Mating system and gene flow in the red seaweed Gracilaria gracilis:: effect of haploid-diploid life history and intertidal rocky shore landscape on finescale genetic structure

被引:81
作者
Engel, CR [1 ]
Destombe, C [1 ]
Valero, M [1 ]
机构
[1] Univ Lille 1, CNRS, UPRESA 8016, Lab Genet & Evolut Populat Vegetales, F-59655 Villeneuve Dascq, France
关键词
assignment test; haploid-diploid life cycle; microsatellites; patchy distribution; polyembryony;
D O I
10.1038/sj.hdy.6800407
中图分类号
Q14 [生态学(生物生态学)];
学科分类号
071012 ; 0713 ;
摘要
The impact of haploid-diploidy and the intertidal landscape on a fine-scale genetic structure was explored in a red seaweed Gracilaria gracilis. The pattern of genetic structure was compared in haploid and diploid stages at a microgeographic scale (<5 km): a total of 280 haploid and 296 diploid individuals located in six discrete, scattered rock pools were genotyped using seven microsatellite loci. Contrary to the theoretical expectation of predominantly endogamous mating systems in haploid-diploid organisms, G. gracilis showed a clearly allogamous mating system. Although within-population allele frequencies were similar between haploids and diploids, genetic differentiation among haploids was more than twice that of diploids, suggesting that there may be a lag between migration and ( local) breeding due to the long generation times in G. gracilis. Weak, but significant, population differentiation was detected in both haploids and diploids and varied with landscape features, and not with geographic distance. Using an assignment test, we establish that effective migration rates varied according to height on the shore. In this intertidal species, biased spore dispersal may occur during the transport of spores and gametes at low tide when small streams flow from high- to lower-shore pools. The longevity of both haploid and diploid free-living stages and the long generation times typical of G. gracilis populations may promote the observed pattern of high genetic diversity within populations relative to that among populations.
引用
收藏
页码:289 / 298
页数:10
相关论文
共 62 条
[1]  
[Anonymous], 1997, PLANT BREEDING SYSTE
[2]  
Austerlitz F, 2000, GENETICS, V154, P1309
[3]   Dispersal, gene flow, and population structure [J].
Bohonak, AJ .
QUARTERLY REVIEW OF BIOLOGY, 1999, 74 (01) :21-45
[4]  
BROWN AHD, 1990, TRENDS ECOL EVOL, V6, P265
[5]  
COCKERHAM CC, 1973, GENETICS, V74, P679
[6]  
Cornuet JM, 1999, GENETICS, V153, P1989
[7]  
Cornuet JM, 1996, CR ACAD SCI III-VIE, V319, P1167
[8]   GENETIC-VARIABILITY WITHIN A POPULATION AND BETWEEN DIPLOID/HAPLOID TISSUE OF MACROCYSTIS-PYRIFERA (PHAEOPHYCEAE) [J].
COYER, JA ;
ROBERTSON, DL ;
ALBERTE, RS .
JOURNAL OF PHYCOLOGY, 1994, 30 (03) :545-552
[9]   The 'paradox' of polyembryony: A review of the cases and a hypothesis for its evolution [J].
Craig, SF ;
Slobodkin, LB ;
Wray, GA ;
Biermann, CH .
EVOLUTIONARY ECOLOGY, 1997, 11 (02) :127-143
[10]   DIFFERENCES IN DISPERSAL ABILITIES OF HAPLOID AND DIPLOID SPORES OF GRACILARIA-VERRUCOSA (GRACILARIALES, RHODOPHYTA) [J].
DESTOMBE, C ;
GODIN, J ;
LEFEBVRE, C ;
DEHORTER, O ;
VERNET, P .
BOTANICA MARINA, 1992, 35 (02) :93-98