Limitation of gene flow by distance in the common yellow jasmine (Chrysojasminum fruticans, Oleaceae): implications for the study of its mating strategies

Author:

Puyoou Aurore1,Gryta Hervé1,Fuchs Anne-Laure1,Blanchard Pierrick1ORCID,Cheptou Pierre-Olivier2,Civeyrel Laure1,Dufay Mathilde2,Dupin Julia1ORCID,Jargeat Patricia1,Lecompte Emilie1,Besnard Guillaume1ORCID

Affiliation:

1. Laboratoire Evolution et Diversité Biologique (EDB), UMR 5174, CNRS, IRD, Université Toulouse Paul Sabatier , 31062 Toulouse , France

2. CEFE, Université de Montpellier, CNRS, Université Paul Valéry Montpellier , 34293 Montpellier , France

Abstract

Abstract The common yellow jasmine (Chrysojasminum fruticans, Oleaceae) is a distylous shrub occurring in the wild in south-western Europe and the Mediterranean Basin. Little is known about the genetics of its populations and such information would be necessary to investigate its spread and mating strategies. Here, the organization of its genetic diversity was investigated among and between 13 populations from southern France, including a 35-year-old experimental plot (‘CEFE’, CNRS Montpellier). Markers (microsatellites and indels) were developed to screen polymorphisms in nuclear, chloroplast, and mitochondrial genomes. Low linkage disequilibrium was observed between chloroplast and mitochondrial haplotypes probably resulting from paternal leaks in their inheritance as reported in other species of tribe Jasmineae. Yet, analyses of 36 progenies issued from parents with distinct chloroplast and/or mitochondrial DNA haplotypes only revealed a maternal contribution. Natural populations of C. fruticans are moderately to highly differentiated at the regional scale with a strong isolation-by-distance pattern detected on nuclear data, indicating limited gene flow. An isolated site (‘Moulis’), located on the marginal distribution area, was remarkably genetically depauperate and highly differentiated from other populations. Further studies on the variation of mating strategies in C. fruticans should consider populations with contrasting patterns of genetic diversity. The artificial ‘CEFE’ population also offers opportunities for experiments in a closed system.

Funder

Region Occitanie of France

Marie Skłodowska-Curie Actions

European Union’s Horizon

Laboratoire d’Excellence

CeMEB

TULIP

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Ecology, Evolution, Behavior and Systematics

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