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The role of seed dispersal, pollination and historical effects on genetic patterns of an insular plant that has lost its only seed disperser

Identifieur interne : 001501 ( Istex/Corpus ); précédent : 001500; suivant : 001502

The role of seed dispersal, pollination and historical effects on genetic patterns of an insular plant that has lost its only seed disperser

Auteurs : María Calvi O-Cancela ; Marcial Escudero ; Javier Rodríguez-Pérez ; Emilio Cano ; Pablo Vargas ; Guillermo Velo-Ant N ; Anna Traveset

Source :

RBID : ISTEX:60AA91B5F33B5641DD4EB543065CCA9F3829012A

English descriptors

Abstract

Aim  The genetic structure of many plant species is heavily dependent on their pollinators and seed dispersers, and can thus be altered if either of the associated mutualistic interactions is disrupted. In this study we assess the genetic diversity and structure and infer the seed/pollen gene‐flow patterns among insular populations of Daphne rodriguezii, a shrub pollinated and dispersed by animals that has lost its only disperser (the lizard Podarcis lilfordi) in most of its populations.

Url:
DOI: 10.1111/j.1365-2699.2012.02732.x

Links to Exploration step

ISTEX:60AA91B5F33B5641DD4EB543065CCA9F3829012A

Le document en format XML

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<p>Aim  The genetic structure of many plant species is heavily dependent on their pollinators and seed dispersers, and can thus be altered if either of the associated mutualistic interactions is disrupted. In this study we assess the genetic diversity and structure and infer the seed/pollen gene‐flow patterns among insular populations of Daphne rodriguezii, a shrub pollinated and dispersed by animals that has lost its only disperser (the lizard Podarcis lilfordi) in most of its populations.</p>
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<p>Methods  To assess the contribution of gene flow via pollen and seeds to the genetic structure of D. rodriguezii we used amplified fragment length polymorphisms (AFLPs; seeds and pollen) and plastid DNA sequences (cpDNA; seeds). We sampled individuals from all population nuclei of the species (12–19 adults per population): one population in Colom, where the plant–lizard interaction persists, and four in Menorca, where the seed dispersal mutualism disappeared with the extinction of the lizard.</p>
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<p>Results  The highest heterozygosity values were found in Colom and in its closest population (Favàritx), whereas values were lower in the smallest Menorcan populations, which also had higher relatedness among individuals. We found distinct genetic signals between AFLP and cpDNA analyses. While AFLP markers showed low differentiation between populations, cpDNA showed a clear differentiation between them.</p>
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<p>
<b>Aim </b>
The genetic structure of many plant species is heavily dependent on their pollinators and seed dispersers, and can thus be altered if either of the associated mutualistic interactions is disrupted. In this study we assess the genetic diversity and structure and infer the seed/pollen gene‐flow patterns among insular populations of
<i>Daphne rodriguezii</i>
, a shrub pollinated and dispersed by animals that has lost its only disperser (the lizard
<i>Podarcis lilfordi</i>
) in most of its populations.</p>
<p>
<b>Location </b>
The island of Menorca and the islet of Colom (Balearic Islands, Western Mediterranean).</p>
<p>
<b>Methods </b>
To assess the contribution of gene flow via pollen and seeds to the genetic structure of
<i>D. rodriguezii</i>
we used amplified fragment length polymorphisms (AFLPs; seeds and pollen) and plastid DNA sequences (cpDNA; seeds). We sampled individuals from all population nuclei of the species (12–19 adults per population): one population in Colom, where the plant–lizard interaction persists, and four in Menorca, where the seed dispersal mutualism disappeared with the extinction of the lizard.</p>
<p>
<b>Results </b>
The highest heterozygosity values were found in Colom and in its closest population (Favàritx), whereas values were lower in the smallest Menorcan populations, which also had higher relatedness among individuals. We found distinct genetic signals between AFLP and cpDNA analyses. While AFLP markers showed low differentiation between populations, cpDNA showed a clear differentiation between them.</p>
<p>
<b>Main conclusions </b>
Our results point to negative impacts of the disperser loss on genetic diversity and relatedness in the smaller and more isolated populations. They also suggest an old isolation by seeds, probably occurring well before the extinction of the lizard (
<i>c.</i>
 2000 years ago). Gene flow was maintained via pollination; however, the seed disperser loss may ultimately hinder pollinator‐mediated gene flow, as a result of reduced probabilities of effective pollination among increasingly distant and scarce individuals.</p>
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<languageTerm type="code" authority="iso639-2b">eng</languageTerm>
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<abstract>Aim  The genetic structure of many plant species is heavily dependent on their pollinators and seed dispersers, and can thus be altered if either of the associated mutualistic interactions is disrupted. In this study we assess the genetic diversity and structure and infer the seed/pollen gene‐flow patterns among insular populations of Daphne rodriguezii, a shrub pollinated and dispersed by animals that has lost its only disperser (the lizard Podarcis lilfordi) in most of its populations.</abstract>
<abstract>Location  The island of Menorca and the islet of Colom (Balearic Islands, Western Mediterranean).</abstract>
<abstract>Methods  To assess the contribution of gene flow via pollen and seeds to the genetic structure of D. rodriguezii we used amplified fragment length polymorphisms (AFLPs; seeds and pollen) and plastid DNA sequences (cpDNA; seeds). We sampled individuals from all population nuclei of the species (12–19 adults per population): one population in Colom, where the plant–lizard interaction persists, and four in Menorca, where the seed dispersal mutualism disappeared with the extinction of the lizard.</abstract>
<abstract>Results  The highest heterozygosity values were found in Colom and in its closest population (Favàritx), whereas values were lower in the smallest Menorcan populations, which also had higher relatedness among individuals. We found distinct genetic signals between AFLP and cpDNA analyses. While AFLP markers showed low differentiation between populations, cpDNA showed a clear differentiation between them.</abstract>
<abstract>Main conclusions  Our results point to negative impacts of the disperser loss on genetic diversity and relatedness in the smaller and more isolated populations. They also suggest an old isolation by seeds, probably occurring well before the extinction of the lizard (c. 2000 years ago). Gene flow was maintained via pollination; however, the seed disperser loss may ultimately hinder pollinator‐mediated gene flow, as a result of reduced probabilities of effective pollination among increasingly distant and scarce individuals.</abstract>
<subject lang="en">
<genre>keywords</genre>
<topic>Amplified fragment length polymorphism</topic>
<topic>Balearic Islands</topic>
<topic>cpDNA</topic>
<topic>gene flow</topic>
<topic>mutualism disruption</topic>
<topic>plant–lizard interactions</topic>
<topic>seed disperser loss</topic>
</subject>
<relatedItem type="host">
<titleInfo>
<title>Journal of Biogeography</title>
</titleInfo>
<genre type="journal">journal</genre>
<subject>
<genre>article-category</genre>
<topic>SPECIAL ISSUE</topic>
</subject>
<identifier type="ISSN">0305-0270</identifier>
<identifier type="eISSN">1365-2699</identifier>
<identifier type="DOI">10.1111/(ISSN)1365-2699</identifier>
<identifier type="PublisherID">JBI</identifier>
<part>
<date>2012</date>
<detail type="volume">
<caption>vol.</caption>
<number>39</number>
</detail>
<detail type="issue">
<caption>no.</caption>
<number>11</number>
</detail>
<extent unit="pages">
<start>1996</start>
<end>2006</end>
<total>11</total>
</extent>
</part>
</relatedItem>
<identifier type="istex">60AA91B5F33B5641DD4EB543065CCA9F3829012A</identifier>
<identifier type="DOI">10.1111/j.1365-2699.2012.02732.x</identifier>
<identifier type="ArticleID">JBI2732</identifier>
<accessCondition type="use and reproduction" contentType="copyright">© 2012 Blackwell Publishing Ltd</accessCondition>
<recordInfo>
<recordContentSource>WILEY</recordContentSource>
<recordOrigin>Blackwell Publishing Ltd</recordOrigin>
</recordInfo>
</mods>
</metadata>
<serie></serie>
</istex>
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