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多指皮果衣属(茶渍纲,子囊菌门)蓝藻地衣特异性的宏观进化

Macroevolution of Specificity in Cyanolichens of the Genus Peltigera Section Polydactylon (Lecanoromycetes, Ascomycota).

作者信息

Magain N, Miadlikowska J, Goffinet B, Sérusiaux E, Lutzoni F

机构信息

Evolution and Conservation Biology, University of Liège, Liège, Belgium.

Department of Biology, Duke University, Durham, NC, USA.

出版信息

Syst Biol. 2017 Jan 1;66(1):74-99. doi: 10.1093/sysbio/syw065.

Abstract

Patterns of specificity among symbiotic partners are key to a comprehensive understanding of the evolution of symbiotic systems. Specificity of mutualistic partners, within a widespread monophyletic group for which all species are sampled has rarely been explored. Here, we assess the level of specificity between the cosmopolitan lichen-forming fungus (mycobiont) from the genus Peltigera, section Polydactylon, and its cyanobacterial partner Nostoc (cyanobiont). The mycobiont and cyanobiont phylogenies are inferred from five nuclear loci and the rbcLX region, respectively. These sequences were obtained from 206 lichen thalli, representing ca. 40 closely related Peltigera species sampled worldwide, doubling the number of known species in this group. We found a broad spectrum of specificity for both partners ranging from strict specialists to generalists. Overall, mycobionts are more specialized than cyanobionts by associating mostly with one or a few Nostoc phylogroups, whereas most cyanobionts associate frequently with several Peltigera species. Specialist mycobionts are older than generalists, supporting the hypothesis that specialization of mycobionts to one or few cyanobionts, is favored through time in geographic areas where species have been established for long periods of time. The relatively recent colonization of a new geographic area (Central and South America) by members of section Polydactylon is associated with a switch to a generalist pattern of association and an increased diversification rate by the fungal partner, suggesting that switches to generalism are rare events that are advantageous in new environments. We detected higher genetic diversity in generalist mycobionts. We also found that Peltigera species specialized on a single Nostoc phylogroup have narrower geographical distributions compared with generalist species.

摘要

共生伙伴之间的特异性模式是全面理解共生系统进化的关键。在一个广泛的单系类群中,对所有物种进行采样的互利共生伙伴的特异性很少被研究。在这里,我们评估了多指裂叶属地衣形成真菌(菌共生体)与其蓝藻伙伴念珠藻(蓝藻共生体)之间的特异性水平。分别从五个核基因座和rbcLX区域推断菌共生体和蓝藻共生体的系统发育。这些序列来自206个地衣叶状体,代表了全球范围内采样的约40个密切相关的多指裂叶属物种,使该类群中已知物种的数量增加了一倍。我们发现两个伙伴都具有广泛的特异性范围,从严格的专性物种到兼性物种。总体而言,菌共生体比蓝藻共生体更具特异性,因为它们大多与一个或几个念珠藻系统发育类群相关联,而大多数蓝藻共生体经常与多个多指裂叶属物种相关联。专性菌共生体比兼性菌共生体出现得更早,这支持了这样一种假设,即随着时间的推移,在物种长期存在的地理区域中,菌共生体对一种或少数蓝藻共生体的特化是有利的。多指裂叶属成员对新地理区域(中美洲和南美洲)的相对较新的定殖与向兼性关联模式的转变以及真菌伙伴多样化率的增加有关,这表明向兼性的转变是罕见事件,在新环境中是有利的。我们在兼性菌共生体中检测到更高的遗传多样性。我们还发现,与兼性物种相比,专门与单个念珠藻系统发育类群相关的多指裂叶属物种的地理分布更窄。

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