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对球腔菌属厚垣孢子的比较转录组学研究揭示了锈菌生活史这一特定阶段保守的遗传程序。

Comparative transcriptomics of Gymnosporangium spp. teliospores reveals a conserved genetic program at this specific stage of the rust fungal life cycle.

机构信息

The Key Laboratory for Silviculture and Conservation of Ministry of Education, Beijing Forestry University, Beijing, 100083, China.

State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101, China.

出版信息

BMC Genomics. 2019 Oct 9;20(1):723. doi: 10.1186/s12864-019-6099-x.

Abstract

BACKGROUND

Gymnosporangium spp. are fungal plant pathogens causing rust disease and most of them are known to infect two different host plants (heteroecious) with four spore stages (demicyclic). In the present study, we sequenced the transcriptome of G. japonicum teliospores on its host plant Juniperus chinensis and we performed comparison to the transcriptomes of G. yamadae and G. asiaticum at the same life stage, that happens in the same host but on different organs.

RESULTS

Functional annotation for the three Gymnosporangium species showed the expression of a conserved genetic program with the top abundant cellular categories corresponding to energy, translation and signal transduction processes, indicating that this life stage is particularly active. Moreover, the survey of predicted secretomes in the three Gymnosporangium transcriptomes revealed shared and specific genes encoding carbohydrate active enzymes and secreted proteins of unknown function that could represent candidate pathogenesis effectors. A transcript encoding a hemicellulase of the glycoside hydrolase 26 family, previously identified in other rust fungi, was particularly highly expressed suggesting a general role in rust fungi. The comparison between the transcriptomes of the three Gymnosporangium spp. and selected Pucciniales species in different taxonomical families allowed to identify lineage-specific protein families that may relate to the biology of teliospores in rust fungi. Among clustered gene families, 205, 200 and 152 proteins were specifically identified in G. japonicum, G. yamadae and G. asiaticum, respectively, including candidate effectors expressed in teliospores.

CONCLUSIONS

This comprehensive comparative transcriptomics study of three Gymnosporangium spp. identified gene functions and metabolic pathways particularly expressed in teliospores, a stage of the life cycle that is mostly overlooked in rust fungi. Secreted protein encoding transcripts expressed in teliospores may reveal new candidate effectors related to pathogenesis. Although this spore stage is not involved in host plant infection but in the production of basidiospores infecting plants in the Amygdaloideae, we speculate that candidate effectors may be expressed as early as the teliospore stage for preparing further infection by basidiospores.

摘要

背景

球腔菌属真菌是引起锈病的植物病原体,其中大多数已知可感染两种不同的宿主植物(异宿主),并经历四个孢子阶段(半循环)。在本研究中,我们对其在宿主植物 Juniperus chinensis 上的冬孢子进行了转录组测序,并与同一生理阶段、在同一宿主但不同器官上发生的 Gymnosporangium yamadae 和 G. asiaticum 的转录组进行了比较。

结果

对三种球腔菌的功能注释表明,存在一个保守的遗传程序,最丰富的细胞类别对应于能量、翻译和信号转导过程,表明该生命阶段特别活跃。此外,对三种球腔菌转录组中预测分泌组的调查揭示了具有共同和特定基因的碳水化合物活性酶和未知功能的分泌蛋白,这些基因可能代表候选致病性效应子。一个编码糖苷水解酶 26 家族半纤维素酶的转录本在其他锈菌中被特别高表达,这表明它在锈菌中具有普遍作用。三种球腔菌的转录组与不同分类家族的 Pucciniales 物种的比较,鉴定了与锈菌冬孢子生物学相关的谱系特异性蛋白家族。在聚类基因家族中,G. japonicum、G. yamadae 和 G. asiaticum 分别特异性鉴定出 205、200 和 152 个蛋白,其中包括在冬孢子中表达的候选效应子。

结论

这项对三种球腔菌的综合比较转录组学研究,鉴定了在冬孢子中特别表达的基因功能和代谢途径,而冬孢子是锈菌生命周期中大部分被忽视的阶段。在冬孢子中表达的分泌蛋白编码转录本可能揭示与发病机制相关的新候选效应子。尽管这个孢子阶段不涉及宿主植物的感染,但涉及担子孢子对 Amygdaloideae 植物的感染,我们推测候选效应子可能早在担子孢子阶段就开始表达,为进一步的感染做准备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/043b/6785864/381fe0439cd0/12864_2019_6099_Fig1_HTML.jpg

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