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感染豆科植物的碳水化合物活性酶的全基因组注释、比较和功能基因组学

Genome-wide annotation, comparison and functional genomics of carbohydrate-active enzymes in legumes infecting .

作者信息

Roy Abhijeet, Jayaprakash Aiswarya, Rajeswary T Raja, Annamalai A, Lakshmi Ptv

机构信息

Centre for Bioinformatics, School of Life Sciences, Pondicherry University, Puducherry, India.

PG and Research Department of Botany, Arignar Anna Government Arts College, Villupuram, India.

出版信息

Mycology. 2020 Jan 4;11(1):56-70. doi: 10.1080/21501203.2019.1706656. eCollection 2020.

Abstract

Fusarium wilt caused by soil borne ascomycetes fungi which has host-specific forms known as  (ff. spp.), apparently requires plant cell wall degrading enzymes (PCWDE) for successful invasion. In this study, 12  ff. spp. were taken for genome-wide annotation and comparative analysis of CAZymes, with an assessment of secretory PCWDE and orthologues identification in the three legumes infecting ff. spp.  Further, transcriptomic analysis in two legumes infecting ff. spp. using publically available data was also done. The comparative studies showed Glycoside hydrolase (GH) families to be abundant and Principle Component Analysis (PCA) formed two distinct clusters of ff. spp. based on the CAZymes modules and families. Nearly half of the CAZymes in the legumes infecting ff. spp. coded for signal peptides. The orthologue clusters of secretory CAZymes common in all the three legume infecting ff. spp. mostly belonged to families of AA9, GH28, CE5 and PL1 and the expression analysis revealed the abundant PCWDE were differentially expressed in these legumes infecting ff. spp.  Therefore, this study gave an insight into the distribution of CAZymes especially extracellular PCWDE in legumes infecting ff. spp. with further shedding light onto some of the key PCWDE families through differential expression analysis.

摘要

由土壤传播的子囊菌真菌引起的枯萎病,具有宿主特异性形式,称为(ff. spp.),显然需要植物细胞壁降解酶(PCWDE)才能成功入侵。在本研究中,选取了12个ff. spp. 进行碳水化合物活性酶(CAZyme)的全基因组注释和比较分析,并评估了感染ff. spp. 的三种豆科植物中分泌性PCWDE和直系同源物的鉴定。此外,还利用公开数据对两种感染ff. spp. 的豆科植物进行了转录组分析。比较研究表明糖苷水解酶(GH)家族丰富,主成分分析(PCA)基于CAZyme模块和家族形成了两个不同的ff. spp. 簇。感染ff. spp. 的豆科植物中近一半的CAZyme编码信号肽。在所有三种感染ff. spp. 的豆科植物中常见的分泌性CAZyme直系同源物簇大多属于AA9、GH28、CE5和PL1家族,表达分析表明,丰富的PCWDE在这些感染ff. spp. 的豆科植物中差异表达。因此,本研究深入了解了CAZyme的分布,特别是感染ff. spp. 的豆科植物中的细胞外PCWDE,并通过差异表达分析进一步揭示了一些关键的PCWDE家族。

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