Tan Qing, Han Bing, Haque Mohammad Enamul, Li Ye-Lan, Wang Yue, Wu Di, Wu Shi-Bo, Liu Ai-Zhong
Department of Economic Plants and Biotechnology, Yunnan Key Laboratory for Wild Plant Resources, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming 650204, China.
University of Chinese Academy of Sciences, Beijing 100101, China.
Plant Divers. 2022 Sep 30;45(4):469-478. doi: 10.1016/j.pld.2022.09.003. eCollection 2023 Jul.
The transcription factor WRINKLED1 (WRI1), a member of AP2 gene family that contain typical AP2 domains, has been considered as a master regulator regulating oil biosynthesis in oilseeds. However, the regulatory mechanism of RcWRI1 in regulating oil accumulation during seed development has not been clearly addressed. Castor bean () is one of the most important non-edible oil crops and its seed oils are rich in hydroxy fatty acids, widely applied in industry. In this study, based on castor bean reference genome, three genes (, and ) were identified and the expressed association of with oil accumulation were determined. Heterologous transformation of significantly increased oil content in tobacco leaf, confirming that activate lipid biosynthesis pathway. Using DNA Affinity Purification sequencing (DAP-seq) technology, we confirmed RcWRI1 binding with Transcription Start Site of genes and identified 7961 WRI1-binding candidate genes. Functionally, these identified genes were mainly involved in diverse metabolism pathways (including lipid biosynthesis). Three cis-elements AW-box (CnTnG7[CG]) and AW-boxes like (GnAnC6[GC]/GnAnC7[G]) bound with RcWRI1 were identified. Co-expression network analysis of RcWRI1 further found that RcWRI1 might be widely involved in biosynthesis of storage materials during seed development. In particular, yeast one hybrid experiments found that both AP2 domains within RcWRI1 were required in binding targeted genes. These results not only provide new evidence to understand the regulatory mechanism of RcWRI1 in regulation of oil accumulation during castor bean seed development, but also give candidate gene resource for subsequent genetic improvement toward increasing oil content in oilseed crops.
转录因子WRINKLED1(WRI1)是AP2基因家族的成员,含有典型的AP2结构域,被认为是调控油料种子中油脂生物合成的主要调节因子。然而,RcWRI1在种子发育过程中调控油脂积累的机制尚未明确。蓖麻是最重要的非食用油料作物之一,其种子油富含羟基脂肪酸,广泛应用于工业。在本研究中,基于蓖麻参考基因组,鉴定出三个RcWRI1基因(RcWRI1A、RcWRI1B和RcWRI1C),并确定了RcWRI1与油脂积累的表达关联。RcWRI1的异源转化显著增加了烟草叶片中的油脂含量,证实RcWRI1激活了脂质生物合成途径。使用DNA亲和纯化测序(DAP-seq)技术,我们证实RcWRI1与基因的转录起始位点结合,并鉴定出7961个WRI1结合候选基因。在功能上,这些鉴定出的基因主要参与多种代谢途径(包括脂质生物合成)。鉴定出了与RcWRI1结合的三个顺式元件AW-box(CnTnG7[CG])和类似AW-box的元件(GnAnC6[GC]/GnAnC7[G])。RcWRI1的共表达网络分析进一步发现,RcWRI1可能广泛参与种子发育过程中贮藏物质的生物合成。特别是,酵母单杂交实验发现RcWRI1中的两个AP2结构域都需要结合靶向基因。这些结果不仅为理解RcWRI1在蓖麻种子发育过程中调控油脂积累的机制提供了新证据,也为后续提高油料作物油脂含量的遗传改良提供了候选基因资源。