Funatsuki H, Kawaguchi K, Matsuba S, Sato Y, Ishimoto M
National Agricultural Research Center for Hokkaido Region (NARCH), Hitsujigaoka, Toyohira-Ku, Sapporo 062-8555, Japan.
Theor Appl Genet. 2005 Sep;111(5):851-61. doi: 10.1007/s00122-005-0007-2. Epub 2005 Oct 18.
Low temperatures in summer bring about drastic reduction in seed yield of soybean [Glycine max (L.) Merr.]. To identify quantitative trait loci (QTL) associated with chilling tolerance during the reproductive growth in soybean, a recombinant inbred line (RIL) population consisting of 104 F(6)-derived lines was created from a cross between two cultivars, chilling-tolerant Hayahikari and chilling-sensitive Toyomusume. The RIL were genotyped with 181 molecular and phenotypic markers and were scored with regard to chilling tolerance, which was evaluated by comparison of seed-yielding abilities in two artificial climatic environments at chilling and usual temperatures. Three QTL were detected for chilling tolerance in seed-yielding ability. Two of them, qCTTSW 1 and qCTTSW 2, were mapped near QTL for flowering time, and the latter had an epistatic interaction with a marker locus located near another QTL for flowering time, where no significant QTL for chilling tolerance was detected. The analysis of an F(2) population derived from the cross between Hayahikari and an RIL of the Hayahikari genotype at all QTL for flowering time confirmed the effect of the third QTL, qCTTSW 3, on chilling tolerance and suggested that qCTTSW 1 was basically independent of the QTL for flowering time. The findings and QTL found in this study may provide useful information for marker-assisted selection (MAS) and further genetic studies on soybean chilling tolerance.
夏季低温会导致大豆[Glycine max (L.) Merr.]种子产量大幅下降。为了鉴定与大豆生殖生长期间耐冷性相关的数量性状基因座(QTL),以耐冷品种早光和冷敏感品种丰武豆为亲本杂交,构建了一个由104个F(6)衍生株系组成的重组自交系(RIL)群体。利用181个分子和表型标记对RIL进行基因分型,并根据耐冷性进行评分,耐冷性通过比较低温和常温两种人工气候环境下的种子产量能力来评估。在种子产量能力方面检测到3个耐冷性QTL。其中两个,qCTTSW 1和qCTTSW 2,定位在开花时间QTL附近,后者与另一个开花时间QTL附近的标记位点存在上位性互作,在该位点未检测到显著的耐冷性QTL。对早光与早光基因型RIL在所有开花时间QTL处杂交得到的F(2)群体进行分析,证实了第三个QTL,qCTTSW 3,对耐冷性的影响,并表明qCTTSW 1基本独立于开花时间QTL。本研究的结果和发现的QTL可能为大豆耐冷性的标记辅助选择(MAS)和进一步的遗传研究提供有用信息。