Institute of Food Biotechnology and Genomics of National Academy of Sciences of Ukraine, Kyiv, 02000, Ukraine.
JSC "Farmak", Kyiv, 04080, Ukraine.
BMC Genomics. 2024 Jun 14;25(1):599. doi: 10.1186/s12864-024-10503-y.
Tubulins play crucial roles in numerous fundamental processes of plant development. In flowering plants, tubulins are grouped into α-, β- and γ-subfamilies, while α- and β-tubulins possess a large isotype diversity and gene number variations among different species. This circumstance leads to insufficient recognition of orthologous isotypes and significantly complicates extrapolation of obtained experimental results, and brings difficulties for the identification of particular tubulin isotype function. The aim of this research is to identify and characterize tubulins of an emerging biofuel crop Camelina sativa.
We report comprehensive identification and characterization of tubulin gene family in C. sativa, including analyses of exon-intron organization, duplicated genes comparison, proper isotype designation, phylogenetic analysis, and expression patterns in different tissues. 17 α-, 34 β- and 6 γ-tubulin genes were identified and assigned to a particular isotype. Recognition of orthologous tubulin isotypes was cross-referred, involving data of phylogeny, synteny analyses and genes allocation on reconstructed genomic blocks of Ancestral Crucifer Karyotype. An investigation of expression patterns of tubulin homeologs revealed the predominant role of N (A) and N (B) subgenomes in tubulin expression at various developmental stages, contrarily to general the dominance of transcripts of H (C) subgenome.
For the first time a complete set of tubulin gene family members was identified and characterized for allohexaploid C. sativa species. The study demonstrates the comprehensive approach of precise inferring gene orthology. The applied technique allowed not only identifying C. sativa tubulin orthologs in model Arabidopsis species and tracking tubulin gene evolution, but also uncovered that A. thaliana is missing orthologs for several particular isotypes of α- and β-tubulins.
微管蛋白在植物发育的众多基本过程中起着至关重要的作用。在开花植物中,微管蛋白分为α、β和γ亚家族,而α和β微管蛋白在不同物种中有很大的同工型多样性和基因数量变化。这种情况导致了对同源同工型的识别不足,极大地复杂化了实验结果的推断,并给特定微管蛋白同工型功能的鉴定带来了困难。本研究的目的是鉴定和描述新兴生物燃料作物荠蓝的微管蛋白。
我们报告了荠蓝微管蛋白基因家族的全面鉴定和特征描述,包括外显子-内含子组织分析、重复基因比较、适当同工型指定、系统发育分析和不同组织中的表达模式。鉴定并指定了 17 个α-、34 个β-和 6 个γ-微管蛋白基因到特定的同工型。同源微管蛋白同工型的识别是通过跨引用系统发育、共线性分析和重建的祖先十字花科基因组块上的基因分配来进行的。对微管蛋白同系物表达模式的研究表明,在不同的发育阶段,N(A)和 N(B)亚基因组在微管蛋白表达中起着主要作用,而不是 H(C)亚基因组转录本的普遍优势。
首次为异源六倍体荠蓝物种鉴定和描述了一套完整的微管蛋白基因家族成员。该研究展示了精确推断基因同源性的综合方法。该技术不仅可以识别荠蓝微管蛋白的拟南芥同源物并追踪微管蛋白基因的进化,还揭示了拟南芥缺失了几种特定的α-和β-微管蛋白同工型的同源物。