Thünen Torsten, Becker Yvonne, Cox Murray P, Ashrafi Samad
Institute for Crop and Soil Science, Julius Kühn Institute (JKI) - Federal Research Centre for Cultivated Plants, Bundesallee 58, 38116, Braunschweig, Germany.
Institute for Epidemiology and Pathogen Diagnostics, Julius Kühn Institute (JKI) - Federal Research Centre for Cultivated Plants, Messeweg 11/12, 38104, Braunschweig, Germany.
IMA Fungus. 2022 Feb 3;13(1):2. doi: 10.1186/s43008-022-00088-0.
Here we describe a new, haploid and stroma forming species within the genus Epichloë, as Epichloë scottii sp. nov. The fungus was isolated from Melica uniflora growing in Bad Harzburg, Germany. Phylogenetic reconstruction using a combined dataset of the tubB and tefA genes strongly support that E. scottii is a distinct species and the so far unknown ancestor species of the hybrid E. disjuncta. A distribution analysis showed a high infection rate in close vicinity of the initial sampling site and only two more spots with low infection rates. Genetic variations in key genes required for alkaloid production suggested that E. scottii sp. nov. might not be capable of producing any of the major alkaloids including ergot alkaloid, loline, indole-diterpene and peramine. All isolates and individuals found in the distribution analysis were identified as mating-type B explaining the lack of mature stromata during this study. We further release a telomere-to-telomere de novo assembly of all seven chromosomes and the mitogenome of E. scottii sp. nov.
在此,我们描述了一种新的、单倍体且能形成基质的内生真菌物种,命名为Epichloë scottii sp. nov.。该真菌从生长在德国巴特哈尔茨堡的单花臭草中分离得到。利用tubB和tefA基因的组合数据集进行的系统发育重建有力地支持了E. scottii是一个独特的物种,并且是杂交种E. disjuncta迄今未知的祖先物种。分布分析表明,在初始采样点附近感染率很高,仅有另外两个感染率较低的地点。生物碱生产所需关键基因的遗传变异表明,新物种E. scottii sp. nov.可能无法产生包括麦角生物碱、洛林碱、吲哚二萜和过胺在内的任何主要生物碱。分布分析中发现的所有分离株和个体均被鉴定为交配型B,这解释了本研究期间未出现成熟基质的原因。我们还公布了E. scottii sp. nov.所有七条染色体的端粒到端粒的从头组装以及线粒体基因组。