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Allelic variation of LMW-GS composition in Chinese wheat landraces of the Yangtze-River region detected by MALDI-TOF-MS

机译:MALDI-TOF-MS检测长江流域中国小麦地方品种LMW-GS组成的等位基因变异

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摘要

Low molecular weight glutenin subunits are important components of wheat storage proteins, which play an important role in determining end-use quality of common wheat. A newly established matrix-assisted laser desorption/ionization time-of-flight mass spectrometry (MALDI-TOF-MS) procedure was used to analyze 478 landraces of bread wheat collected from the Yangtze-River region in China. Results indicated that 17 alleles at three loci: Glu-A3, Glu-B3 and Glu-D3 were identified, resulting in 87 different allele combinations. Of the 17 alleles detected at all the Glu-3 loci, five belonged to Glu-A3, seven to Glu-B3 and five to Glu-D3 locus. MALDI-TOF-MS indicated Glu-A3a/c was present in 72.8%, Glu-A3b in 8.4%, Glu-A3d in 8.4%, Glu-A3f in 5.2% and Glu-A3e in 3.6% lines. Seven types of alleles were identified at the Glu-B3 locus: Glu-B3d/i (25.5%), Glu-B3b (21.3%), Glu-B3c (16.9%), Glu-B3h (13.8%), Glu-B3f (8.4%), Glu-B3a (8.2%), and Glu-B3g (5.2%). Five types of Glu-D3 alleles were detected: Glu-D3a (58.4%), Glu-D3c (22.6%), Glu-D3d (15.5%), Glu-D3b (3.3%) and Glu-D3f (0.2%). Four new alleles that showed abnormal MALDI-TOF spectrum patterns were identified at the Glu-A3 and Glu-B3 loci. A detailed study is needed to further characterize these alleles and their potential usage for wheat improvement.
机译:低分子量谷蛋白亚基是小麦贮藏蛋白的重要组成部分,在决定普通小麦的最终使用质量中起着重要作用。采用新建立的基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)方法分析了从中国长江流域采集的478个面包小麦的地方品种。结果表明,在三个基因座(Glu-A3,Glu-B3和Glu-D3)上鉴定了17个等位基因,产生了87种不同的等位基因组合。在所有Glu-3位点检测到的17个等位基因中,五个属于Glu-A3,七个属于Glu-B3,五个属于Glu-D3基因座。 MALDI-TOF-MS表明Glu-A3a / c以72.8%存在,Glu-A3b以8.4%存在,Glu-A3d以8.4%存在,Glu-A3f以5.2%存在,Glu-A3e以3.6%系存在。在Glu-B3位点鉴定出七种等位基因:Glu-B3d / i(25.5%),Glu-B3b(21.3%),Glu-B3c(16.9%),Glu-B3h(13.8%),Glu-B3f (8.4%),Glu-B3a(8.2%)和Glu-B3g(5.2%)。检测到五种类型的Glu-D3等位基因:Glu-D3a(58.4%),Glu-D3c(22.6%),Glu-D3d(15.5%),Glu-D3b(3.3%)和Glu-D3f(0.2%)。在Glu-A3和Glu-B3位点鉴定了四个显示异常MALDI-TOF谱图模式的新等位基因。需要进行详细研究以进一步表征这些等位基因及其在小麦改良中的潜在用途。

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