Development of genome-wide SNP assays for rice

被引:131
|
作者
McCouch, Susan R. [1 ]
Zhao, Keyan [2 ,3 ]
Wright, Mark [1 ,2 ]
Tung, Chih-Wei [1 ]
Ebana, Kaworu [4 ]
Thomson, Michael [5 ]
Reynolds, Andy [2 ]
Wang, Diane [1 ]
DeClerck, Genevieve [1 ]
Ali, Md Liakat [6 ]
McClung, Anna [7 ]
Eizenga, Georgia [7 ]
Bustamante, Carlos [2 ,3 ]
机构
[1] Cornell Univ, Dept Plant Breeding & Genet, Ithaca, NY 14853 USA
[2] Cornell Univ, Dept Biol Stat & Computat Biol, Ithaca, NY USA
[3] Stanford Univ, Dept Genet, Stanford, CA 94305 USA
[4] Natl Inst Agrobiol Sci, Tsukuba, Ibaraki 3058602, Japan
[5] Int Rice Res Inst, Los Banos, Laguna, Philippines
[6] Univ Arkansas, Rice Res & Extens Ctr, Stuttgart, AR USA
[7] USDA ARS, Dale Bumpers Natl Rice Res Ctr, Stuttgart, AR USA
关键词
single nucleotide polymorphism (SNP); rice (Oryza sativa L.); genotyping assay; next-generation sequencing; genetic variation; germplasm diversity; plant improvement; SINGLE-NUCLEOTIDE POLYMORPHISMS; CONFERS SUBMERGENCE TOLERANCE; MARKER-ASSISTED SELECTION; QUANTITATIVE TRAIT LOCUS; LINKAGE DISEQUILIBRIUM; MOLECULAR MARKERS; GENETIC-STRUCTURE; DRAFT SEQUENCE; ORYZA; DNA;
D O I
10.1270/jsbbs.60.524
中图分类号
S3 [农学(农艺学)];
学科分类号
0901 ;
摘要
Single nucleotide polymorphisms (SNPs) are the most abundant form of genetic variation in eukaryotic genomes. SNPs may be functionally responsible for specific traits or phenotypes, or they may be informative for tracing the evolutionary history of a species or the pedigree of a variety. As genetic markers, SNPs are rapidly replacing simple sequence repeats (SSRs) because they are more abundant, stable, amenable to automation, efficient, and increasingly cost-effective. The integration of high throughput SNP genotyping capability promises to accelerate genetic gain in a breeding program, but also imposes a series of economic, organizational and technical hurdles. To begin to address these challenges, SNP-based resources are being developed and made publicly available for broad application in rice research. These resources include large SNP datasets, tools for identifying informative SNPs for targeted applications, and a suite of custom-designed SNP assays for use in marker-assisted and genomic selection, association and QTL mapping, positional cloning, pedigree analysis, variety identification and seed purity testing. SNP resources also make it possible for breeders to more efficiently evaluate and utilize the wealth of natural variation that exists in both wild and cultivated germplasm with the aim of improving the productivity and sustainability of agriculture.
引用
收藏
页码:524 / 535
页数:12
相关论文
共 50 条
  • [1] Genome-Wide SNP and Population Divergence of Finless Porpoises
    Li, Shuzhen
    Xu, Shixia
    Wan, Huirong
    Ji, Heyi
    Zhou, Kaiya
    Yang, Gang
    GENOME BIOLOGY AND EVOLUTION, 2013, 5 (04): : 758 - 768
  • [2] Development of SNP genotyping assays for heading date in rice
    Kitazawa, Noriyuki
    Shomura, Ayahiko
    Mizubayashi, Tatsumi
    Ando, Tsuyu
    Hayashi, Nagao
    Yabe, Shiori
    Matsubara, Kazuki
    Ebana, Kaworu
    Yamanouchi, Utako
    Fukuoka, Shuichi
    BREEDING SCIENCE, 2024, 74 (03) : 274 - 284
  • [3] Genome-wide analysis of conservation and divergence of microsatellites in rice
    Roorkiwal, Manish
    Grover, Atul
    Sharma, Prakash C.
    MOLECULAR GENETICS AND GENOMICS, 2009, 282 (02) : 205 - 215
  • [4] Development of genome-wide insertion/deletion markers in rice based on graphic pipeline platform
    Lu, Yang
    Cui, Xiao
    Li, Rui
    Huang, Piaopiao
    Zong, Jie
    Yao, Danqing
    Li, Gang
    Zhang, Dabing
    Yuan, Zheng
    JOURNAL OF INTEGRATIVE PLANT BIOLOGY, 2015, 57 (11) : 980 - 991
  • [5] An overview of SNP interactions in genome-wide association studies
    Li, Pei
    Guo, Maozu
    Wang, Chunyu
    Liu, Xiaoyan
    Zou, Quan
    BRIEFINGS IN FUNCTIONAL GENOMICS, 2015, 14 (02) : 143 - 155
  • [6] Genome-wide SNP detection in the great tit Parus major using high throughput sequencing
    Van Bers, Nikkie E. M.
    Van Oers, Kees
    Kerstens, Hindrik H. D.
    Dibbits, Bert W.
    Crooijmans, Richard P. M. A.
    Visser, Marcel E.
    Groenen, Martien A. M.
    MOLECULAR ECOLOGY, 2010, 19 : 89 - 99
  • [7] Genome-wide SNP discovery in mungbean by Illumina HiSeq
    Van, Kyujung
    Kang, Yang Jae
    Han, Kwang-Soo
    Lee, Yeong-Ho
    Gwag, Jae-Gyun
    Moon, Jung-Kyung
    Lee, Suk-Ha
    THEORETICAL AND APPLIED GENETICS, 2013, 126 (08) : 2017 - 2027
  • [8] Genome-wide Linkage Analysis with Clustered SNP Markers
    Selmero, Kaja K.
    Brandal, Kristin
    Olstad, Ole K.
    Birkenes, Bard
    Undlien, Dag E.
    Egeland, Thore
    JOURNAL OF BIOMOLECULAR SCREENING, 2009, 14 (01) : 92 - 96
  • [9] Genome-wide DNA polymorphisms in elite indica rice inbreds discovered by whole-genome sequencing
    Subbaiyan, Gopala K.
    Waters, Daniel L. E.
    Katiyar, Sanjay K.
    Sadananda, Ajanahalli R.
    Vaddadi, Satyadev
    Henry, Robert J.
    PLANT BIOTECHNOLOGY JOURNAL, 2012, 10 (06) : 623 - 634
  • [10] The design and cross-population application of a genome-wide SNP chip for the great tit Parus major
    Van Bers, Nikkie E. M.
    Santure, Anna W.
    Van Oers, Kees
    De Cauwer, Isabelle
    Dibbits, Bert W.
    Mateman, Christa
    Crooijmans, Richard P. M. A.
    Sheldon, Ben C.
    Visser, Marcel E.
    Groenen, Martien A. M.
    Slate, Jon
    MOLECULAR ECOLOGY RESOURCES, 2012, 12 (04) : 753 - 770