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春化作用通过抑制 BvGI 的转录阻遏物促进了糖甜菜的抽薹。

Vernalization promotes bolting in sugar beet by inhibiting the transcriptional repressors of BvGI.

机构信息

Academy of Modern Agriculture and Ecological Environment, Heilongjiang University, 150080, Harbin, China.

College of Life Sciences, Heilongjiang University, 150080, Harbin, China.

出版信息

Plant Mol Biol. 2024 Jun 5;114(3):67. doi: 10.1007/s11103-024-01460-x.

Abstract

Sugar beet (Beta vulgaris L.), a biennial sugar crop, contributes about 16% of the world's sugar production. The transition from vegetative growth, during which sugar accumulated in beet, to reproductive growth, during which sugar exhausted in beet, is determined by vernalization and photoperiod. GIGANTEA (GI) is a key photoperiodic flowering gene that is induced by vernalization in sugar beet. To identify the upstream regulatory factors of BvGI, candidate transcription factors (TF) that were co-expressed with BvGI and could bind to the BvGI promoter were screened based on weighted gene co-expression network analysis (WGCNA) and TF binding site prediction. Subsequently, their transcriptional regulatory role on the BvGI was validated through subcellular localization, dual-luciferase assays and yeast transformation tests. A total of 7,586 differentially expressed genes were identified after vernalization and divided into 18 co-expression modules by WGCNA, of which one (MEcyan) and two (MEdarkorange2 and MEmidnightblue) modules were positively and negatively correlated with the expression of BvGI, respectively. TF binding site predictions using PlantTFDB enabled the screening of BvLHY, BvTCP4 and BvCRF4 as candidate TFs that negatively regulated the expression of BvGI by affecting its transcription. Subcellular localization showed that BvLHY, BvTCP4 and BvCRF4 were localized to the nucleus. The results of dual-luciferase assays and yeast transformation tests showed that the relative luciferase activity and expression of HIS3 was reduced in the BvLHY, BvTCP4 and BvCRF4 transformants, which suggested that the three TFs inhibited the BvGI promoter. In addition, real-time quantitative reverse transcription PCR showed that BvLHY and BvTCP4 exhibited rhythmic expression characteristics similar to that of BvGI, while BvCRF4 did not. Our results revealed that vernalization crosstalked with the photoperiod pathway to initiate bolting in sugar beet by inhibiting the transcriptional repressors of BvGI.

摘要

糖甜菜(Beta vulgaris L.)是一种二年生糖料作物,约占世界糖产量的 16%。从积累糖分的营养生长到耗尽糖分的生殖生长的转变,由春化和光周期决定。GI(GIGANTEA)是一个关键的光周期开花基因,在糖甜菜中受春化诱导。为了鉴定 BvGI 的上游调控因子,基于加权基因共表达网络分析(WGCNA)和 TF 结合位点预测,筛选与 BvGI 共表达且能与 BvGI 启动子结合的候选转录因子(TF)。随后,通过亚细胞定位、双荧光素酶报告基因检测和酵母转化实验验证了它们对 BvGI 的转录调控作用。经春化处理后,共鉴定到 7586 个差异表达基因,通过 WGCNA 将其分为 18 个共表达模块,其中一个(MEcyan)和两个(MEdarkorange2 和 MEmidnightblue)模块分别与 BvGI 的表达呈正相关和负相关。利用 PlantTFDB 进行 TF 结合位点预测,筛选出 BvLHY、BvTCP4 和 BvCRF4 作为候选 TF,通过影响其转录来负调控 BvGI 的表达。亚细胞定位显示 BvLHY、BvTCP4 和 BvCRF4 定位于细胞核。双荧光素酶报告基因检测和酵母转化实验结果表明,BvLHY、BvTCP4 和 BvCRF4 转化株的相对荧光素酶活性和 HIS3 的表达降低,表明这三个 TF 抑制了 BvGI 启动子。此外,实时定量 RT-PCR 显示 BvLHY 和 BvTCP4 表现出与 BvGI 相似的节律表达特征,而 BvCRF4 则没有。我们的研究结果表明,春化与光周期途径相互作用,通过抑制 BvGI 的转录抑制因子,启动糖甜菜的抽薹。

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