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Molecular Identification and Cultivar Fingerprints of Prunus persica (L.) Batsch Germplasms 被引量:3

Molecular Identification and Cultivar Fingerprints of Prunus persica (L.) Batsch Germplasms
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摘要 [Objective] The aim was to study the molecular identification and cultivar fingerprints of Prunus persica (L.) Batsch germplasms.[Method] Sixty peach genotypes,representing China common local cultivars and European samples were screened by microsatellites (simple sequence repeats,SSRs) and Inter-Simple Sequence Repeat (ISSR) markers.[Result] 26 reproducible bands were amplified by Nine SSR primers,and 24 of which were polymorphic; 236 bands were amplified by 30 ISSR primers,and 113 of which were polymorphic.31 genotypes were discriminated with 1-3 distinct polymorphic bands generated from the primers ISSR and SSR.Seven cultivar-specific ISSR fragments and two SSR unique alleles obtained from this study were available to be converted into Sequence Characterized Amplified Region (SCAR) markers.The genetic similarity coefficient (GS) estimated from these molecular data averaged were 0.939 (ranged from 0.856 to 0.983) for ISSR and 0.646 (ranged from 0.240 to 1.000) for SSR,respectively.The combined grouping association indicated that most local Chinese peach cultivars and exotic accessions were clustered together.This could be related to the mode of introduction and maintenance of the peach cultivars involving limited foundation germplasm,exchange of cultivars between plantations,and periodic development of new recombinant cultivars following sexual reproduction.[Conclusion] The results obtained in this work would help to improve the conservation,molecular identification and management of peach germplasm in breeding. [Objective] The aim was to study the molecular identification and cultivar fingerprints of Prunus persica (L.) Batsch germplasms.[Method] Sixty peach genotypes,representing China common local cultivars and European samples were screened by microsatellites (simple sequence repeats,SSRs) and Inter-Simple Sequence Repeat (ISSR) markers.[Result] 26 reproducible bands were amplified by Nine SSR primers,and 24 of which were polymorphic; 236 bands were amplified by 30 ISSR primers,and 113 of which were polymorphic.31 genotypes were discriminated with 1-3 distinct polymorphic bands generated from the primers ISSR and SSR.Seven cultivar-specific ISSR fragments and two SSR unique alleles obtained from this study were available to be converted into Sequence Characterized Amplified Region (SCAR) markers.The genetic similarity coefficient (GS) estimated from these molecular data averaged were 0.939 (ranged from 0.856 to 0.983) for ISSR and 0.646 (ranged from 0.240 to 1.000) for SSR,respectively.The combined grouping association indicated that most local Chinese peach cultivars and exotic accessions were clustered together.This could be related to the mode of introduction and maintenance of the peach cultivars involving limited foundation germplasm,exchange of cultivars between plantations,and periodic development of new recombinant cultivars following sexual reproduction.[Conclusion] The results obtained in this work would help to improve the conservation,molecular identification and management of peach germplasm in breeding.
出处 《Agricultural Science & Technology》 CAS 2010年第7期1-5,8,共6页 农业科学与技术(英文版)
基金 Supported by National Peach Industrial Technology System (nycytx-31-zs-10 ) National Science and Technology Support Program (2008BAD98B03-08) National Peach Commonweal Science (Agriculture) Research Projects (3-37) Chengdu Technology Application and Promotion Program (09YTZD986NC-012)
关键词 Genetic variability ISSR Molecular identification Prunus persica (L.) Batsch SSR 种质资源管理 分子鉴定 桃品种 指纹图谱 SSR标记 SSR引物 ISSR 简单序列重复
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  • 1WANG ZH(汪祖华),ZHUANG EJ(庄恩及).Fruit annals in China-Scroll of peach and nectarine(中国果树志:桃卷)[M].Beijing:China Forestry Publishing House(北京:中国林业出版社),2001. 被引量:1
  • 2ZHEBENTYAYEVA TN,SWIRE C.,G,GEORGI LL,et al.A framework physical map for peach,a model Rosaceae spedcis[J].Tree Genetics & Genomes,2008,4(4):745-756. 被引量:1
  • 3LURIE S,CRISOSTO CH.Chilling injury in peach and nectarine[J].Postharvest Biol Technol,2005,37(3):195-208. 被引量:1
  • 4WUNSCH A,CARRERAL M,HORMAZA JI.Molecular characterization of local Spanish peach[Prunus persica(L.)Batsch]germplasm[J].Genetic Resources and Crop Evolution,2006,53(5):925-932. 被引量:1
  • 5SEDRA MH,LASHERMES P,TROUSLOT P,et al.Identification and genetic diversity analysis of date palm(Phoenix dactylifera L.)varieties from Morocco using RAPD markers[J].Euphytica,1996,103(1):75-82. 被引量:1
  • 6HOKANSON SC,SZEWC-MCFADDEN AK0 LAMBOY WF,et al.Microsatellite(SSR)markers reveal genetic identities,genetic diversity and relationships in a Malus domestica borkh.core subset collection[J].Theor Appl Genet,1996,97:671-683. 被引量:1
  • 7CANTINI C,IEZZONI AF,LAMBOY WF,et al.DNA fingerprinting of tetraploid cherry germplasm using simple sequence repeats[J].J Am Soc Hortic Sci,2001,126:205-209. 被引量:1
  • 8XU DH,WAHYUNI S,SATO Y,et al.Genetic diversity and relationships of Japanese peach(Prunus persica L.)cultivars revealed by AFLP and pedigree tracing[J].Genetic Resources and Crop Evolution,2006,53(5),883-889. 被引量:1
  • 9ARANZANA MJ,GARCIA M,CARBO J,et al.Development and variability analysis of microsatellite markers in peach[J].Rant Breeding,2002,121(1):87-92. 被引量:1
  • 10CHENG ZP,HUANG HW.SSR fingerprinting Chinese peach cultivars and landraces(Prunus persica)and analysis of their genetic relationships[J].scientia Horticulturae,2009,120(2):188-193. 被引量:1

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