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利用表达序列标签分析探索游走性植物寄生线虫毁灭茎线虫的宿主寄生性。

Exploring the host parasitism of the migratory plant-parasitic nematode Ditylenchus destuctor by expressed sequence tags analysis.

机构信息

The Key Laboratory for Biology of Insect Pests and Plant Disease, Institute of Plant Protection, Chinese Academy of Agricultural Sciences, Beijing, China.

出版信息

PLoS One. 2013 Jul 29;8(7):e69579. doi: 10.1371/journal.pone.0069579. Print 2013.

Abstract

The potato rot nematode, Ditylenchus destructor, is a very destructive nematode pest on many agriculturally important crops worldwide, but the molecular characterization of its parasitism of plant has been limited. The effectors involved in nematode parasitism of plant for several sedentary endo-parasitic nematodes such as Heterodera glycines, Globodera rostochiensis and Meloidogyne incognita have been identified and extensively studied over the past two decades. Ditylenchus destructor, as a migratory plant parasitic nematode, has different feeding behavior, life cycle and host response. Comparing the transcriptome and parasitome among different types of plant-parasitic nematodes is the way to understand more fully the parasitic mechanism of plant nematodes. We undertook the approach of sequencing expressed sequence tags (ESTs) derived from a mixed stage cDNA library of D. destructor. This is the first study of D. destructor ESTs. A total of 9800 ESTs were grouped into 5008 clusters including 3606 singletons and 1402 multi-member contigs, representing a catalog of D. destructor genes. Implementing a bioinformatics' workflow, we found 1391 clusters have no match in the available gene database; 31 clusters only have similarities to genes identified from D. africanus, the most closely related species to D. destructor; 1991 clusters were annotated using Gene Ontology (GO); 1550 clusters were assigned enzyme commission (EC) numbers; and 1211 clusters were mapped to 181 KEGG biochemical pathways. 22 ESTs had similarities to reported nematode effectors. Interestedly, most of the effectors identified in this study are involved in host cell wall degradation or modification, such as 1,4-beta-glucanse, 1,3-beta-glucanse, pectate lyase, chitinases and expansin, or host defense suppression such as calreticulin, annexin and venom allergen-like protein. This result implies that the migratory plant-parasitic nematode D. destructor secrets similar effectors to those of sedentary plant nematodes. Finally we further characterized the two D. destructor expansin proteins.

摘要

马铃薯腐烂线虫是一种对全球许多重要农作物具有极强破坏性的寄生线虫,但目前对其寄生植物的分子特征了解有限。过去二十年来,人们已经鉴定并广泛研究了几种定居内寄生线虫(如大豆胞囊线虫、马铃薯金线虫和南方根结线虫)中参与寄生植物的效应子。马铃薯腐烂线虫作为一种迁移性植物寄生线虫,具有不同的取食行为、生命周期和宿主反应。比较不同类型植物寄生线虫的转录组和寄生组是更全面地了解植物线虫寄生机制的一种方法。我们采用从马铃薯腐烂线虫混合阶段 cDNA 文库中测序表达序列标签 (EST) 的方法。这是首次对马铃薯腐烂线虫 EST 进行研究。共获得 9800 条 EST,分为 5008 个聚类,包括 3606 个单基因和 1402 个多基因簇,代表了马铃薯腐烂线虫基因的目录。通过实施生物信息学工作流程,我们发现 1391 个聚类在现有基因数据库中没有匹配;31 个聚类仅与马铃薯腐烂线虫最接近的物种——非洲腐烂线虫中鉴定出的基因具有相似性;1991 个聚类使用基因本体论 (GO) 进行注释;1550 个聚类被分配了酶委员会 (EC) 编号;1211 个聚类映射到 181 个 KEGG 生化途径。22 条 EST 与报道的线虫效应子具有相似性。有趣的是,本研究中鉴定的大多数效应子都参与宿主细胞壁降解或修饰,如 1,4-β-葡聚糖酶、1,3-β-葡聚糖酶、果胶裂解酶、几丁质酶和伸展蛋白,或宿主防御抑制,如钙网蛋白、膜联蛋白和毒液过敏原样蛋白。这一结果表明,迁移性植物寄生线虫马铃薯腐烂线虫分泌与定居植物线虫相似的效应子。最后,我们进一步表征了两个马铃薯腐烂线虫伸展蛋白。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e090/3726699/51e147696fb8/pone.0069579.g003.jpg

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