首页> 外文OA文献 >Identification of Low Molecular Weight Glutenin Alleles by Matrix-Assisted Laser Desorption/Ionization Time-Of-Flight Mass Spectrometry (MALDI-TOF-MS) in Common Wheat (Triticum aestivum L.)
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Identification of Low Molecular Weight Glutenin Alleles by Matrix-Assisted Laser Desorption/Ionization Time-Of-Flight Mass Spectrometry (MALDI-TOF-MS) in Common Wheat (Triticum aestivum L.)

机译:基质辅助激光解吸/电离飞行时间质谱(MALDI-TOF-MS)鉴定普通小麦(Triticum aestivum L.)中的低分子量谷蛋白等位基因

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摘要

Low molecular weight glutenin subunits (LMW-GS) play an important role in determining dough properties and breadmaking quality. However, resolution of the currently used methodologies for analyzing LMW-GS is rather low which prevents an efficient use of genetic variations associated with these alleles in wheat breeding. The aim of the current study is to evaluate and develop a rapid, simple, and accurate method to differentiate LMW-GS alleles using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry. A set of standard single LMW-GS allele lines as well as a suite of well documented wheat cultivars were collected from France, CIMMYT, and Canada. Method development and optimization were focused on protein extraction procedures and MALDI-TOF instrument settings to generate reproducible diagnostic spectrum peak profiles for each of the known wheat LMW-GS allele. Results revealed a total of 48 unique allele combinations among the studied genotypes. Characteristic MALDI-TOF peak patterns were obtained for 17 common LMW-GS alleles, including 5 (b, a or c, d, e, f), 7 (a, b, c, d or i, f, g, h) and 5 (a, b, c, d, f) patterns or alleles for the Glu-A3, Glu-B3, and Glu-D3 loci, respectively. In addition, some reproducible MALDI-TOF peak patterns were also obtained that did not match with any known alleles. The results demonstrated a high resolution and throughput nature of MALDI-TOF technology in analyzing LMW-GS alleles, which is suitable for application in wheat breeding programs in processing a large number of wheat lines with high accuracy in limited time. It also suggested that the variation of LMW-GS alleles is more abundant than what has been defined by the current nomenclature system that is mainly based on SDS-PAGE system. The MALDI-TOF technology is useful to differentiate these variations. An international joint effort may be needed to assign allele symbols to these newly identified alleles and determine their effects on end-product quality attributes.
机译:低分子量谷蛋白亚基(LMW-GS)在确定面团特性和面包制作质量中起重要作用。然而,当前用于分析LMW-GS的方法的分辨率相当低,这妨碍了在小麦育种中有效利用与这些等位基因相关的遗传变异。本研究的目的是评估和开发一种快速,简单,准确的方法,使用基质辅助激光解吸/电离飞行时间质谱法来区分LMW-GS等位基因。从法国,CIMMYT和加拿大收集了一组标准的单一LMW-GS等位基因系以及一整套有据可查的小麦品种。方法的开发和优化集中在蛋白质提取程序和MALDI-TOF仪器设置上,以为每个已知的小麦LMW-GS等位基因生成可再现的诊断谱峰图。结果显示在所研究的基因型中共有48种独特的等位基因组合。获得了17个常见LMW-GS等位基因的特征MALDI-TOF峰模式,包括5个(b,a或c,d,e,f),7个(a,b,c,d或i,f,g,h) Glu-A3,Glu-B3和Glu-D3位点分别具有5个(a,b,c,d,f)模式或等位基因。此外,还获得了一些可复制的MALDI-TOF峰模式,这些模式与任何已知的等位基因都不匹配。结果表明,MALDI-TOF技术具有高分辨率和通量分析LMW-GS等位基因的特性,适用于小麦育种计划,可在有限的时间内高精度处理大量小麦品系。这也表明,LMW-GS等位基因的变异比目前主要基于SDS-PAGE系统的命名系统所定义的变异更为丰富。 MALDI-TOF技术可用于区分这些变化。可能需要国际共同努力,将等位基因符号分配给这些新近识别的等位基因,并确定它们对最终产品质量属性的影响。

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