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Rapid radiations of both kiwifruit hybrid lineages and their parents shed light on a two-layer mode of species diversification.

Authors :
Liu, Yifei
Li, Dawei
Zhang, Qiong
Song, Chi
Zhong, Caihong
Zhang, Xudong
Wang, Ying
Yao, Xiaohong
Wang, Zupeng
Zeng, Shaohua
Guo, Yangtao
Wang, Shuaibin
Li, Xinwei
Li, Li
Liu, Chunyan
McCann, Honour C.
He, Weiming
Niu, Yan
Chen, Min
Du, Liuwen
Source :
New Phytologist. Jul2017, Vol. 215 Issue 2, p877-890. 14p.
Publication Year :
2017

Abstract

Reticulate speciation caused by interspecific hybridization is now recognized as an important mechanism in the creation of biological diversity. However, depicting the patterns of phylogenetic networks for lineages that have undergone interspecific gene flow is challenging., Here we sequenced 25 taxa representing natural diversity in the genus Actinidia with an average mapping depth of 26× on the reference genome to reconstruct their reticulate history., We found evidence, including significant gene tree discordance, cytonuclear conflicts, and changes in genome-wide heterozygosity across taxa, collectively supporting extensive reticulation in the genus. Furthermore, at least two separate parental species pairs were involved in the repeated origin of the hybrid lineages, in some of which a further phase of syngameon was triggered. On the basis of the elucidated hybridization relationships, we obtained a highly resolved backbone phylogeny consisting of taxa exhibiting no evidence of hybrid origin. The backbone taxa have distinct demographic histories and are the product of recent rounds of rapid radiations via sorting of ancestral variation under variable climatic and ecological conditions., Our results suggest a mode for consecutive plant diversification through two layers of radiations, consisting of the rapid evolution of backbone lineages and the formation of hybrid swarms derived from these lineages. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
0028646X
Volume :
215
Issue :
2
Database :
Academic Search Index
Journal :
New Phytologist
Publication Type :
Academic Journal
Accession number :
123692722
Full Text :
https://doi.org/10.1111/nph.14607