Comparative QTL Mapping of Resistance to Gray Leaf Spot in Maize Based on Bioinformatics |
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Authors: | SHI Li-yu LI Xin-hai HAO Zhuan-fang XIE Chuan-xiao JI Hai-lian L Xiang-ling ZHANG Shi-huang PAN Guang-tang |
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Institution: | 1. Sichuan Agricultural University,Ya'an 625014,R.R.China;Institute of Crop Sciences,Chinese Academy of Agricultural Sciences/National Key Facilities for Crop Genetic Resources and Improvement,Beijing 100081.P.R.China 2. Institute of Crop Sciences,Chinese Academy of Agricultural Sciences/National Key Facilities for Crop Genetic Resources and Improvement,Beijing 100081.P.R.China 3. Sichuan Agricultural University,Ya'an 625014,R.R.China |
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Abstract: | The integration QTL map for gray leaf spot resistance in maize was constructed by compiling a total of 57 QTLs available with genetic map IBM2 2005 neighbors as reference. Twenty-six “real QTLs” and seven consensus QTLs were identified by refining these 57 QTLs using overview and meta-analysis approaches. Seven consensus QTLs were found on chromosomes 1.06, 2.06, 3.04, 4.06, 4.08, 5.03, and 8.06, and the map coordinates were 552.53, 425.72, 279.20, 368.97, 583.21, 308.68 and 446.14 cM, respectively. Using a synteny conservation approach based on comparative mapping between the maize genetic map and rice physical map, a total of 69 rice and maize resistance genes collected from websites Gramene and MaizeGDB were projected onto the maize genetic map IBM2 2005 neighbors, and 2 (Rgene32, ht1), 4 (Rgene5, rp3, scmv2, wsm2), and 4 (ht2, Rgene6, Rgene8 and Rgene7) positional candidate genes were found in three consensus QTLs on chromosomes 2.06, 3.04, and 8.06, respectively. The results suggested that the combination of meta-analysis of gray leaf spot in maize and sequence homologous comparison between maize and rice could be an efficient strategy for identifying major QTLs and corresponding candidate genes for the gray leaf spot. |
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Keywords: | maize(Zea mays L ) gray leaf spot quantitative trait loci positional candidate gene meta-analysis |
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