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首页> 外文期刊>Mycologia >Three new phylogenetic and biological Neurospora species: N. hispaniola, N. metzenbergii and N. perkinsii
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Three new phylogenetic and biological Neurospora species: N. hispaniola, N. metzenbergii and N. perkinsii

机译:三种新的系统发育和生物学神经孢菌种:西班牙猪笼草,梅赞贝斯猪笼草和珀金斯猪笼草

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摘要

The recent recognition of provisional Neurospora phylogenetic species (PS) 1-3 gave LIS the opportunity to compare genetic isolation, which underlies phylogenetic species recognition (PSR), with reproductive isolation as criteria for recognizing new species. This investigation involved first finding new individuals of PS 1-3 from a search of the Perkins culture collection, then assessing genetic isolation by PSR for old and new members of PS 1-3 and finally comparing species recognition by genetic isolation as determined by PSR to species recognition by reproductive isolation as determined by biological species recognition (BSR) and geographic distribution. To aid the search for additional members of the PS we used the genetic variation originally used to discover Neurospora PS 1-3 to easily distinguish members of Neurospora PS 1-3 from the closely related species N. crassa and N intermedia. To increase our chance of success the analysis was performed on N crassa and N. intermedia isolates that were either not. clearly assignable to species by BSR rising tester strains or were from the same geographic locations as the known members of PS1-3. Eleven new members of Neurospora PS 1-3 were identified: one new PS1, nine rim, PS2 and one new PS3. To complement PSR we investigated reproductive isolation with BSR in PS 1-3 and the two other most closely related species, N. intermedia and N. crassa, with intraspecific and interspecific crosses. PS1 and PS2 appear reproductively isolated because they successfully mated intraspecifically and not interspecifically. PS3 isolates successfully crossed with other PS3 isolates, however they also successfully crossed with X crassa, as previously reported, indicating that genetic isolation can precede reproductive isolation. We compared phylogenetic, mating and geographical data to challenge the use of PSR as the main criterion in the formal description of species and, having failed to discredit the approach, describe the new species, N. hispaniola. (PS1), N. metzenbergii (PS2) and N perkinsii (PS3).
机译:最近对临时神经孢子系统发生种(PS)1-3的识别使LIS有机会比较遗传分离,该分离是系统发生种识别(PSR)的基础,生殖分离是识别新物种的标准。这项调查包括首先从Perkins文化收藏集中找到PS 1-3的新个体,然后评估PSR对PS 1-3的新老成员的遗传分离,最后比较通过PSR确定的遗传分离对物种的识别。通过生物物种识别(BSR)和地理分布确定的生殖隔离来识别物种。为了帮助寻找PS的其他成员,我们使用了最初用于发现Neurospora PS 1-3的遗传变异,以容易地将Neurospora PS 1-3的成员与紧密相关的物种N. crassa和N intermedia区别开。为了增加我们获得成功的机会,对不存在的N crassa和中间猪笼草进行了分析。 BSR上升的测试菌株清楚地将其归为物种,或者与PS1-3的已知成员来自相同的地理位置。确定了Neurospora PS 1-3的11个新成员:1个新PS1、9个边缘,PS2和1个新PS3。为了补充PSR,我们研究了PS 1-3和其他两个最密切相关的物种:中间猪笼草和猪笼草的种间和种间杂交,用BSR进行生殖隔离。 PS1和PS2似乎是繁殖分离的,因为它们在种内成功地交配,而在种间却不成功。 PS3分离株成功地与其他PS3分离株杂交,但是它们也成功与X crassa杂交,如先前报道的那样,表明遗传分离可以先于生殖分离。我们比较了系统发育,交配和地理数据,以质疑使用PSR作为物种正式描述中的主要标准,并且在未能抹黑该方法的情况下,描述了新物种西班牙种猪笼草。 (PS1),N。metzenbergii(PS2)和N perkinsii(PS3)。

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