Yan Yuntao, Chen Ya, Zhu Xiaoya, Wang Yan, Qi Hui, Gui Jinxin, Zhang Haiqing, He Jiwai
College of Agronomy, Hunan Agricultural University, Changsha, 420128, China.
Hunan Institute of Nuclear Agricultural Science and Space Breeding, Hunan Academy of Agricultural Sciences, Changsha, 410125, China.
Theor Appl Genet. 2025 Jan 30;138(2):39. doi: 10.1007/s00122-024-04812-9.
The tiller angle, one of the critical factors that determine the rice plant type, is closely related to rice yield. An appropriate rice tiller angle can improve rice photosynthetic efficiency and increase yields. In this study, we identified a transcription factor, TILLRE ANGLE CONTROL 8 (TAC8), that is highly expressed in the rice tiller base and positively regulates the tiller angle by regulating cell length and endogenous auxin content; TAC8 encodes a TEOSINTE BRANCHED1/CYCLOIDEA/PCF transcriptional activator that is highly expressed in the nucleus. RNA-seq revealed that TAC8 is involved mainly in the photoperiod and abiotic stress response in rice. Yeast two-hybrid assays verified that TAC8 interacts with CHLOROPHYLL A/B-BINDING PROTEIN 1, which responds to photoperiod, and haplotype analysis revealed that a 34-bp deletion at position 1516 in the promoter region and a 9-bp deletion at position 153 in the coding region can result in impaired function or loss of function of TAC8. This study provides a new genetic resource for designing ideal plant types with appropriate rice tiller angle.
分蘖角度是决定水稻株型的关键因素之一,与水稻产量密切相关。合适的水稻分蘖角度可提高水稻光合效率并增加产量。在本研究中,我们鉴定出一个转录因子,分蘖角度控制8(TAC8),其在水稻分蘖基部高度表达,并通过调节细胞长度和内源生长素含量正向调控分蘖角度;TAC8编码一种在细胞核中高度表达的玉米分枝1/类周期蛋白/PCF转录激活因子。RNA测序显示,TAC8主要参与水稻的光周期和非生物胁迫响应。酵母双杂交试验证实,TAC8与响应光周期的叶绿素a/b结合蛋白1相互作用,单倍型分析表明,启动子区域第1516位的34 bp缺失和编码区域第153位的9 bp缺失会导致TAC8功能受损或丧失。本研究为设计具有合适水稻分蘖角度的理想株型提供了新的遗传资源。