Parentage analysis and outcrossing patterns in cacao (Theobroma cacao L.) farms in Cameroon

被引:0
作者
M I B Efombagn
O Sounigo
A B Eskes
J C Motamayor
M J Manzanares-Dauleux
R Schnell
S Nyassé
机构
[1] Institute of Agricultural Research for Development,
[2] CIRAD-BIOS,undefined
[3] UPR31,undefined
[4] Bioversity International,undefined
[5] Parc Scientifique Agropolis II,undefined
[6] MARS Inc. c/o USDA-ARS-SHRS,undefined
[7] UMR INRA-Agrocampus Rennes APBV,undefined
[8] USDA-ARS-SHRS,undefined
来源
Heredity | 2009年 / 103卷
关键词
cacao; biclonal seed gardens; farm; outcrossing; breeding;
D O I
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中图分类号
学科分类号
摘要
The present study investigates the parentage of farm accessions in Cameroon using data from 12 microsatellite loci. Bayesian analysis suggests that 25.5% of the 400 farm accessions studied is still closely related to the traditional Amelonado variety called ‘German Cocoa’ by the farmers. Another 46.3% of the farm accessions were found to be direct descendants (20.8% first-generation (F1) hybrids and 25.5% selfed genotypes) from 24 parental clones used in biclonal seed gardens (BSGs) established in the 1970s in southern and western Cameroon. Furthermore, 28.3% of farm accessions appeared to descent from uncontrolled pollination events in cacao farms, which could be related to a common practice of cacao growers to use seeds collected in their own farm for new plantings. All farm accessions descending from BSG could be individually related through parentage analysis to the 24 progenitors of the BSG. Only 25% of progenies distributed from BSG corresponded to F1 hybrids combinations originally planned to be released. Significant biparental inbreeding estimates were observed for all ‘traditional’ farms and for most ‘F1 hybrids’ farms due to presence of a high proportion of selfed accessions. Biparental inbreeding occurs when plants receive pollen from genetically related neighbors. High levels of outcrossing observed in ‘mixed’ farms might be explained by the admixture of traditional varieties and BSG progenies. The implications of our finding for management of seed gardens and for further breeding using farm accessions in Cameroon are discussed.
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页码:46 / 53
页数:7
相关论文
共 62 条
[1]  
Alverson WS(1999)Phylogeny of the core Malvales: Evidence from ndhF sequence data Am J Bot 86 1474-1486
[2]  
Whitlock BA(2002)A model-based method for identifying species hybrids using multilocus genetic data Genetics 160 1217-1229
[3]  
Nyffeler R(2004)An improved semi-automated rapid method of extracting genomic DNA for molecular marker analysis in cacao, Plant Mol Biol Report 22 435a-435h
[4]  
Bayer C(1944) L Trop Agric 21 144-159
[5]  
Baum DA(1958)Notes on the nomenclature, classification and possible relationships of cocoa populations Nature 181 279-831
[6]  
Anderson EC(2008)Incompatibility in Tree Genet Genome 4 821-486
[7]  
Thomson EA(1960)Genetic diversity and structure of farm and GenBank accessions of cacao ( Nature 187 170-232
[8]  
Bhattacharjee R(1995) L.) in Cameroon revealed by microsatellite markers J Hered 86 485-118
[9]  
Kolesnikova-Allen M(1961)Selfing of self-incompatible cocoa Malayan Agric J 43 169-294
[10]  
Aikpokpodion P(2001)FSTAT 1.2: a computer program to calculate F-statistics Physiologia Plantarum 112 113-400