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尖孢镰刀菌苜蓿专化型在抗性和感病蒺藜苜蓿宿主定殖过程中的转录组分析确定了不同的致病特征和新的候选效应子。

Transcriptome analysis of the fungal pathogen Fusarium oxysporum f. sp. medicaginis during colonisation of resistant and susceptible Medicago truncatula hosts identifies differential pathogenicity profiles and novel candidate effectors.

作者信息

Thatcher Louise F, Williams Angela H, Garg Gagan, Buck Sally-Anne G, Singh Karam B

机构信息

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

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

出版信息

BMC Genomics. 2016 Nov 3;17(1):860. doi: 10.1186/s12864-016-3192-2.

Abstract

BACKGROUND

Pathogenic members of the Fusarium oxysporum species complex are responsible for vascular wilt disease on many important crops including legumes, where they can be one of the most destructive disease causing necrotrophic fungi. We previously developed a model legume-infecting pathosystem based on the reference legume Medicago truncatula and a pathogenic F. oxysporum forma specialis (f. sp.) medicaginis (Fom). To dissect the molecular pathogenicity arsenal used by this root-infecting pathogen, we sequenced its transcriptome during infection of a susceptible and resistant host accession.

RESULTS

High coverage RNA-Seq of Fom infected root samples harvested from susceptible (DZA315) or resistant (A17) M. truncatula seedlings at early or later stages of infection (2 or 7 days post infection (dpi)) and from vegetative (in vitro) samples facilitated the identification of unique and overlapping sets of in planta differentially expressed genes. This included enrichment, particularly in DZA315 in planta up-regulated datasets, for proteins associated with sugar, protein and plant cell wall metabolism, membrane transport, nutrient uptake and oxidative processes. Genes encoding effector-like proteins were identified, including homologues of the F. oxysporum f. sp. lycopersici Secreted In Xylem (SIX) proteins, and several novel candidate effectors based on predicted secretion, small protein size and high in-planta induced expression. The majority of the effector candidates contain no known protein domains but do share high similarity to predicted proteins predominantly from other F. oxysporum ff. spp. as well as other Fusaria (F. solani, F. fujikori, F. verticilloides, F. graminearum and F. pseudograminearum), and from another wilt pathogen of the same class, a Verticillium species. Overall, this suggests these novel effector candidates may play important roles in Fusaria and wilt pathogen virulence.

CONCLUSION

Combining high coverage in planta RNA-Seq with knowledge of fungal pathogenicity protein features facilitated the identification of differentially expressed pathogenicity associated genes and novel effector candidates expressed during infection of a resistant or susceptible M. truncatula host. The knowledge from this first in depth in planta transcriptome sequencing of any F. oxysporum ff. spp. pathogenic on legumes will facilitate the dissection of Fusarium wilt pathogenicity mechanisms on many important legume crops.

摘要

背景

尖孢镰刀菌复合种的致病成员可引发包括豆类在内的多种重要作物的维管束萎蔫病,它们可能是最具破坏性的引起坏死性营养型真菌病害的病原菌之一。我们之前基于参考豆科植物蒺藜苜蓿和致病的尖孢镰刀菌苜蓿专化型(Fom)构建了一个模拟豆科植物感染的病理系统。为剖析这种根部感染病原菌所使用的分子致病武器库,我们对其在易感和抗性宿主材料感染期间的转录组进行了测序。

结果

对在感染早期或后期(感染后2天或7天(dpi))从易感(DZA315)或抗性(A17)蒺藜苜蓿幼苗以及营养期(体外)样本中采集的受Fom感染的根部样本进行高覆盖度RNA测序,有助于鉴定植物体内差异表达基因的独特和重叠集合。这包括在植物体内上调的数据集中,特别是在DZA315中,与糖、蛋白质和植物细胞壁代谢、膜转运、养分吸收和氧化过程相关的蛋白质的富集。鉴定出了编码效应样蛋白的基因,包括尖孢镰刀菌番茄专化型木质部分泌蛋白(SIX)的同源物,以及基于预测分泌、小蛋白大小和高植物体内诱导表达的几个新的候选效应子。大多数候选效应子不包含已知的蛋白质结构域,但与主要来自其他尖孢镰刀菌专化型以及其他镰孢菌(茄病镰刀菌、藤仓镰刀菌、轮枝镰刀菌、禾谷镰刀菌和拟禾谷镰刀菌)以及同一类别的另一种萎蔫病原菌黄萎病菌属的预测蛋白具有高度相似性。总体而言,这表明这些新的候选效应子可能在镰孢菌和萎蔫病原菌的毒力中发挥重要作用。

结论

将植物体内高覆盖度RNA测序与真菌致病蛋白特征的知识相结合,有助于鉴定在抗性或易感蒺藜苜蓿宿主感染期间差异表达的致病相关基因和新的候选效应子。来自对任何豆类致病的尖孢镰刀菌专化型的首次深入植物体内转录组测序的知识,将有助于剖析许多重要豆类作物上的镰刀菌萎蔫病致病机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/585c/5094085/cb3d6af60a24/12864_2016_3192_Fig1_HTML.jpg

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