类的分离株没有共享大量与致病性相关内容的基因组区域,但较小的区域和候选效应子蛋白高度保守,表明它们可能在诱导豆类宿主发病中发挥特定作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8f0d/4779268/4620a5abb16f/12864_2016_2486_Fig1_HTML.jpg

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