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Reproductive isolation between sympatric sister species,Mussaenda kwangtungensis and M. pubescens var. alba
Authors:Zhonglai Luo  Tingting Duan  Shuai Yuan  Shi Chen  Xiufeng Bai  Dianxiang Zhang
Affiliation:1.Key Laboratory of Plant Resources Conservation and Sustainable Utilization, South China Botanical Garden, the Chinese Academy of Sciences, Guangzhou, China;2.University of the Chinese Academy of Sciences, Beijing, China;3.Beneficial Insects Institute, Fujian Agriculture and Forestry University, Fuzhou, China;4.Department of Cell Biology, the Third Military Medical University, Chongqing, China
Abstract:Reproductive isolation de fi nes the biological species concept and plays a key role in the formation and maintenance of species. The relative contributions of different isolating stages has been suggested to be closely associated with phylogenetic relatedness. Few studies have focused on the relative contributions of pre- versus postzygotic mechanisms, and even fewer have been conducted under strict phylogenetic frameworks. Pre- and post-zygotic reproductive isolation stages have been investigated in the sister species Mussaenda kwangtungensis and M. pubescens var. alba. The two species have partly overlapping distribution ranges and fl owering times, while the principal pollinators differed strikingly for them, demonstrating strong pre-zygotic isolations. Natural hybrids were detected by simple sequence repeat markers and their maternal parents were identi fi ed based on chloroplast gene sequences. Five out of 81 individuals were suggested to be hybrids that fall into the categories F2, BC1, and BC2 by theNew Hybrids analysis. Interspeci fi c crossings resulted in signi fi cantly reduced fruit set and seed germination rates.Phylogenetic analysis revealed short Kimura-2-parameter distance between M. kwangtungensis and M. pubescens var.alba. These fi ndings strongly supported the hypothesis that for species with a closer phylogenetic relationship, prezygotic isolation plays an important part in limiting gene exchange in sympatric areas.
Keywords:Hybridization  microsatellites  Mussaenda  phylogenetic analysis  reproductive isolation
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