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Genome analysis of medicinal Ganoderma spp. with plant-pathogenic and saprotrophic life-styles

机译:药用灵芝的基因组分析。具有植物致病和腐生的生活方式

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摘要

Ganoderma is a fungal genus belonging to the Ganodermataceae family and Polyporales order. Plant-pathogenic species in this genus can cause severe diseases (stem, butt, and root rot) in economically important trees and perennial crops, especially in tropical countries. Ganoderma species are white rot fungi and have ecological importance in the breakdown of woody plants for nutrient mobilization. They possess effective machineries of lignocellulose-decomposing enzymes useful for bioenergy production and bioremediation. In addition, the genus contains many important species that produce pharmacologically active compounds used in health food and medicine. With the rapid adoption of next-generation DNA sequencing technologies, whole genome sequencing and systematic transcriptome analyses become affordable approaches to identify an organism's genes. In the last few years, numerous projects have been initiated to identify the genetic contents of several Ganoderma species, particularly in different strains of Ganoderma lucidum. In November 2013, eleven whole genome sequencing projects for Ganoderma species were registered in international databases, three of which were already completed with genomes being assembled to high quality. In addition to the nuclear genome, two mitochondrial genomes for Ganoderma species have also been reported. Complementing genome analysis, four transcriptome studies on various developmental stages of Ganoderma species have been performed. Information obtained from these studies has laid the foundation for the identification of genes involved in biological pathways that are critical for understanding the biology of Ganoderma, such as the mechanism of pathogenesis, the biosynthesis of active components, life cycle and cellular development, etc. With abundant genetic information becoming available, a few centralized resources have been established to disseminate the knowledge and integrate relevant data to support comparative genomic analyses of Ganoderma species. The current review carries out a detailed comparison of the nuclear genomes, mitochondrial genomes and transcriptomes from several Ganoderma species. Genes involved in biosynthetic pathways such as CYP450 genes and in cellular development such as matA and matB genes are characterized and compared in detail, as examples to demonstrate the usefulness of comparative genomic analyses for the identification of critical genes. Resources needed for future data integration and exploitation are also discussed. (C) 2014 Elsevier Ltd. All rights reserved.
机译:灵芝是属于灵芝科和猪por目的真菌属。该属的植物致病物种会在经济上重要的树木和多年生作物中引起严重的疾病(茎,屁股和根腐病),尤其是在热带国家。灵芝物种是白腐真菌,在破坏木本植物以动员营养方面具有生态重要性。它们具有可用于生物能源生产和生物修复的木质纤维素分解酶的有效装置。另外,该属包含许多重要的种类,这些种类产生用于保健食品和药品的药理活性化合物。随着下一代DNA测序技术的迅速采用,全基因组测序和系统的转录组分析已成为鉴定生物体基因的负担得起的方法。在过去的几年中,已经启动了许多项目来鉴定几种灵芝物种的遗传含量,特别是在灵芝不同菌株中的遗传含量。 2013年11月,在国际数据库中注册了11个针对灵芝物种的全基因组测序项目,其中三个已完成,并且基因组已组装成高质量。除了核基因组,还报道了灵芝物种的两个线粒体基因组。作为基因组分析的补充,已经完成了关于灵芝物种各个发育阶段的四个转录组研究。从这些研究中获得的信息为鉴定参与生物学途径的基因奠定了基础,这些基因对于理解灵芝的生物学至关重要,例如发病机理,活性成分的生物合成,生命周期和细胞发育等。丰富的遗传信息变得可用,建立了一些集中的资源来传播知识并整合相关数据以支持灵芝物种的比较基因组分析。当前的审查对几种灵芝物种的核基因组,线粒体基因组和转录组进行了详细的比较。表征并详细比较了涉及生物合成途径的基因(例如CYP450基因)和参与细胞发育的基因(例如matA和matB基因),以举例说明比较基因组分析对鉴定关键基因的有用性。还讨论了未来数据集成和开发所需的资源。 (C)2014 Elsevier Ltd.保留所有权利。

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