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基因组范围分析和山槐 SPL 基因家族的分子剖析。

Genome-wide analysis and molecular dissection of the SPL gene family in Fraxinus mandshurica.

机构信息

State Key Laboratory of Tree Genetics and Breeding, Northeast Forestry University, Harbin, 150040, China.

College of Life Science, Northeast Forestry University, Harbin, 150040, China.

出版信息

BMC Plant Biol. 2022 Sep 21;22(1):451. doi: 10.1186/s12870-022-03838-9.

Abstract

BACKGROUND

SQUAMOSA promoter binding protein-like (SPL) is a unique family of transcription factors in plants, which is engaged in regulating plant growth and development, physiological and biochemical processes. Fraxinus mandshurica is an excellent timber species with a wide range of uses in northeastern China and enjoys a high reputation in the international market. SPL family analysis has been reported in some plants while SPL family analysis of Fraxinus mandshurica has not been reported.

RESULTS

We used phylogeny, conserved motifs, gene structure, secondary structure prediction, miR156 binding sites, promoter cis elements and GO annotation to systematically analyze the FmSPLs family. This was followed by expression analysis by subcellular localization, expression patterns at various tissue sites, abiotic stress and hormone induction. Because FmSPL2 is highly expressed in flowers it was selected to describe the SPL gene family of Fraxinus mandshurica by ectopic expression. Among them, 10 FmSPL genes that were highly expressed at different loci were selected for expression analysis under abiotic stress (NaCl and Cold) and hormone induction (IAA and ABA). These 10 FmSPL genes showed corresponding trends in response to both abiotic stress and hormone induction. We showed that overexpression of FmSPL2 in transgenic Nicotiana tabacum L. resulted in taller plants, shorter root length, increased root number, rounded leaves, and earlier flowering time.

CONCLUSIONS

We identified 36 SPL genes, which were classified into seven subfamilies based on sequence analysis. FmSPL2 was selected for subsequent heterologous expression by analysis of expression patterns in various tissues and under abiotic stress and hormone induction, and significant phenotypic changes were observed in the transgenic Nicotiana tabacum L. These results provide insight into the evolutionary origin and biological significance of plant SPL. The aim of this study was to lay the foundation for the genetic improvement of Fraxinus mandshurica and the subsequent functional analysis of FmSPL2.

摘要

背景

SQUAMOSA 启动子结合蛋白样(SPL)是植物中独特的转录因子家族,参与调节植物的生长发育、生理生化过程。水曲柳是东北地区用途广泛的优良木材树种,在国际市场享有较高声誉。已有一些植物的 SPL 家族被分析过,而水曲柳的 SPL 家族尚未被报道。

结果

我们使用系统发育、保守基序、基因结构、二级结构预测、miR156 结合位点、启动子顺式元件和 GO 注释,对 FmSPLs 家族进行了系统分析。然后通过亚细胞定位、不同组织部位的表达模式、非生物胁迫和激素诱导进行表达分析。由于 FmSPL2 在花中高度表达,因此选择其来描述水曲柳的 SPL 基因家族,并通过异位表达进行验证。其中,选择了 10 个在不同位点高度表达的 FmSPL 基因,在非生物胁迫(NaCl 和冷胁迫)和激素诱导(IAA 和 ABA)下进行表达分析。这 10 个 FmSPL 基因对非生物胁迫和激素诱导的响应表现出相应的趋势。我们发现,过表达 FmSPL2 会导致转基因烟草植株变高、根长变短、根数量增加、叶片变圆、开花时间提前。

结论

我们鉴定了 36 个 SPL 基因,根据序列分析将其分为七个亚家族。通过分析各种组织和非生物胁迫及激素诱导下的表达模式,选择 FmSPL2 进行后续的异源表达,并在转基因烟草中观察到显著的表型变化。这些结果为植物 SPL 的进化起源和生物学意义提供了深入的了解。本研究旨在为水曲柳的遗传改良和随后的 FmSPL2 功能分析奠定基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1ae/9490987/4dd4f3b5ed59/12870_2022_3838_Fig1_HTML.jpg

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