State Key Laboratory of Plant Physiology and Biochemistry, China Agricultural University, Beijing 100193, China.
State Key Laboratory of Plant Physiology and Biochemistry, China Agricultural University, Beijing 100193, China.
Mol Plant. 2019 Aug 5;12(8):1075-1089. doi: 10.1016/j.molp.2019.04.005. Epub 2019 Apr 16.
The modification of plant architecture is a crucial target in rice domestication and modern genetic improvement. Although several genes regulating rice plant architecture have been characterized, the molecular mechanisms underlying rice plant architecture domestication remain largely unclear. Here we show that the inclined tiller growth in wild rice is controlled by a single dominant gene, TILLER INCLINED GROWTH 1 (TIG1), which is located on chromosome 8 and encodes a TCP transcriptional activator. TIG1 is primarily expressed in the adaxial side of the tiller base, promotes cell elongation, and enlarges the tiller angle in wild rice. Variations in the TIG1 promoter of indica cultivars (tig1 allele) resulted in decreased expression of TIG1 in the adaxial side of tiller base and reduced cell length and tiller angle, leading to the transition from inclined tiller growth in wild rice to erect tiller growth during rice domestication. TIG1 positively regulates the expression of EXPA3, EXPB5, and SAUR39 to promote cell elongation and increase the tiller angle. Selective sweep analysis revealed that the tig1 allele was selected in indica cultivars by human beings. The cloning and characterization of TIG1 supports a new scenario of plant architecture evolution in rice.
植物形态的改变是水稻驯化和现代遗传改良的一个关键目标。尽管已经有几个调控水稻植物形态的基因被鉴定出来,但水稻植物形态驯化的分子机制在很大程度上仍不清楚。在这里,我们表明,野生稻中倾斜分蘖的生长由一个位于 8 号染色体上的主效显性基因 TILLER INCLINED GROWTH 1(TIG1)调控,该基因编码一个 TCP 转录激活因子。TIG1 主要在分蘖基部的腹侧表达,促进细胞伸长,并增加野生稻的分蘖角度。籼稻品种中 TIG1 启动子的变异(tig1 等位基因)导致 TIG1 在分蘖基部腹侧的表达减少,细胞长度和分蘖角度降低,从而导致野生稻中倾斜分蘖的生长向水稻驯化过程中的直立分蘖的生长转变。TIG1 正向调控 EXPA3、EXPB5 和 SAUR39 的表达,促进细胞伸长和增加分蘖角度。选择清除分析表明, tig1 等位基因在籼稻品种中被人类选择。TIG1 的克隆和鉴定支持了水稻植物形态进化的一个新情景。