Inheritance and Molecular Marker for Flowering Time in Radish (Raphanus sativus L.)

被引:0
作者
Qingbiao Wang
Yanping Wang
Li Zhang
机构
[1] Beijing Vegetable Research Center,
[2] Beijing Academy of Agriculture and Forestry Sciences,undefined
[3] Key Laboratory of Biology and Genetic Improvement of Horticultural Crops (North China),undefined
[4] Ministry of Agriculture,undefined
[5] China; Beijing Key Laboratory of Vegetable Germplasm Improvement,undefined
来源
Plant Molecular Biology Reporter | 2018年 / 36卷
关键词
Radish; Flowering time; Major gene and polygene genetic model; Molecular marker;
D O I
暂无
中图分类号
学科分类号
摘要
The mixed inheritance model involving major genes and polygenes was used to analyze the inheritance of radish flowering time trait in the B1, B2, F1, and F2 generations. Our results showed that flowering time was regulated by two additive-dominant-epistatic major genes and additive-dominant-epistatic polygenes (E-0 model). The major gene heritability estimated for the B1, B2, and F2 generations was 70.48%, 82.80%, and 86.90%, respectively, while the polygene heritability estimated was 0.00, 12.58%, and 8.19%, respectively. These results suggested that the flowering time of radish was regulated by major genes, with polygenes playing only a minor role. In practice, high heritability of major genes is favorable for an efficient selection of B2 and F2 generations during radish breeding. Six hundred twenty-six SSR markers were screened between late-bolting bulk and the early bolting bulk from F2 population. A marker RSS0119 associated to the flowering time trait was obtained, which revealed a high correlation with the flowering time in the F2 population as well as in 59 radish inbred lines (83.61% and 61.02%, respectively). Our findings will be useful for breeding late-bolting varieties.
引用
收藏
页码:878 / 887
页数:9
相关论文
共 183 条
  • [1] Cao XW(2013)SEA: a software package of segregation analysis of quantitative traits in plants J Nanjing Agric Univ 36 1-6
  • [2] Liu B(2013)Inheritance analysis of bolting correlated traits using mixed major gene plus polygene model in Brassica rapa Chin Agric Sci Bull 29 76-82
  • [3] Zhang YM(2011)Identification of quantitative trait loci controlling late bolting in Chinese cabbage (Brassica rapa L.) parental line Nou 6 gou Breed Sci 159 151-159
  • [4] Ji XH(2016)Reproductive traits and molecular evidence related to the global distribution of cultivated radish (Raphanus sativus L.) Plant Syst Evol 302 1367-1380
  • [5] Yin L(2014)A naturally occurring long insertion in the first intron in the Brassica rapa FLC2 gene causes delayed bolting Euphytica 196 213-223
  • [6] Shen BY(2014)Draft sequences of the radish (Raphanus sativus L.) genome DNA Res 21 481-490
  • [7] Zhang L(2016)Inheritance of major gene plus polygene underlying bolting and flowering traits in Pak-choi J Nucl Agric Sci 30 2318-2325
  • [8] Wang YG(2008)DNA fingerprinting and genetic diversity analysis of late-bolting radish cultivars with RAPD, ISSR and SRAP markers Sci Hortic 116 240-247
  • [9] Feng H(2007)Quantitative trait loci for flowering time and morphological traits in multiple populations of Brassica rapa J Exp Bot 58 4005-4016
  • [10] Kakizaki T(2015)The radish genome and comprehensive gene expression profile of tuberous root formation and development Sci Rep 5 10835-4325