Welcome to Acta Agronomica Sinica,

Acta Agron Sin ›› 2015, Vol. 41 ›› Issue (10): 1529-1536.doi: 10.3724/SP.J.1006.2015.01529

• CROP GENETICS & BREEDING · GERMPLASM RESOURCES · MOLECULAR GENETICS • Previous Articles     Next Articles

Development and Verification of a CAPS Marker Linked to Tuber Shape Gene in Potato

ZHU Wen-Wen1,XU Jian-Fei1,LI Guang-Cun1,DUAN Shao-Guang1,LIU Jie1,BIAN Chun-Song1,PANG Wan-Fu1,Walter De Jong2,JIN Li-Ping1,*   

  1. 1 Institute of Vegetables and Flowers, Chinese Academy of Agricultural Sciences / Key Laboratory of Biology and Genetic Improvement of Tuber and Root Crops, Ministry of Agriculture, Beijing 100081, China; 2 Department of Plant Breeding and Genetics, Cornell University, Ithaca 14853, NY, USA
  • Received:2015-03-20 Revised:2015-07-10 Online:2015-10-12 Published:2015-07-15

Abstract:

Tuber shape is one of the most important traits for potato cultivars especially for the processing varieties. Previous study shows that a single gene Ro on chromosome 10 controls most variation for round versus long tuber shape. In this study, based on the potato genome sequence information and bulked segregation analysis strategy, we developed a CAPS marker 1137-CAPSVI using the diploid potato genotypes 320-02, 10618-01 and their 213 F1 tuber shape segregated population. This marker was verified in 53 tetraploid breeding lines with diverse tuber shapes. The results showed that the consistency rate between the marker and tuber shape was 83.02% and the accuracy of the CAPS marker 1137-CAPSVI for selecting round tuber shape was up to 91.42%, and the further Pearson correlation analysis result showed that the marker was significantly correlated with tuber shape. The CAPS marker provides a basis for molecular marker-assisted selection in potato breeding especially for processing variety.

Key words: Potato, Tuber shape, Marker development, Molecular marker-assisted breeding

[1]黑龙江省农业科学院马铃薯研究所. 中国马铃薯栽培学. 北京: 中国农业出版社, 1994. pp 37–41



Heilongjiang Academy of Agricultural Sciences Institute of Potato. Potato culture to China. Beijing: China Agriculture Press, 1990. pp 37–41 (in Chinese)



[2]Vreugdenhil D, Bradshaw J, Gebhardt C, Govers F, Taylor M A, MacKerron D K, Ross H A. Potato Biology and Biotechnology: Advances and Perspectives: Advances and Perspectives. Amsterdam: Elsevier, 2011. pp 211–213



[3]Salaman R N. The inheritance of colour and other characters in the potato. J Genet, 1910, 1: 7–46



[4]Emme H. Genetik der kartoffel. Biologicheskii Zhurnal, 1937, 6: 787–796



[5]De Jong H, Rowe P R. Genetic markers in inbred clones of cultivated diploid potatoes. Potato Res, 1972, 15: 200–208



[6]Masson M F. Mapping, Combining Abilities, Heritabilities and Heterosis with 4X×2X Crosses in Potato. PhD Dissertation of Wisconsin University, 1985



[7]van Eck H J, Jacob J M E, Stam P, Ton J, Stiekema W J, Jacobsen E. Multiple alleles for tuber shape in diploid potato detected by qualitative and quantitative genetic analysis using RFLPs. Genetics, 1994, 137: 303–309



[8]邓珍. 二倍体马铃薯组培苗耐旱性相关性状QTLs定位与分析. 中国农业科学院硕士学位论文, 北京, 2014



Den Z. Analysis of QTLs Related to Drought Tolerance in Vitro Diploid Potatoes. MS Thesis of Chinese Academy of Agricultural Sciences, Beijing, China, 2014 (in Chinese with English abstract)



[9]晁祥健, 孔维国, 张煜, 刘生祥, 杨煜, 李广存. 二倍体马铃薯资源现状及应用研究进展. 山东农业科学, 2008, (7): 49–53



Chao X J, Kong W G, Zhang Y, Liu S X, Yang Y, Li G C. Diploid potato germplasm resources and their application. Shandong Agric Sci, 2008, (7): 49–53 (in Chinese with English abstract)



[10]Bradshaw J E, Mackay G R. Potato Genetics. Wallingford: Cab international,1994. pp 227–229



[11]邢延豪, 周延清, 楚素霞, 郭静佩, 周鹏, 范念斯. CAPS标记技术及其应用进展. 江苏农业科学, 2011, (5): 4–76



Xing Y H, Zhou Y Q, Chu S X, Guo J P, Zhou P, Fan N S. CAPS marker technology and its application progress. Jiangsu Agric Sci, 2011, 39(5): 74–76



[12]Colton L M, Groza H I, Wielgus S M, Jiang J. Marker-Assisted Selection for the Broad-Spectrum Potato Late Blight Resistance Conferred by Gene Derived from a Wild Potato Species. Crop Sci, 2006, 46: 589–594



[13]Bakker E, Achenbach U, Bakker J, van Vliet J, Peleman J, Segers B, Goverse A. A high-resolution map of the H1 locus harbouring resistance to the potato cyst nematode Globodera rostochiensis. Theor Appl Genet, 2004, 109: 146–152



[14]Asano K, Kobayashi A, Tsuda S, Nishinaka M, Tamiya S. DNA marker-assisted evaluation of potato genotypes for potential resistance to potato cyst nematode pathotypes not yet invading into Japan. Breed Sci, 2012, 62: 142



[15]Bryan G, McLean K, Bradshaw J, De Jong W, Phillips M, Castelli L, Waugh R. Mapping QTLs for resistance to the cyst nematode Globodera pallida derived from the wild potato species Solanum vernei. Theor Appl Genet, 2002, 105: 68–77



[16]Bradshaw J E, Hackett C A, Pande B, Bryan G J. QTL mapping of yield, agronomic and quality traits in tetraploid potato (Solanum tuberosum subsp. tuberosum). Theor Appl Genet, 2008, 116: 193–211



[17]李飞. 马铃薯耐冻相关基因克隆与功能分析. 中国农业科学院博士学位论文, 北京, 2013.



Li F. Isolation and Functional Analysis of the Gene Related to Frost Tolerance in Potato. PhD Dissertation of Chinese Academy of Agricultural Sciences, Beijing, China, 2013 (in Chinese with English abstract)



[18]陈峰, 周继华, 张士永, 严长杰, 朱文银, 孙亚伟, 袁守江, 杨连群. 水稻抗条纹叶枯病基因Stv-bi的分子标记辅助选择. 作物学报, 2009, 35: 597–601



Chen F, Zhou J H, Zhang S Y, Yan C J, Zhu W Y, Sun Y W, Yuan S J, Yang L Q. Marker-assisted selection for Stv-bi gene controlling resistance to rice stripe disease. Acta Agron Sin, 2009, 35: 597–601 (in Chinese with English abstract)



[19]Meyer R C, Milbourne D, Hackett C A , Bradshaw J E, McNichol J W, Waugh R. Linkage analysis in tetraploid potato and of markers with quantitative resistance to late blight. Mol Gen Genet, 1998, 259: 150–160



[20]De Jong H, Burns V J. Inheritance of tuber shape in cultivated diploid potatoes. Am Potato J, 1993, 7: 267–284



[21]Björn B, Paulo M J, Mank R A, van Eck H J, Van Eeuwijk F A. Association mapping of quality traits in potato (Solanum tuberosum L). Euphytica, 2008 , 161: 47–60



[22]Prashar A, Hornyik C, Young V, McLean K, Sharma S K, Dale M F B, Bryan G J. Construction of a dense SNP map of a highly heterozygous diploid potato population and QTL analysis of tuber shape and eye depth. Theor Appl Genet, 2014, 127: 2159–2171

[1] Chen Guo-Huan, Zhang Rui, Li Yan-Di, Zhao Jia-Qi, Ren Yong-Tao, Zhang Tian-Ci, Guo Hua-Chun, Li Jun, Yang Fang. Effects of foliar application of exogenous selenium on anthocyanin biosynthesis in tubers of light purple-fleshed potatoes [J]. Acta Agronomica Sinica, 2026, 52(6): 1876-1890.
[2] Zhai Sheng-Nan, Cao Xin-You, Li Hao-Sheng, Li Ji-Hu, Li Fa-Ji, Liu Jin-Dong, Xia Xian-Chun, Lyu Ying-Ying, Ma Rui-Feng, Wang Ying, Geng Hong-Wei, Liu Jian-Jun. Analysis of the genetic effects of allelic variation at the Pod-A1, Pod-D1, and Pod-2D loci on peroxidase activity in wheat grains [J]. Acta Agronomica Sinica, 2026, 52(6): 1593-1603.
[3] Tian Li-Tao, Ding Ning, Wang Shu-Lin, Qi En-Fang, Zhang Rong, Wang Rui-Rui, Ma Li-Wen, Li Jian-Wu, Yang Jiang-Wei. Genome-wide identification of the Argonaute gene family and its induction by late blight in potato (Solanum tuberosum L.) [J]. Acta Agronomica Sinica, 2026, 52(4): 1116-1126.
[4] Jiang Jia-Hui, Jiang Bing-Zhi, Liu Guan-Ming, Wang Zhang-Ying, Tang Chao-Chen. Establishment and optimization of near-infrared spectroscopy models for quality traits of purple-fleshed sweet potato [J]. Acta Agronomica Sinica, 2026, 52(4): 1088-1102.
[5] Wang Yi-Han, Li Fu-Chang, Liu Yi, Zhu Guo-Peng. Cloning of the IbOPR2 gene promoter and identification of regulatory factors in sweetpotato [J]. Acta Agronomica Sinica, 2026, 52(4): 1268-1276.
[6] Wang Ling, Hu Hao, Song Jia-Feng, Cheng Jie-Lan, Chen Ying, Zheng Ting-Ting, Lyu Zhao-Yan, Zhu Xiao-Biao, Hou Hua-Lan. Cloning and functional validation of UDP-glycosyltransferase gene StUGT52 in potato [J]. Acta Agronomica Sinica, 2026, 52(3): 665-676.
[7] Zhang Yu, Liu Fang, Cai Cheng-Cheng, Yang Xiao-Hua, Jia MO-Shi-Zha, Yang Yuan-Jun, Wang Xi-Yao. Preliminary investigation on the mechanism of potato tuber dormancy release induced by combined treatment of bromoethane and gibberellin [J]. Acta Agronomica Sinica, 2026, 52(3): 825-838.
[8] Yu Yong-Chao, Liu Ming, Jin Rong, Zhao Peng, Zhang Qiang-Qiang, Wang Jing, Zhu Xiao-Ya, Tang Zhong-Hou. Physiological mechanism and transcriptome analysis of sweet potato overgrowth under high-nitrogen conditions [J]. Acta Agronomica Sinica, 2026, 52(3): 813-824.
[9] Xu Qiang, Xie Kui-Zhong, Hu Xin-Yuan, Yue Yun, Dong Bo, Luo Ai-Hua. Effects of continuous cropping on the structure and function of soil nematode communities in potato [J]. Acta Agronomica Sinica, 2026, 52(2): 527-538.
[10] Yang Xuan, Li Jian-Kang, He Wan-Jie, Li You-Jun, Cheng Xiang-Han, Hou Wen-Bang. Effects of selenium fertilization on fresh-cut browning in sweet potatoes and its mechanism analysis [J]. Acta Agronomica Sinica, 2026, 52(2): 578-589.
[11] Yang Biao, Du Shuai-Kang, Zhang Ji-Wang, Shi Ying, Zhang Li-Li. Genome-wide identification of class III POD gene family in potato and its expression profile analysis [J]. Acta Agronomica Sinica, 2026, 52(2): 405-420.
[12] Tian Jia-Chun, Ge Xia, Li Shou-Qiang, Li Mei, Tian Shi-Long, Zhang Ya-Qian, Cheng Jian-Xin, Li Yu-Mei. Mechanism of low O2 and high CO2 storage environment delaying aging of potato tuber [J]. Acta Agronomica Sinica, 2026, 52(1): 262-278.
[13] Wang Ya-Zhi, Yang Biao, Ji Xiang-Lin, Shi Ying, Zhang Li-Li. Identification of drought-resistant resources and preliminary screening of drought resistant genes in diploid potatoes [J]. Acta Agronomica Sinica, 2026, 52(1): 72-84.
[14] Ji Xuan-Tong, Bian Chun-Song, Jin Li-Ping, Li Sen, Qin Jun-Hong, Li Guang-Cun. Responses of root-associated microorganisms of different drought-tolerant potato varieties to drought conditions [J]. Acta Agronomica Sinica, 2026, 52(1): 165-177.
[15] ZHUO Feng-Qi, TANG Zhen-San, LEI Yu-Jun, CHENG Li-Xiang, ZHAO Tian-Tian, LYU Tai, YANG Chen, ZHANG Feng. Screening of low glycemic potato varieties (lines) based on cooking methods and regeneration temperature [J]. Acta Agronomica Sinica, 2025, 51(9): 2538-2546.
Viewed
Full text


Abstract

Cited

  Shared   
  Discussed   
No Suggested Reading articles found!