A Genetic Map Between Gossypium hirsutum and the Brazilian Endemic G. mustelinum and Its Application to QTL Mapping

Author:

Wang Baohua123,Liu Limei3,Zhang Dong1,Zhuang Zhimin23,Guo Hui1,Qiao Xin1,Wei Lijuan1,Rong Junkang14,May O Lloyd3,Paterson Andrew H11,Chee Peng W3

Affiliation:

1. Plant Genome Mapping Laboratory, University of Georgia, Athens, Georgia 30602

2. School of Life Sciences, Nantong University, Nantong, Jiangsu 226019, China

3. Department of Crop and Soil Sciences, University of Georgia, Tifton, Georgia 31793

4. School of Agriculture and Food Science, Zhejiang A&F University, Lin’an, Hangzhou, Zhejiang 311300, China

Abstract

Abstract Among the seven tetraploid cotton species, little is known about transmission genetics and genome organization in Gossypium mustelinum, the species most distant from the source of most cultivated cotton, G. hirsutum. In this research, an F2 population was developed from an interspecific cross between G. hirsutum and G. mustelinum (HM). A genetic linkage map was constructed mainly using simple sequence repeat (SSRs) and restriction fragment length polymorphism (RFLP) DNA markers. The arrangements of most genetic loci along the HM chromosomes were identical to those of other tetraploid cotton species. However, both major and minor structural rearrangements were also observed, for which we propose a parsimony-based model for structural divergence of tetraploid cottons from common ancestors. Sequences of mapped markers were used for alignment with the 26 scaffolds of the G. hirsutum draft genome, and showed high consistency. Quantitative trait locus (QTL) mapping of fiber elongation in advanced backcross populations derived from the same parents demonstrated the value of the HM map. The HM map will serve as a valuable resource for QTL mapping and introgression of G. mustelinum alleles into G. hirsutum, and help clarify evolutionary relationships between the tetraploid cotton genomes.

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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