College of Life Sciences, Tianjin Key Laboratory of Animal and Plant Resistance, Tianjin Normal University, Tianjin, China.
State Key Laboratory of Plant Genomics, and National Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Innovation Academy for Seed Design, Chinese Academy of Sciences, Beijing, China.
Plant Biotechnol J. 2023 Jul;21(7):1343-1360. doi: 10.1111/pbi.14020. Epub 2023 Feb 13.
FLOWERING LOCUS T (FT), a florigen in Arabidopsis, plays critical roles in floral transition. Among 13 FT-like members in rice, OsFTL2 (Hd3a) and OsFTL3 (RFT1), two rice homologues of FT, have been well characterized to act as florigens to induce flowering under short-day (SD) and long-day (LD) conditions, respectively, but the functions of other rice FT-like members remain largely unclear. Here, we show that OsFTL12 plays an antagonistic function against Hd3a and RFT1 to modulate the heading date and plant architecture in rice. Unlike Hd3a and RFT1, OsFTL12 is not regulated by daylength and highly expressed in both SD and LD conditions, and delays the heading date under either SD or LD conditions. We further demonstrate that OsFTL12 interacts with GF14b and OsFD1, two key components of the florigen activation complex (FAC), to form the florigen repression complex (FRC) by competing with Hd3a for binding GF14b. Notably, OsFTL12-FRC can bind to the promoters of the floral identity genes OsMADS14 and OsMADS15 and suppress their expression. The osmads14 osmads15 double mutants could not develop panicles and showed erect leaves. Taken together, our results reveal that different FT-like members can fine-tune heading date and plant architecture by regulating the balance of FAC and FRC in rice.
开花时间基因座 T(FT)是拟南芥中的成花素,在花发育转变中起着关键作用。在水稻的 13 个 FT 类似物成员中,OsFTL2(Hd3a)和 OsFTL3(RFT1)是 FT 的两个水稻同源物,已被很好地鉴定为成花素,分别在短日照(SD)和长日照(LD)条件下诱导开花,但其他水稻 FT 类似物成员的功能仍不清楚。在这里,我们表明 OsFTL12 作为一个拮抗物发挥作用,对抗 Hd3a 和 RFT1,以调节水稻的抽穗期和株型。与 Hd3a 和 RFT1 不同,OsFTL12不受日照长度的调节,在 SD 和 LD 条件下均高度表达,并在 SD 或 LD 条件下延迟抽穗期。我们进一步证明,OsFTL12与 GF14b 和 OsFD1 相互作用,GF14b 和 OsFD1 是成花素激活复合物(FAC)的两个关键组成部分,通过与 Hd3a 竞争结合 GF14b 形成成花素抑制复合物(FRC)。值得注意的是,OsFTL12-FRC 可以与花发育基因 OsMADS14 和 OsMADS15 的启动子结合,并抑制其表达。osmads14 osmads15 双突变体不能发育出小穗,表现出直立的叶片。总之,我们的结果表明,不同的 FT 类似物成员可以通过调节 FAC 和 FRC 在水稻中的平衡来微调抽穗期和株型。