Torriani Stefano F F, Goodwin Stephen B, Kema Gert H J, Pangilinan Jasmyn L, McDonald Bruce A
Plant Pathology Group, Institute of Integrative Biology, ETH Zurich/LFW, Universitätstrasse 2, CH-8092 Zurich, Switzerland.
Fungal Genet Biol. 2008 May;45(5):628-37. doi: 10.1016/j.fgb.2007.12.005. Epub 2007 Dec 23.
The mitochondrial genomes of two isolates of the wheat pathogen Mycosphaerella graminicola were sequenced completely and compared to identify polymorphic regions. This organism is of interest because it is phylogenetically distant from other fungi with sequenced mitochondrial genomes and it has shown discordant patterns of nuclear and mitochondrial diversity. The mitochondrial genome of M. graminicola is a circular molecule of approximately 43,960bp containing the typical genes coding for 14 proteins related to oxidative phosphorylation, one RNA polymerase, two rRNA genes and a set of 27 tRNAs. The mitochondrial DNA of M. graminicola lacks the gene encoding the putative ribosomal protein (rps5-like), commonly found in fungal mitochondrial genomes. Most of the tRNA genes were clustered with a gene order conserved with many other ascomycetes. A sample of 35 additional strains representing the known global mt diversity was partially sequenced to measure overall mitochondrial variability within the species. Little variation was found, confirming previous RFLP-based findings of low mitochondrial diversity. The mitochondrial sequence of M. graminicola is the first reported from the family Mycosphaerellaceae or the order Capnodiales. The sequence also provides a tool to better understand the development of fungicide resistance and the conflicting pattern of high nuclear and low mitochondrial diversity in global populations of this fungus.
对小麦病原体禾本科球腔菌(Mycosphaerella graminicola)的两个分离株的线粒体基因组进行了全序列测定,并进行比较以确定多态性区域。该生物体备受关注,因为它在系统发育上与其他已测序线粒体基因组的真菌距离较远,并且其核多样性和线粒体多样性呈现出不一致的模式。禾本科球腔菌的线粒体基因组是一个约43,960bp的环状分子,包含编码与氧化磷酸化相关的14种蛋白质、一种RNA聚合酶、两个rRNA基因以及一组27个tRNA的典型基因。禾本科球腔菌的线粒体DNA缺乏在真菌线粒体基因组中常见的假定核糖体蛋白(rps5-like)编码基因。大多数tRNA基因聚集在一起,其基因顺序与许多其他子囊菌一致。对另外35个代表已知全球线粒体多样性的菌株样本进行了部分测序,以测量该物种内的整体线粒体变异性。发现变异很少,证实了先前基于RFLP的线粒体低多样性研究结果。禾本科球腔菌的线粒体序列是首次从球腔菌科或煤炱目报道的。该序列还提供了一个工具,有助于更好地理解杀菌剂抗性的发展以及该真菌全球种群中高核多样性和低线粒体多样性的矛盾模式。