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New insight into the species diversity and life cycles of rust fungi (Pucciniales) affecting bioenergy switchgrass (Panicum virgatum) in the Eastern and Central United States

机译:对影响东部和中南生物能源Expresgrass(Panicum Virgatum)生物能源(Punciniales)的物种多样性和生命周期的新洞察

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Research was undertaken to clarify the taxonomic identity of leaf rust (Pucciniales) fungi on bioenergy switchgrass in the Eastern and Central U.S. We integrated internal transcribed spacer 2 (ITS2) and partial 28S ribosomal RNA gene sequence data from collections taken from cultivated switchgrass and herbarium specimens, including purported aecial and telial states of Puccinia graminicola and Puccinia pammelii. Maximum likelihood and Bayesian analyses revealed four monophyletic clades: Puccinia emaculata sensu stricto (s.s.), P. pammelii, P. graminicola, and Puccinia novopanici. Results also indicated that P. emaculata s.s. was not affecting cultivated, bioenergy switchgrass. Aecidium pammelii and P. pammelii were distinct phylogenetically from P. emaculata s.s. and grouped within a well-supported clade, demonstrating aecial-telial host alternation for P. pammelii between Euphorbia corollata and switchgrass. Aecidium stillingiae on queen's delight (Stillingia sylvatica)-a purported aecial state host for P. graminicola-shared identical sequences with the recently described species Puccinia pascua. The latter fungus, however, was recovered within a subclade of P. graminicola. Hence, queen's delight likely is not an aecial host to P. graminicola s.s. Additional molecular studies are warranted to determine species boundaries within the P. graminicola complex. The majority of contemporary collections from cultivated switchgrass were recognized as P. novopanici. Collectively, bioenergy switchgrass is host to at least three phylogenetically distinct species, presenting a significant challenge to the future selection and breeding of switchgrass with improved rust resistance.
机译:研究了研究,阐明了在东部和中南部的生物能源ExpressGrass中叶锈病(淘uliniales)真菌的分类物质特性我们综合了内部转录的间隔2(ITS2)和部分28S核糖体RNA基因序列数据来自培养的ExpressGrass和Herbarium标本的收集中,包括据称的普兴葡聚糖和普科西亚帕昔尼科和邦昔昔逊毒素和电信态。最大可能性和贝叶斯分析显示出四种单胞水粉:普昔氨嘧啶emaculata sensu stricto(S.),P.Pammelii,P. Graminicola和Puccinia NovoPanici。结果还表明,P.MaCulata S.S.没有影响栽培,生物能源的expressgrass。 EeciDium pammelii和P.Pammelii从P.Moaculata S.S.不同于文化学源性。并在一个受良好的钢板中分组,展示了在大戟属corollat​​a和switchgrass之间的p. pammelii的acial-telim宿主交替。艾西普·斯蒂林岛对女王的喜悦(Stillingia Sylvatica)-A声称的P.Graminicola共享相同序列的AECIAL状态宿主与最近描述的物种Puccinia pascua。然而,后一种真菌在P.禾本科的亚洲核查中被恢复。因此,女王的喜悦可能不是P. Graminicola S.S的宿主。需要额外的分子研究以确定在葡萄兰蛋白复合物中的物种界限。来自栽培ExpressGrass的大多数当代系列被认为是P. NovoPanici。集体,生物能源ExpressGrass是至少三种系统源性不同物种的宿主,对ExpressGrass的未来选择和培育具有改善的耐防锈性,对其进行了重大挑战。

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