K Zhang, M Sandoval-Denis, H Kandemir, N Yilmaz, J Z Groenewald, F Roets, M de J Yáñez-Morales, M J Wingfield, P W Crous
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Only 16 species of <i>Bisifusarium</i> have been described to date, and this study sought to re-evaluate these taxa by examining 116 <i>Bisifusarium</i> isolates from the culture collection of the Westerdijk Fungal Biodiversity Institute in Utrecht, The Netherlands. A multi-gene phylogenetic analysis using partial nucleotide sequences of the translation elongation factor 1-alpha (<i>tef1</i>), partial RNA polymerase II second largest subunit (<i>rpb2</i>), the 5.8S nrDNA with its flanking intergenic spacer regions (ITS), and partial β-tubulin (<i>tub2</i>) genes resolved 25 phylogenetic lineages. Further evaluation of culture and morphological characters, and host-substrates, confirmed eight of these clades as novel taxa that are formally described here. In addition, two putative novel species were identified but not described due to limited available data. We provide the morphological descriptions and photographic illustrations for <i>B. hedylamarriae</i> and <i>B. lovelliae</i>, which were formerly known only from their DNA data. This study significantly increases the number of species in <i>Bisifusarium</i> and provides a crucial foundation for future studies to elucidate the ecology and evolutionary relationships within this expanding genus. <b>Citation:</b> Zhang K, Sandoval-Denis M, Kandemir H, Yilmaz N, Groenewald JZ, Roets F, Yáñez-Morales M de J, Wingfield MJ, Crous PW (2025). Taxonomic revision of <i>Bifusarium</i> (<i>Nectriaceae</i>). <i>Persoonia</i> <b>54</b>: 197-223. doi: 10.3114/persoonia.2025.54.06.</p>","PeriodicalId":20014,"journal":{"name":"Persoonia","volume":"54 ","pages":"197-223"},"PeriodicalIF":7.3000,"publicationDate":"2025-06-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC12308283/pdf/","citationCount":"0","resultStr":"{\"title\":\"Taxonomic revision of <i>Bisifusarium</i> (<i>Nectriaceae</i>).\",\"authors\":\"K Zhang, M Sandoval-Denis, H Kandemir, N Yilmaz, J Z Groenewald, F Roets, M de J Yáñez-Morales, M J Wingfield, P W Crous\",\"doi\":\"10.3114/persoonia.2025.54.06\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Species of <i>Bisifusarium</i> (previously the <i>Fusarium dimerum</i> species complex) have been associated with cheese fermentation and a wide range of opportunistic human infections, but they are generally regarded as saprotrophs. <i>Bisifusarium</i> spp. are also commonly isolated from soils and tissues of plants growing in arid climates. The genus is typically characterized by its distinct pionnotal growth in culture, and typically very short, 0-2(-3)-septate macroconidia, produced in sporodochia or on lateral phialidic hyphal pegs. Only 16 species of <i>Bisifusarium</i> have been described to date, and this study sought to re-evaluate these taxa by examining 116 <i>Bisifusarium</i> isolates from the culture collection of the Westerdijk Fungal Biodiversity Institute in Utrecht, The Netherlands. A multi-gene phylogenetic analysis using partial nucleotide sequences of the translation elongation factor 1-alpha (<i>tef1</i>), partial RNA polymerase II second largest subunit (<i>rpb2</i>), the 5.8S nrDNA with its flanking intergenic spacer regions (ITS), and partial β-tubulin (<i>tub2</i>) genes resolved 25 phylogenetic lineages. Further evaluation of culture and morphological characters, and host-substrates, confirmed eight of these clades as novel taxa that are formally described here. 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引用次数: 0
摘要
双歧镰刀菌(以前称为二角镰刀菌)与奶酪发酵和广泛的机会性人类感染有关,但它们通常被认为是腐生菌。双镰刀菌通常也从生长在干旱气候的植物的土壤和组织中分离出来。该属的典型特征是其在培养中具有明显的先头生长,并且通常非常短,0-2(-3)分隔的大分生孢子,产生于孢子体或侧边的亲性菌丝柱上。迄今为止,只有16种Bisifusarium被描述,本研究试图通过检查荷兰乌得勒支Westerdijk真菌生物多样性研究所培养的116株Bisifusarium分离株来重新评估这些分类群。利用翻译延伸因子1- α (tef1)、部分RNA聚合酶II第二大亚基(rpb2)、5.8S nrDNA及其侧翼基因间间隔区(its)和部分β-微管蛋白(tub2)基因的部分核苷酸序列进行多基因系统发育分析,确定了25个系统发育谱系。对培养和形态特征以及宿主-基质的进一步评估证实,其中8个分支是本文正式描述的新分类群。此外,还发现了两个假定的新种,但由于现有资料有限,没有对其进行描述。我们提供了B. hedylamarriae和B. lovelliae的形态描述和照片插图,这两种植物以前只从它们的DNA数据中得知。该研究显著增加了双菜属植物的种类数量,为进一步研究这一不断扩大的属的生态学和进化关系奠定了重要基础。引用本文:张科,Sandoval-Denis M, Kandemir H, Yilmaz N, Groenewald JZ, Roets F, Yáñez-Morales M de J, Wingfield MJ, Crous PW(2025)。标题双歧花属植物的分类订正。《人物》54:197-223。doi: 10.3114 / persoonia.2025.54.06。
Species of Bisifusarium (previously the Fusarium dimerum species complex) have been associated with cheese fermentation and a wide range of opportunistic human infections, but they are generally regarded as saprotrophs. Bisifusarium spp. are also commonly isolated from soils and tissues of plants growing in arid climates. The genus is typically characterized by its distinct pionnotal growth in culture, and typically very short, 0-2(-3)-septate macroconidia, produced in sporodochia or on lateral phialidic hyphal pegs. Only 16 species of Bisifusarium have been described to date, and this study sought to re-evaluate these taxa by examining 116 Bisifusarium isolates from the culture collection of the Westerdijk Fungal Biodiversity Institute in Utrecht, The Netherlands. A multi-gene phylogenetic analysis using partial nucleotide sequences of the translation elongation factor 1-alpha (tef1), partial RNA polymerase II second largest subunit (rpb2), the 5.8S nrDNA with its flanking intergenic spacer regions (ITS), and partial β-tubulin (tub2) genes resolved 25 phylogenetic lineages. Further evaluation of culture and morphological characters, and host-substrates, confirmed eight of these clades as novel taxa that are formally described here. In addition, two putative novel species were identified but not described due to limited available data. We provide the morphological descriptions and photographic illustrations for B. hedylamarriae and B. lovelliae, which were formerly known only from their DNA data. This study significantly increases the number of species in Bisifusarium and provides a crucial foundation for future studies to elucidate the ecology and evolutionary relationships within this expanding genus. Citation: Zhang K, Sandoval-Denis M, Kandemir H, Yilmaz N, Groenewald JZ, Roets F, Yáñez-Morales M de J, Wingfield MJ, Crous PW (2025). Taxonomic revision of Bifusarium (Nectriaceae). Persoonia54: 197-223. doi: 10.3114/persoonia.2025.54.06.
期刊介绍:
Persoonia aspires to publish papers focusing on the molecular systematics and evolution of fungi. Additionally, it seeks to advance fungal taxonomy by employing a polythetic approach to elucidate the genuine phylogeny and relationships within the kingdom Fungi. The journal is dedicated to disseminating high-quality papers that unravel both known and novel fungal taxa at the DNA level. Moreover, it endeavors to provide fresh insights into evolutionary processes and relationships. The scope of papers considered encompasses research articles, along with topical and book reviews.