三叶赤萍种子发育过程中 B3 基因家族的特征和表达分析。

IF 3.5 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Huijuan Liu, Jinling Li, Cunbin Xu, Hongchang Liu, Zhi Zhao
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引用次数: 0

摘要

背景:B3 基因编码的转录因子在植物生长和发育中起着关键作用。结果:共鉴定出 72 个 AktB3 基因,并将其分为五个亚家族(ARF、LAV、LAV、ARF、LAV、ARF):结果:共鉴定出 72 个 AktB3 基因,并根据系统发育分析将其分为五个亚家族(ARF、LAV、RAV、HSI 和 REM)。这 72 个 AktB3 基因不均匀地分布在 16 条染色体上。对偶分析表明,片段复制在 AktB3 基因的进化过程中发挥了重要作用,并经历了纯化选择。种子各发育阶段的表达谱分析显示,7 个 AktB3 基因,尤其是 LAV 亚家族的基因(AktABI3、AktFUS3 和 AktLEC2)在开花后 70 天(DAF)时上调。值得注意的是,油菜素的表达与 LAV 亚家族基因呈强正相关,突出了它们作为脂质代谢和种子发育中枢基因的潜在作用。酵母双杂交(Y2H)和酵母单杂交(Y1H)实验证实,AktFUS3-1、AktFUS3-2 和 AktLEC2 形成蛋白复合物,并分别与 AktOLE1 启动子结合,从而调控下游基因的表达。这些结果直接证明了这些转录因子在控制脂质代谢(尤其是与油脂素蛋白有关的脂质代谢)中所起的合作作用。此外,通过对三个种子发育阶段的 miRNA 测序,发现了 591 个 miRNA 和 1,673 个目标基因对。共有 23 个 AktB3 基因被预测为 20 个 miRNA 的靶标,其中 11 个 miRNA 专门靶向 ARF 亚家族基因。特别是,miR160-x、miR160-z和miR167-z被预测为ARF亚家族基因的靶标,可能会影响种子的发育。此外,miRNA-B3调控模块,尤其是涉及ARF基因和miR160/167的模块,需要进一步研究以明确它们在种子发育中的作用:这些发现为今后对三叶青种子发育的分子调控网络进行功能研究提供了宝贵的资源。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Characterization and expression analysis of the B3 gene family during seed development in Akebia trifoliata.

Background: B3 genes encode transcription factors that play key roles in plant growth and development. However, the specific B3 genes involved in the seed development of Akebia trifoliata remain unexplored.

Results: A total of 72 AktB3 genes were identified and classified into five subfamilies (ARF, LAV, RAV, HSI, and REM) based on phylogenetic analysis. These 72 AktB3 genes were unevenly distributed across 16 chromosomes. Collinear analysis indicated that segmental duplication has played a significant role in the evolution of AktB3 genes, and underwent purification selection. Expression profiling across seed development stages revealed that seven AktB3 genes, particularly from the LAV subfamily (AktABI3, AktFUS3, AktLEC2), were up-regulated at 70 days after flowering (DAF). Notably, the expression of oleosin exhibited a strong positive correlation with LAV subfamily genes, highlighting their potential roles as hub genes in lipid metabolism and seed development. Yeast two-hybrid (Y2H) and yeast one-hybrid (Y1H) experiments confirmed that AktFUS3-1, AktFUS3-2, and AktLEC2 form protein complexes and individually bind to the AktOLE1 promoter, thereby regulating downstream gene expression. These results provide direct evidence of the cooperative role these transcription factors play in controlling lipid metabolism, particularly related to oleosin proteins. Additionally, miRNA sequencing across three seed developmental stages identified 591 miRNAs and 1,673 target gene pairs. A total of 23 AktB3 genes were predicted to be targets of 20 miRNAs, with 11 miRNAs specifically targeting the ARF subfamily genes. Particularly, miR160-x, miR160-z, and miR167-z were predicted to target ARF subfamily genes, potentially influencing seed development. Moreover, the miRNA-B3 regulatory modules, especially involving ARF genes and miR160/167, require further study to clarify their roles in seed development.

Conclusions: These findings contribute valuable resources for future functional studies of the molecular regulatory networks governing seed development in A. trifoliata.

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来源期刊
BMC Genomics
BMC Genomics 生物-生物工程与应用微生物
CiteScore
7.40
自引率
4.50%
发文量
769
审稿时长
6.4 months
期刊介绍: BMC Genomics is an open access, peer-reviewed journal that considers articles on all aspects of genome-scale analysis, functional genomics, and proteomics. BMC Genomics is part of the BMC series which publishes subject-specific journals focused on the needs of individual research communities across all areas of biology and medicine. We offer an efficient, fair and friendly peer review service, and are committed to publishing all sound science, provided that there is some advance in knowledge presented by the work.
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