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基因及其启动子的克隆,以及功能验证揭示了其在促进早期开花中的作用以及与JmSVP蛋白的相互作用。

Gene and Its Promoter Cloning, and Functional Validation of Revealed Its Role in Promoting Early Flowering and the Interaction with the JmSVP Protein.

作者信息

Dong Tianyi, Zhang Mengmeng, Wu Jingwen, Li Jingze, Liu Chunping, Zhang Lijie

机构信息

College of Forestry, Shenyang Agricultural University, Shenyang 110866, China.

Key Laboratory of Forest Tree Genetics, Breeding and Cultivation of Liaoning Province, Shenyang 110866, China.

出版信息

Int J Mol Sci. 2024 Dec 1;25(23):12932. doi: 10.3390/ijms252312932.

Abstract

, a notable woody oil tree species, possesses both fruit and timber value. However, the complete heterodichogamous flowering mechanism in this species remains elusive. is a crucial regulator of flower bud development in . In this study, we cloned the coding DNA sequence (CDS) of the gene, revealing a 705 base pair (bp) sequence that encodes a protein of 234 amino acids. The JmSOC1 protein contains a highly conserved MADS-box domain, indicating its role as a transcription factor, and is predominantly localized in the nucleus. The gene expressed the highest in flower buds. The peak expression level of during the physiological differentiation phase occurred earlier in male flower buds of protandry (MPD) on April 10th compared to female flower buds of protandry (FPD) on April 14th; similarly, the peak expression in female flower buds of protogyny (FPG) on April 2nd preceded that in male flower buds of protogyny (MPG) on April 14th. This may be the primary reason for the earlier differentiation of the male flowers in protandry individuals and the female flowers in protogyny individuals. Overexpression of in wild-type . resulted in earlier flowering, accompanied by an upregulation of key flowering-related genes such as (), (), and (). To further explore the function of , a 782 bp promoter sequence of gene was cloned, which has been verified to have promoter activity by GUS staining. Furthermore, the interaction between the gene promoter and its upstream regulatory protein JmSVP was verified using a yeast one-hybrid. These results offer valuable insights into the molecular mechanisms underpinning the promotion of early flowering in and hold promise for laying a theoretical foundation for the flowering regulation network of this species.

摘要

[具体树种名称]是一种著名的木本油料树种,具有果实和木材价值。然而,该物种完整的异花二型开花机制仍不清楚。[相关基因名称]是[具体树种名称]花芽发育的关键调节因子。在本研究中,我们克隆了[相关基因名称]基因的编码DNA序列(CDS),揭示了一个705碱基对(bp)的序列,该序列编码一个由234个氨基酸组成的蛋白质。JmSOC1蛋白含有一个高度保守的MADS-box结构域,表明其作为转录因子的作用,并且主要定位于细胞核。[相关基因名称]基因在花芽中表达最高。在生理分化阶段,[相关基因名称]的峰值表达水平在4月10日雄性先熟(MPD)的雄花芽中比4月14日雄性先熟(FPD)的雌花芽中出现得更早;同样,4月2日雌性先熟(FPG)的雌花芽中的峰值表达先于4月14日雌性先熟(MPG)的雄花芽中的峰值表达。这可能是雄性先熟个体中雄花和雌性先熟个体中雌花提前分化的主要原因。在野生型[具体树种名称]中过表达[相关基因名称]。导致提前开花,同时上调了关键的开花相关基因,如[基因名称1]([基因名称1简称])、[基因名称2]([基因名称2简称])和[基因名称3]([基因名称3简称])。为了进一步探索[相关基因名称]的功能,克隆了[相关基因名称]基因的782 bp启动子序列,通过GUS染色已证实其具有启动子活性。此外,使用酵母单杂交验证了[相关基因名称]基因启动子与其上游调节蛋白JmSVP之间的相互作用。这些结果为[具体树种名称]中促进提前开花的分子机制提供了有价值的见解,并有望为该物种的开花调控网络奠定理论基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/092f/11641131/92e13a6796e2/ijms-25-12932-g001.jpg

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