Maize single panicle weight main effect QTL, as well as acquisition method and application thereof
A corn, single-plant technology, applied in special data processing applications, biochemical equipment and methods, recombinant DNA technology, etc., can solve problems such as difficult to locate QTL, low marker density, and large confidence interval for QTL location.
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Embodiment 1
[0020] The present invention uses the local high-yielding early-maturing corn inbred line SG-3 as the female parent and the relatively poor yielding inbred line SG-5 as the male parent to form a hybrid combination to construct its F2 population; perform GBS sequencing typing on the F2 population, At the same time, combined with the SNP markers developed between the two parents for genotype analysis, a genetic linkage map was constructed. Then investigate the yield traits per panicle of F2, and use QTLCartographer v2.5 software compound interval mapping method to analyze the QTL of yield traits per plant, and analyze the chromosomal region and genetic effect of the main QTL.
[0021] The inventive method specifically comprises the following steps:
[0022] 1. Parental selection and population construction: Select the high-yielding, early-maturing and gray spot-resistant maize inbred line SG-3 as the female parent, and the relatively poor-yielding inbred line SG-5 as the male pa...
Embodiment 2
[0043] Six maize lines with known ear weight per plant were selected, among which, 3 lines were high-yielding maize lines, and 3 maize lines were low-yielding maize lines.
[0044] The DNA genomes of the above-mentioned 6 lines were extracted respectively, and double-digested with restriction endonucleases MseI and HaeIII, and the DNA samples (6-leaf stage seedlings) were subjected to GBS sequencing.
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