QTL analysis and fine mapping of a QTL for yield-related traits in wheat grown in dry and hot environments

被引:0
作者
Habtamu Tura
James Edwards
Vijay Gahlaut
Melissa Garcia
Beata Sznajder
Ute Baumann
Fahimeh Shahinnia
Matthew Reynolds
Peter Langridge
Harindra Singh Balyan
Pushpendra K. Gupta
Thorsten Schnurbusch
Delphine Fleury
机构
[1] University of Adelaide,School of Agriculture, Food and Wine, Waite Campus
[2] Australian Grain Technologies,Department of Genetics and Plant Breeding
[3] Ch. Charan Singh University,Institute for Crop Science and Plant Breeding
[4] Bavarian State Research Center for Agriculture,undefined
[5] International Maize and Wheat Improvement Center (CIMMYT),undefined
[6] Julius-Kühn-Institute,undefined
[7] Leibniz-Institute of Plant Genetics and Crop Plant Research (IPK),undefined
来源
Theoretical and Applied Genetics | 2020年 / 133卷
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摘要
Genetic control of grain yield and phenology was examined in the Excalibur/Kukri doubled haploid mapping population grown in 32 field experiments across the climatic zones of southern Australia, India and north-western Mexico where the wheat crop experiences drought and heat stress. A total of 128 QTL were identified for four traits: grain yield, thousand grain weight (TGW), days to heading and grain filling duration. These QTL included 24 QTL for yield and 27 for TGW, showing significant interactions with the environment (Q * E). We also identified 14 QTL with a significant, small main effects on yield across environments. The study focussed on a region of chromosome 1B where two main effect QTL were found for yield and TGW without the confounding effect of phenology. Excalibur was the source of favourable alleles: QYld.aww-1B.2 with a peak at 149.5–150.1 cM and QTgw.aww-1B at 168.5–171.4 cM. We developed near isogenic lines (NIL) for the interval including QYld.aww-1B.2 and QTgw.aww-1B and evaluated them under semi-controlled conditions. Significant differences in four pairs of NIL were observed for grain yield but not for TGW, confirming a positive effect of the Excalibur allele for QYld.aww-1B.2. The interval containing QYld.aww-1B.2 was narrowed down to 2.9 cM which corresponded to a 2.2 Mbp genomic region on the chromosome 1B genomic reference sequence of cv. Chinese Spring and contained 39 predicted genes.
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页码:239 / 257
页数:18
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