Borkovich Katherine A, Alex Lisa A, Yarden Oded, Freitag Michael, Turner Gloria E, Read Nick D, Seiler Stephan, Bell-Pedersen Deborah, Paietta John, Plesofsky Nora, Plamann Michael, Goodrich-Tanrikulu Marta, Schulte Ulrich, Mannhaupt Gertrud, Nargang Frank E, Radford Alan, Selitrennikoff Claude, Galagan James E, Dunlap Jay C, Loros Jennifer J, Catcheside David, Inoue Hirokazu, Aramayo Rodolfo, Polymenis Michael, Selker Eric U, Sachs Matthew S, Marzluf George A, Paulsen Ian, Davis Rowland, Ebbole Daniel J, Zelter Alex, Kalkman Eric R, O'Rourke Rebecca, Bowring Frederick, Yeadon Jane, Ishii Chizu, Suzuki Keiichiro, Sakai Wataru, Pratt Robert
Department of Plant Pathology, University of California, Riverside, California 92521, USA. Katherine/
Microbiol Mol Biol Rev. 2004 Mar;68(1):1-108. doi: 10.1128/MMBR.68.1.1-108.2004.
We present an analysis of over 1,100 of the approximately 10,000 predicted proteins encoded by the genome sequence of the filamentous fungus Neurospora crassa. Seven major areas of Neurospora genomics and biology are covered. First, the basic features of the genome, including the automated assembly, gene calls, and global gene analyses are summarized. The second section covers components of the centromere and kinetochore complexes, chromatin assembly and modification, and transcription and translation initiation factors. The third area discusses genome defense mechanisms, including repeat induced point mutation, quelling and meiotic silencing, and DNA repair and recombination. In the fourth section, topics relevant to metabolism and transport include extracellular digestion; membrane transporters; aspects of carbon, sulfur, nitrogen, and lipid metabolism; the mitochondrion and energy metabolism; the proteasome; and protein glycosylation, secretion, and endocytosis. Environmental sensing is the focus of the fifth section with a treatment of two-component systems; GTP-binding proteins; mitogen-activated protein, p21-activated, and germinal center kinases; calcium signaling; protein phosphatases; photobiology; circadian rhythms; and heat shock and stress responses. The sixth area of analysis is growth and development; it encompasses cell wall synthesis, proteins important for hyphal polarity, cytoskeletal components, the cyclin/cyclin-dependent kinase machinery, macroconidiation, meiosis, and the sexual cycle. The seventh section covers topics relevant to animal and plant pathogenesis and human disease. The results demonstrate that a large proportion of Neurospora genes do not have homologues in the yeasts Saccharomyces cerevisiae and Schizosaccharomyces pombe. The group of unshared genes includes potential new targets for antifungals as well as loci implicated in human and plant physiology and disease.
我们对丝状真菌粗糙脉孢菌基因组序列所编码的约10000个预测蛋白质中的1100多个进行了分析。涵盖了粗糙脉孢菌基因组学和生物学的七个主要领域。首先,总结了基因组的基本特征,包括自动组装、基因预测和全局基因分析。第二部分涵盖了着丝粒和动粒复合体的组成部分、染色质组装和修饰,以及转录和翻译起始因子。第三个领域讨论了基因组防御机制,包括重复序列诱导点突变、基因沉默和减数分裂沉默,以及DNA修复和重组。在第四部分中,与代谢和转运相关的主题包括细胞外消化;膜转运蛋白;碳、硫、氮和脂质代谢的方面;线粒体和能量代谢;蛋白酶体;以及蛋白质糖基化、分泌和内吞作用。环境感知是第五部分的重点,涉及双组分系统;GTP结合蛋白;丝裂原活化蛋白、p21活化蛋白和生发中心激酶;钙信号传导;蛋白磷酸酶;光生物学;昼夜节律;以及热休克和应激反应。分析的第六个领域是生长和发育;它包括细胞壁合成、对菌丝极性重要的蛋白质、细胞骨架成分、细胞周期蛋白/细胞周期蛋白依赖性激酶机制、大分生孢子形成、减数分裂和有性生殖周期。第七部分涵盖了与动植物致病和人类疾病相关的主题。结果表明,粗糙脉孢菌的很大一部分基因在酿酒酵母和粟酒裂殖酵母中没有同源物。这些非共享基因包括抗真菌药物的潜在新靶点以及与人类和植物生理学及疾病相关的基因座。