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菘蓝中 IiSEP3 的可变剪接变体参与花发育和花转变。

Alternative splicing variants of IiSEP3 in Isatis indigotica are involved in floral transition and flower development.

机构信息

Horticulture Research Institute, Sichuan Academy of Agricultural Sciences, Horticultural Crops Biology and Germplasm Enhancement in Southwest Regions Key Laboratory of Ministry of Agriculture Rural Affairs, Vegetable Germplasm Innovation and Variety Improvement Key Laboratory of Sichuan Province, Chengdu, 610066, People's Republic of China; Key Laboratory of Resource Biology and Biotechnology in Western China (Ministry of Education) Provincial Key Laboratory of Biotechnology College of Life Sciences Northwest University, Xi'an, People's Republic of China, 710069.

Key Laboratory of Resource Biology and Biotechnology in Western China (Ministry of Education) Provincial Key Laboratory of Biotechnology College of Life Sciences Northwest University, Xi'an, People's Republic of China, 710069.

出版信息

Plant Physiol Biochem. 2024 Nov;216:109153. doi: 10.1016/j.plaphy.2024.109153. Epub 2024 Sep 25.

Abstract

The SEPALLATA3 genes regulate several aspects of plant development. This study identified four distinct splicing isoforms of the SEPALLATA3 gene in Isatis indigotica (I. indigotica). IiSEP3-1 and IiSEP3-2 have eight exons and were named as IiSEP3-2/1. However, IiSEP3-3 and IiSEP3-4 with the missing sixth exon were labeled IiSEP3ΔK3. Furthermore, the IiSEP3-1 and IiSEP3-4 amino acids sequences lack the V90. IiSEP3 splicing variants were primarily expressed in floral organs, with petals showing the highest expression. Ectopic expression of IiSEP3-2 or IiSEP3-3 may cause early flowering and reduce the number of sepals, petals, and stamens. The ectopic expression of IiSEP3-2 resulted in cauline leaves and sepals converting to carpelloid structures. In contrast, the four floral whorls prematurely wilted, and the entire flower displayed an abortive state when IiSEP3-3 was expressed ectopically. Silencing the IiSEP3 gene of I. indigotica employing VIGS (tobacco rattle virus-mediated virus-induced gene silencing) technology using the TRV-IiSEP3-2/1 vector delayed flowering time and reduced the number of petals and stamens. Plants silenced with TRV-IiSEP3ΔK3 also exhibited similar phenotypes, including fewer sepals. The transcriptome analysis of silenced plants (TRV-IiSEP3-2/1 treatment group) indicated significant alterations in 1861 genes, with 1035 upregulated and 826 downregulated. TRV-IiSEP3ΔK3 treatment altered the expression of 2063 genes in plants, with 1289 genes upregulated and 774 genes transcription inhibited. Y2H and BIFC experiments revealed that IiSEP3-2 and IiSEP3-3 had distinct interacting proteins. Thus, we can conclude that IiSEP3-2 and IiSEP3-3 interact with different proteins, affecting floral transition and organ development in I. indigotica.

摘要

SEPALLATA3 基因调控植物发育的多个方面。本研究在菘蓝(Isatis indigotica)中鉴定了 SEPALLATA3 基因的四个不同剪接异构体。IiSEP3-1 和 IiSEP3-2 具有 8 个外显子,被命名为 IiSEP3-2/1。然而,缺失第六个外显子的 IiSEP3-3 和 IiSEP3-4 被标记为 IiSEP3ΔK3。此外,IiSEP3-1 和 IiSEP3-4 的氨基酸序列缺乏 V90。IiSEP3 剪接变体主要在花器官中表达,其中花瓣表达量最高。异位表达 IiSEP3-2 或 IiSEP3-3 可能导致早花,并减少萼片、花瓣和雄蕊的数量。异位表达 IiSEP3-2 导致茎生叶和萼片转化为心皮状结构。相反,当异位表达 IiSEP3-3 时,四个花轮过早枯萎,整个花呈现出败育状态。采用 VIGS(烟草脆裂病毒介导的病毒诱导基因沉默)技术,利用 TRV-IiSEP3-2/1 载体沉默 I. indigotica 的 IiSEP3 基因,会延迟开花时间并减少花瓣和雄蕊的数量。用 TRV-IiSEP3ΔK3 沉默的植物也表现出类似的表型,包括较少的萼片。沉默植物(TRV-IiSEP3-2/1 处理组)的转录组分析表明,1861 个基因的表达发生了显著变化,其中 1035 个基因上调,826 个基因下调。TRV-IiSEP3ΔK3 处理改变了植物中 2063 个基因的表达,其中 1289 个基因上调,774 个基因转录抑制。Y2H 和 BIFC 实验表明,IiSEP3-2 和 IiSEP3-3 具有不同的相互作用蛋白。因此,我们可以得出结论,IiSEP3-2 和 IiSEP3-3 与不同的蛋白相互作用,影响菘蓝的花发育和器官发育。

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