Mahjourimajd Saba, Taylor Julian, Rengel Zed, Khabaz-Saberi Hossein, Kuchel Haydn, Okamoto Mamoru, Langridge Peter
Australian Centre for Plant Functional Genomics (ACPFG), The University of Adelaide, PMB1, Glen Osmond, SA 5064, Australia.
School of Agriculture, Food and Wine, Waite Research Institute, The University of Adelaide, PMB 1, Glen Osmond, SA 5064, Australia.
PLoS One. 2016 Jul 20;11(7):e0159371. doi: 10.1371/journal.pone.0159371. eCollection 2016.
Genetic variation has been observed in both protein concentration in wheat grain and total protein content (protein yield). Here we describe the genetic analysis of variation for grain protein in response to nitrogen (N) supply and locate significant genomic regions controlling grain protein components in a spring wheat population. In total, six N use efficiency (NUE) field trials were carried out for the target traits in a sub-population of doubled haploid lines derived from a cross between two Australian varieties, RAC875 and Kukri, in Southern and Western Australia from 2011 to 2013. Twenty-four putative Quantitative Trait Loci (QTL) for protein-related traits were identified at high and low N supply and ten QTL were identified for the response to N for the traits studied. These loci accounted for a significant proportion of the overall effect of N supply. Several of the regions were co-localised with grain yield QTL and are promising targets for further investigation and selection in breeding programs.
在小麦籽粒中的蛋白质浓度和总蛋白质含量(蛋白质产量)方面均已观察到遗传变异。在此,我们描述了响应氮(N)供应的籽粒蛋白质变异的遗传分析,并在一个春小麦群体中定位了控制籽粒蛋白质组分的重要基因组区域。2011年至2013年期间,在澳大利亚南部和西部,对两个澳大利亚品种RAC875和Kukri杂交产生的双单倍体系亚群体中的目标性状进行了总共六项氮利用效率(NUE)田间试验。在高氮和低氮供应条件下,鉴定出了24个与蛋白质相关性状的假定数量性状位点(QTL),并且针对所研究的性状鉴定出了10个对氮响应的QTL。这些位点在氮供应的总体效应中占很大比例。其中几个区域与籽粒产量QTL共定位,是育种计划中进一步研究和选择的有希望的目标。