Takeshima Ryoma, Hayashi Takafumi, Zhu Jianghui, Zhao Chen, Xu Meilan, Yamaguchi Naoya, Sayama Takashi, Ishimoto Masao, Kong Lingping, Shi Xinyi, Liu Baohui, Tian Zhixi, Yamada Tetsuya, Kong Fanjiang, Abe Jun
Research Faculty of Agriculture, Hokkaido University, Sapporo, Hokkaido 060-8589, Japan.
The Key Laboratory of Soybean Molecular Design Breeding, Northeast Institute of Geography and Agroecology, Chinese Academy of Sciences, Harbin 150081, China.
J Exp Bot. 2016 Sep;67(17):5247-58. doi: 10.1093/jxb/erw283. Epub 2016 Jul 15.
FLOWERING LOCUS T (FT) is an important floral integrator whose functions are conserved across plant species. In soybean, two orthologs, FT2a and FT5a, play a major role in initiating flowering. Their expression in response to different photoperiods is controlled by allelic combinations at the maturity loci E1 to E4, generating variation in flowering time among cultivars. We determined the molecular basis of a quantitative trait locus (QTL) for flowering time in linkage group J (Chromosome 16). Fine-mapping delimited the QTL to a genomic region of 107kb that harbors FT5a We detected 15 DNA polymorphisms between parents with the early-flowering (ef) and late-flowering (lf) alleles in the promoter region, an intron, and the 3' untranslated region of FT5a, although the FT5a coding regions were identical. Transcript abundance of FT5a was higher in near-isogenic lines for ef than in those for lf, suggesting that different transcriptional activities or mRNA stability caused the flowering time difference. Single-nucleotide polymorphism (SNP) calling from re-sequencing data for 439 cultivated and wild soybean accessions indicated that ef is a rare haplotype that is distinct from common haplotypes including lf The ef allele at FT5a may play an adaptive role at latitudes where early flowering is desirable.
成花素基因T(FT)是一种重要的开花整合因子,其功能在不同植物物种间保守。在大豆中,两个直系同源基因FT2a和FT5a在启动开花过程中起主要作用。它们对不同光周期的响应表达受成熟位点E1至E4的等位基因组合控制,导致不同品种间开花时间产生变异。我们确定了连锁群J(第16号染色体)上一个控制开花时间的数量性状位点(QTL)的分子基础。精细定位将该QTL限定在一个107kb的基因组区域内,该区域包含FT5a。我们在FT5a的启动子区域、一个内含子和3'非翻译区检测到早花(ef)和晚花(lf)等位基因的亲本之间有15个DNA多态性,尽管FT5a的编码区是相同的。FT5a在ef近等基因系中的转录丰度高于lf近等基因系,这表明不同的转录活性或mRNA稳定性导致了开花时间的差异。对439份栽培和野生大豆种质重测序数据的单核苷酸多态性(SNP)分析表明,ef是一种罕见的单倍型,与包括lf在内的常见单倍型不同。FT5a的ef等位基因可能在需要早花的纬度地区发挥适应性作用。