State Key Laboratory for Crop Genetics and Germplasm Enhancement, Jiangsu Provincial Center of Plant Gene Engineering, Nanjing Agricultural University, Nanjing 210095, China.
Plant Physiol. 2010 Aug;153(4):1747-58. doi: 10.1104/pp.110.156943. Epub 2010 Jun 21.
The three most important agronomic traits of rice (Oryza sativa), yield, plant height, and flowering time, are controlled by many quantitative trait loci (QTLs). In this study, a newly identified QTL, DTH8 (QTL for days to heading on chromosome 8), was found to regulate these three traits in rice. Map-based cloning reveals that DTH8 encodes a putative HAP3 subunit of the CCAAT-box-binding transcription factor and the complementary experiment increased significantly days to heading, plant height, and number of grains per panicle in CSSL61 (a chromosome segment substitution line that carries the nonfunctional DTH8 allele) with the Asominori functional DTH8 allele under long-day conditions. DTH8 is expressed in most tissues and its protein is localized to the nucleus exclusively. The quantitative real-time PCR assay revealed that DTH8 could down-regulate the transcriptions of Ehd1 (for Early heading date1) and Hd3a (for Heading date3a; a rice ortholog of FLOWERING LOCUS T) under long-day conditions. Ehd1 and Hd3a can also be down-regulated by the photoperiodic flowering genes Ghd7 and Hd1 (a rice ortholog of CONSTANS). Meanwhile, the transcription of DTH8 has been proved to be independent of Ghd7 and Hd1, and the natural mutation of this gene caused weak photoperiod sensitivity and shorter plant height. Taken together, these data indicate that DTH8 probably plays an important role in the signal network of photoperiodic flowering as a novel suppressor as well as in the regulation of plant height and yield potential.
水稻(Oryza sativa)的三个最重要的农艺性状,产量、株高和开花时间,由许多数量性状位点(QTL)控制。在这项研究中,发现了一个新的 QTL,DTH8(第 8 号染色体上的穗期 QTL),它调节水稻的这三个性状。基于图谱的克隆表明,DTH8 编码一个假定的 CCAAT 盒结合转录因子的 HAP3 亚基,互补实验显著增加了 CSSL61(携带非功能 DTH8 等位基因的染色体片段替换系)在长日照条件下的穗期、株高和每穗粒数,同时带有 Asominori 功能 DTH8 等位基因。DTH8 在大多数组织中表达,其蛋白质仅定位于核内。定量实时 PCR 检测表明,DTH8 可以下调 Ehd1(早期穗期 1)和 Hd3a(穗期 3a;水稻的 FLOWERING LOCUS T 同源基因)在长日照条件下的转录。Ehd1 和 Hd3a 也可以被光周期开花基因 Ghd7 和 Hd1(水稻的 CONSTANS 同源基因)下调。同时,DTH8 的转录被证明独立于 Ghd7 和 Hd1,该基因的自然突变导致较弱的光周期敏感性和较短的株高。总之,这些数据表明,DTH8 可能作为一个新的抑制因子在光周期开花信号网络中发挥重要作用,同时也在调节株高和产量潜力方面发挥作用。