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Mechanisms of reproductive isolation between annual and perennial plants of Incarvillea sinensis.

Authors :
Lan, Wen‐Juan
Wang, Fang‐Yuan
Barrett, Spencer C. H.
Wang, Wen‐Ting
Ma, Yue
Yang, Yang
Li, Nan
Deng, Jun‐Chen
Bai, Wei‐Ning
Source :
Journal of Systematics & Evolution; May2024, Vol. 62 Issue 3, p548-560, 13p
Publication Year :
2024

Abstract

Quantifying the relative strength of isolating barriers is a major focus of research on plant speciation. Contrasting life histories and mating systems have the potential to limit gene exchange between closely related populations growing in sympatry. However, few studies have quantified reproductive isolating barriers between conspecific annual and perennial populations and their contributions to total reproductive isolation (RI). Incarvillea sinensis Lam. (Bignoniaceae) is an insect‐pollinated herb with largely allopatric annual and perennial populations that differ in mating systems. The perennial populations are primarily outcrossing whereas annual populations are predominantly selfing. At a rare sympatric site in northern China we estimated prezygotic and postzygotic barriers to gene exchange between annual and perennial plants and found complete RI between the two life histories. Annuals exhibited significantly higher ecogeographic isolation than perennials whereas perennials experienced more isolation through pollen–pistil interactions than annuals. Crosses between annuals and perennials demonstrated that postzygotic barriers influencing fruit and seed formation, F1 germination and survival were negligible for annuals but played a small role for perennials. However, F1 hybrids of crosses between annuals and perennials produced no pollen and their ovules were largely sterile. Our study provides insight into the relative importance of prezygotic and postzygotic isolating barriers between closely related annual and perennial populations of I. sinensis and some of these barriers could have been involved with speciation. Annuals and perennials of I. sinensis represent two biological species and thus deserve to be recognized as distinct taxonomic species. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16744918
Volume :
62
Issue :
3
Database :
Complementary Index
Journal :
Journal of Systematics & Evolution
Publication Type :
Academic Journal
Accession number :
177243657
Full Text :
https://doi.org/10.1111/jse.12997