TY - JOUR
T1 - Parentage analysis of tropical spiny lobster (Panulirus homarus) by microsatellite markers
AU - Delghandi, Madjid
AU - Saif Nasser Al Hinai, Manal
AU - Afzal, Hasifa
AU - Khalfan Al-Wahaibi, Mohamed
N1 - Funding Information:
The present study was supported by the Research Council of Oman (TRC) (ORG/SQU/EBR/13/027) and by the Deanship of Research at the Sultan Qaboos University (IG/DVC/CEMB/14/01). We thank Dr. Stephen Goddard for reading of the manuscript and making helpful suggestions.
Publisher Copyright:
© 2017 John Wiley & Sons Ltd
PY - 2017/9
Y1 - 2017/9
N2 - Parentage analysis is of vital importance for hatchery production and breeding programmes. Two multiplex PCR protocols including seven tropical spiny lobster (Panulirus homarus) microsatellites (Pho-G06, Pho-G25, Pho-G53, Pho-G62, Pho-G74, Pho-G89 and Pho-G100) were introduced for parentage assignment. All loci were polymorphic with allele sizes from 113 to 337 base pairs (bp), observed alleles (k) from two to seven and polymorphic information content (PIC) of 0.25 to 0.73. Twenty-four stage-3 phyllosoma larvae (39 days posthatching) were collected for paternity exclusion study using selected microsatellites. Exclusion-based parentage analysis unambiguously assigned 83% of fry (20 of 24) to a single female parent. Of ten putative female parents, five have contributed to the 20 allocated offspring, with one being true parent of 11. Four others were assigned to two or more potential female parents, probably due to genotyping error or the presence of null allele. The exclusion power (EP) for the seven loci varied between 13% and 54% with known genotypes of one parent (P1) and 19% and 71% for given the genotypes of both parents (P2). The theoretical combined parentage exclusion (cEP) power for all seven microsatellites was P1 = 95% and P2 = 99%. The power of discrimination for each locus varied between 0.18 and 0.86. This report presents the first study to utilize microsatellite markers for successful parentage assignment of P. homarus. The selected microsatellites provide a practical tool for parentage analysis in hatchery production of juveniles as well as in future commercial breeding programme of tropical spiny lobsters.
AB - Parentage analysis is of vital importance for hatchery production and breeding programmes. Two multiplex PCR protocols including seven tropical spiny lobster (Panulirus homarus) microsatellites (Pho-G06, Pho-G25, Pho-G53, Pho-G62, Pho-G74, Pho-G89 and Pho-G100) were introduced for parentage assignment. All loci were polymorphic with allele sizes from 113 to 337 base pairs (bp), observed alleles (k) from two to seven and polymorphic information content (PIC) of 0.25 to 0.73. Twenty-four stage-3 phyllosoma larvae (39 days posthatching) were collected for paternity exclusion study using selected microsatellites. Exclusion-based parentage analysis unambiguously assigned 83% of fry (20 of 24) to a single female parent. Of ten putative female parents, five have contributed to the 20 allocated offspring, with one being true parent of 11. Four others were assigned to two or more potential female parents, probably due to genotyping error or the presence of null allele. The exclusion power (EP) for the seven loci varied between 13% and 54% with known genotypes of one parent (P1) and 19% and 71% for given the genotypes of both parents (P2). The theoretical combined parentage exclusion (cEP) power for all seven microsatellites was P1 = 95% and P2 = 99%. The power of discrimination for each locus varied between 0.18 and 0.86. This report presents the first study to utilize microsatellite markers for successful parentage assignment of P. homarus. The selected microsatellites provide a practical tool for parentage analysis in hatchery production of juveniles as well as in future commercial breeding programme of tropical spiny lobsters.
KW - aquaculture
KW - breeding program
KW - microsatellite markers
KW - Panulirus homarus
KW - parental allocation
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U2 - 10.1111/are.13293
DO - 10.1111/are.13293
M3 - Article
AN - SCOPUS:85026883358
SN - 1355-557X
VL - 48
SP - 4718
EP - 4724
JO - Aquaculture Research
JF - Aquaculture Research
IS - 9
ER -