Department of Agriculture, Forestry and Bioresources, Plant Genomics and Breeding Institute, Research Institute of Agriculture and Life Sciences, Seoul National University, Seoul, Republic of Korea.
Division of Life Sciences, Incheon National University, Incheon, Republic of Korea.
Plant Cell Environ. 2022 Aug;45(8):2446-2459. doi: 10.1111/pce.14365. Epub 2022 Jun 6.
The vegetative-to-reproductive transition requires the complex, coordinated activities of many transcriptional regulators. Rice (Oryza sativa), a facultative short-day (SD) plant, flowers early under SD (≤10 h light/day) and late under long-day (LD; ≥14 h light/day) conditions. Here, we demonstrate that rice LATE FLOWERING SEMI-DWARF (LFS) encodes an APETALA2/ETHYLENE RESPONSIVE FACTOR (AP2/ERF) transcription factor that promotes flowering under non-inductive LD conditions. LFS showed diurnal expression peaking at dawn, and transcript levels increased gradually until heading. Mutation of LFS delayed flowering under LD but not SD conditions. Expression of the LD-specific floral repressor gene LEAFY COTYLEDON2 AND FUSCA3-LIKE 1 (OsLFL1) was upregulated in lfs knockout mutants, and LFS bound directly to the GCC-rich motif in the OsLFL1 promoter, repressing OsLFL1 expression. This suggests that increased LFS activity during vegetative growth gradually attenuates OsLFL1 activity. Subsequent increases in Early heading date 1, Heading date 3a, and RICE FLOWERING LOCUS T 1 expression result in flowering under non-inductive LD conditions. LFS did not affect the expression of other OsLFL1 regulators, including OsMADS50, OsMADS56, VERNALIZATION INSENSITIVE3-LIKE 2, and GERMINATION DEFECTIVE 1, or interact with them. Our results demonstrate the novel roles of LFS in inducing flowering under natural LD conditions.
营养生长到生殖生长的转变需要许多转录调控因子的复杂协调活动。水稻(Oryza sativa)是一种兼性短日(SD)植物,在短日照(≤10 小时光照/天)下提前开花,在长日照(LD;≥14 小时光照/天)条件下开花较晚。在这里,我们证明水稻晚开花半矮化(LFS)基因编码一个 APETALA2/ETHYLENE RESPONSIVE FACTOR(AP2/ERF)转录因子,该因子在非诱导 LD 条件下促进开花。LFS 表现出昼夜表达,峰值出现在黎明,转录水平逐渐增加直到抽穗。LFS 突变延迟了 LD 条件下的开花,但不延迟 SD 条件下的开花。LD 特异性花抑制基因 LEAFY COTYLEDON2 和 FUSCA3-LIKE 1(OsLFL1)的表达在 lfs 敲除突变体中上调,并且 LFS 直接结合到 OsLFL1 启动子中的 GCC 丰富基序上,抑制 OsLFL1 的表达。这表明在营养生长过程中 LFS 活性的增加逐渐减弱了 OsLFL1 的活性。随后,早期开花日期 1、开花日期 3a 和 RICE FLOWERING LOCUS T 1 的表达导致在非诱导 LD 条件下开花。LFS 不影响其他 OsLFL1 调控因子的表达,包括 OsMADS50、OsMADS56、VERNALIZATION INSENSITIVE3-LIKE 2 和 GERMINATION DEFECTIVE 1,也不与它们相互作用。我们的结果表明 LFS 在诱导自然 LD 条件下开花方面具有新的作用。