a Laboratory of Enzymology and Recombinant DNA Technology, Department of Microbiology , Maharshi Dayanand University , Rohtak , Haryana , India.
Crit Rev Biotechnol. 2016 Aug;36(4):743-59. doi: 10.3109/07388551.2015.1015959. Epub 2015 Feb 27.
The genome sequences provide a first glimpse into the genomic basis of the biological diversity of filamentous fungi and yeast. The genome sequence of the budding yeast, Saccharomyces cerevisiae, with a small genome size, unicellular growth, and rich history of genetic and molecular analyses was a milestone of early genomics in the 1990s. The subsequent completion of fission yeast, Schizosaccharomyces pombe and genetic model, Neurospora crassa initiated a revolution in the genomics of the fungal kingdom. In due course of time, a substantial number of fungal genomes have been sequenced and publicly released, representing the widest sampling of genomes from any eukaryotic kingdom. An ambitious genome-sequencing program provides a wealth of data on metabolic diversity within the fungal kingdom, thereby enhancing research into medical science, agriculture science, ecology, bioremediation, bioenergy, and the biotechnology industry. Fungal genomics have higher potential to positively affect human health, environmental health, and the planet's stored energy. With a significant increase in sequenced fungal genomes, the known diversity of genes encoding organic acids, antibiotics, enzymes, and their pathways has increased exponentially. Currently, over a hundred fungal genome sequences are publicly available; however, no inclusive review has been published. This review is an initiative to address the significance of the fungal genome-sequencing program and provides the road map for basic and applied research.
基因组序列为丝状真菌和酵母的生物多样性的基因组基础提供了初步的了解。出芽酵母酿酒酵母的基因组序列,其基因组大小较小,单细胞生长,并且具有丰富的遗传和分子分析历史,是 20 世纪 90 年代早期基因组学的里程碑。随后完成的裂殖酵母 Schizosaccharomyces pombe 和遗传模式 Neurospora crassa 引发了真菌王国基因组学的革命。随着时间的流逝,大量的真菌基因组已被测序并公开发布,代表了来自任何真核生物界的最广泛的基因组采样。雄心勃勃的基因组测序计划提供了有关真菌界代谢多样性的大量数据,从而增强了对医学科学,农业科学,生态学,生物修复,生物能源和生物技术产业的研究。真菌基因组学具有更大的潜力可以积极影响人类健康,环境卫生和星球储存的能源。随着测序真菌基因组的显著增加,编码有机酸,抗生素,酶及其途径的基因的已知多样性呈指数增长。目前,有一百多个真菌基因组序列可供公开使用;但是,尚未发表全面的综述。本综述旨在阐明真菌基因组测序计划的意义,并为基础和应用研究提供路线图。