Centro de Investigaciones y Transferencia del Noroeste de la Provincia de Buenos Aires (CITNOBA, CONICET-UNNOBA-UNSADA), Monteagudo 2772, CP 2700, Pergamino, Buenos Aires, Argentina.
Instituto Nacional de Tecnología Agropecuaria (INTA), EEA Marcos Juárez. Ruta 12 s/n, CP 2850, Marcos Juárez, Córdoba, Argentina.
Theor Appl Genet. 2020 Sep;133(9):2655-2671. doi: 10.1007/s00122-020-03623-y. Epub 2020 Jun 9.
This study identified and validated two QTL associated with spike fertile floret and fruiting efficiencies. They represent two new loci to use in MAS to improve wheat yield potential. The spike fruiting efficiency (FE-grains per unit spike dry weight at anthesis, GN/SDW) is a promising trait to improve wheat yield potential. It depends on fertile floret efficiency (fertile florets per unit SDW-FFE, FF/SDW) and grain set (grains per fertile floret-GST). Given its difficult measurement, it is often estimated as the grains per unit of nongrain spike dry weight at maturity (FEm). In this study, quantitative trait loci (QTL) were mapped using a double haploid population (Baguette 19/BIOINTA 2002, with high and low FE, respectively) genotyped with the iSelect 90 K SNP array and evaluated in five environments. We identified 37 QTL, but two were major with an R > 10% and stable for being at least present in three environments: the QFEm.perg-3A (on Chr. 3A, 51.6 cM, 685.12 Mb) for FEm and the QFFE.perg-5A (on Chr. 5A, 42.1 cM, 461.49 Mb) for FFE, FE and FEm. Both QTL were validated using two independent F populations and KASP markers. For the most promising QTL, QFFE.perg-5A, the presence of the allele for high FFE resulted in + 4% FF, + 9% GN, + 13% GST, + 16% yield gSDW and + 5% yield spike. QFEm.perg-3A and QFFE.perg-5A represent two new loci to use in MAS to improve wheat yield potential.
本研究鉴定并验证了与小穗结实小花和结实效率相关的两个 QTL。它们代表了两个新的位点,可用于 MAS 以提高小麦产量潜力。小穗结实效率(开花期每单位小穗干重的结实粒数,GN/SDW)是提高小麦产量潜力的有希望的性状。它取决于结实小花效率(每单位 SDW 的结实小花数,FF/SDW)和籽粒结实(每结实小花的籽粒数-GST)。由于其难以测量,通常估计为成熟期每单位非籽粒小穗干重的粒数(FEm)。在这项研究中,使用双单倍体群体(Baguette 19/BIOINTA 2002,具有高和低 FE),通过 iSelect 90 K SNP 阵列进行基因型分析,并在五个环境中进行评估,对数量性状位点(QTL)进行了作图。我们鉴定了 37 个 QTL,但其中两个是主要的,其 R 值大于 10%,并且至少在三个环境中存在稳定性:QFEm.perg-3A(位于 Chr.3A,51.6 cM,685.12 Mb)用于 FEm 和 QFFE.perg-5A(位于 Chr.5A,42.1 cM,461.49 Mb)用于 FFE、FFE 和 FEm。这两个 QTL 都使用两个独立的 F 群体和 KASP 标记进行了验证。对于最有前途的 QTL,QFFE.perg-5A,高 FFE 的等位基因的存在导致 FF 增加 4%,GN 增加 9%,GST 增加 13%,gSDW 产量增加 16%,穗产量增加 5%。QFEm.perg-3A 和 QFFE.perg-5A 代表了两个新的位点,可用于 MAS 以提高小麦产量潜力。