Spiranthes hachijoensis (Orchidaceae), a new species within the S. sinensis species complex in Japan, based on morphological, phylogenetic, and ecological evidence

被引:0
|
作者
Kenji Suetsugu
Shun K. Hirota
Hiroshi Hayakawa
Shohei Fujimori
Masayuki Ishibashi
Tian-Chuan Hsu
Yoshihisa Suyama
机构
[1] Kobe University,Department of Biology, Graduate School of Science
[2] Institute for Advanced Research,Field Science Center, Graduate School of Agricultural Science
[3] Kobe University,Botanical Gardens
[4] Tohoku University,Graduate School of Life and Environmental Sciences
[5] Osaka Metropolitan University,Botanical Garden Division
[6] Museum of Natural and Environmental History,undefined
[7] University of Tsukuba,undefined
[8] Taiwan Forestry Research Institute,undefined
来源
Journal of Plant Research | 2023年 / 136卷
关键词
Integrative taxonomy; Orchidaceae; Reproductive isolation; SNP data; Speciation; Species delimitation; species complex;
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中图分类号
学科分类号
摘要
The systematics of the Old World Spiranthes sinensis (Pers.) Ames species complex (Orchidaceae) has been complicated by its wide distribution and morphological variations. Within the species complex, S. australis Lindl. has been generally accepted as the only Spiranthes Rich. species distributed on the Japanese mainland. The present study provides morphological, phylogenetic, and ecological evidence for the recognition of S. hachijoensis Suetsugu as a new species of the S. sinensis species complex on the Japanese mainland. Spiranthes hachijoensis is morphologically similar to S. hongkongensis S.Y. Hu & Barretto and S. nivea T.P. Lin & W.M. Lin, sharing a degenerated rostellum, pollinia without a viscidium, and distinctly trilobed stigma. However, the taxon can be morphologically distinguished from S. hongkongensis by its glabrous rachis, ovaries, and sepals, and from S. nivea by its papillate labellum disc, larger papillate basal labellum callosities, and glabrous rachis, ovaries, and sepals. The autogamy and flowering phenology (i.e., earlier flowering) of S. hachijoensis are most likely responsible for premating isolation from the sympatric S. australis. A MIG-seq-based high-throughput molecular analysis indicated that the genetic difference between S. hachijoensis and its putative sister species S. sinensis is comparable to, or even greater than, the genetic difference between pairs of other species within the S. sinensis species complex. Our multifaceted approach strongly supports the recognition of S. hachijoensis as a morphologically, phenologically, phylogenetically, and ecologically distinct species.
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页码:333 / 348
页数:15
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