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Identification of QTLs for biomass production in maize (Zea mays L.) under different phosphorus levels at two sites
Authors:Junyi Chen  Yilin Cai  Li Xu  Jiuguang Wang  Wenlong Zhang  Guoqiang Wang  Delin Xu  Tianqing Chen  Xuegao Lu  Haiyan Sun  Aiying Huang  Ying Liang  Guoli Dai  Hongni Qin  Zuchun Huang  Zhaojing Zhu  Zhiguo Yang  Jun Xu  Shoufeng Kuang
Institution:1. Key Laboratory of Biotechnology and Crop Quality Improvement, Ministry of Agriculture, Maize Institute of Southwest University, Chongqing, 400716, China
2. Chongqing Medical and Pharmaceutical College, Chongqing, 401331, China
Abstract:The biomass production (BP), the leaf age (LA), and the plant height (PH) as well as the quantitative trait loci (QTLs) associated with these traits were determined for F2:3 population derived from the cross of two contrasting maize (Zea mays L.) genotypes: 082 and Ye107. By using composite interval mapping, a total of 12 and 12 distinct QTLs were identified at Kaixian and Southwest University under deficient phosphorus. Another 9 and 8 distinct QTLs were identified at two sites under normal phosphorus, respectively. Seven coincident QTLs for two traits (BP and LA) were detected in the interval bnlg1832-P2M8/j (bin 1.05) on Chromosome 1, and four consistent QTLs for one trait (PH) were coincident in the interval umc1102-P1M7/d (bin 3.05) on Chromosome 3. These coincident QTLs in two important genomic regions were identified under different phosphorus levels and two different environments. Therefore, the above two segments one (bnlg1832-P2M8/j) identified in Chromosome 1 and the other (umc1102-P1M7/d) identified in Chromosome 3 may be used in future for marker-assisted selection and high-resolution mapping leading to map-based cloning of QTLs for agronomically important traits under phosphorus deficiency.
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