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A quantitative trait locus for long photoperiod response mapped on chromosome 4H in barley
Authors:Xifeng Ren  Chengdao Li  Mehmet Cakir  Wenying Zhang  Christy Grime  Xiao-Qi Zhang  Sue Broughton  Dongfa Sun  Reg Lance
Affiliation:1. College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China
2. Department of Agriculture and Food/Agricultural Research Western Australia, 3 Baron-Hay Court, South Perth, WA, 6151, Australia
3. Western Australia State Agricultural Biotechnology Centre, Murdoch University, Perth, WA, 6150, Australia
4. Department of Agronomy, School of Agriculture, Yangtze University, Jingzhou, 434025, China
5. Natural and Agricultural Sciences, The University of Western Australia, 35 Stirling Highway, Crawley, WA, 6009, Australia
Abstract:Photoperiod response is a key determinant for barley adaptation to diverse environments. A major quantitative trait locus (QTL) for response to long photoperiod was identified in Australia (Perth, 31°56??S) and China (Wuhan, 30°33??N) using 178 doubled haploid lines derived from a cross of an Australian barley, Baudin, and a Canadian barley, AC Metcalfe. The QTL was detected as a major QTL in the 18-h photoperiod glasshouse experiments and mapped to the Xp12m50B199?CXp13m47B399 interval on chromosome 4H with a LOD score of 57 in Australia and confirmed in China. The single QTL accounted for 77.48 and 37.81% of phenotypic variation for long photoperiod response in Australia and China, respectively. The same QTL also controlled heading date in Australia, under normal and extended photoperiod conditions, and in China, under extended photoperiod and late-sown conditions. The QTL advanced heading date by 27.8?days in Australia and 42.5?days in China under a 18-h photoperiod. In addition, QTL for heading date were identified on chromosomes 2H and 3H. The chromosome 3H QTL was associated with the denso gene and detected in all conditions, but the chromosome 2H QTL was only detected in Australia. The new photoperiod response QTL, Qhea.BM.4-13/Qpho.BM.4-13, on chromosome 4H and its associated markers will provide an alternative for plant breeders developing new varieties for different environments using marker-assisted selection.
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