State Key Laboratory of Biocontrol and Guangdong Provincial Key Laboratory of Plant Resources, Sun Yat-sen University, Guangzhou, 510275, China.
Department of Genetics, Department of Biostatistics, Department of Computer Science University of North Carolina, Chapel Hill, NC, 27599, USA.
Sci Rep. 2018 Mar 13;8(1):4425. doi: 10.1038/s41598-018-22406-6.
Alternative splicing (AS), which produces multiple mRNA transcripts from a single gene, plays crucial roles in plant growth, development and environmental stress responses. Functional significances of conserved AS events among congeneric species have not been well characterized. In this study, we performed transcriptome sequencing to characterize AS events in four common species of Sonneratia, a mangrove genus excellently adaptive to intertidal zones. 7,248 to 12,623 AS events were identified in approximately 25% to 35% expressed genes in the roots of the four species. The frequency of AS events in Sonneratia was associated with genomic features, including gene expression level and intron/exon number and length. Among the four species, 1,355 evolutionarily conserved AS (ECAS) events were identified from 1,170 genes. Compared with non-ECAS events, ECAS events are of shorter length and less possibility to introduce premature stop codons (PTCs) and frameshifts. Functional annotations of the genes containing ECAS events showed that four of the 26 enriched Gene Ontology (GO) terms are involved in proton transport, signal transduction and carbon metabolism, and 60 genes from another three GO terms are implicated in responses to osmotic, oxidative and heat stresses, which may contribute to the adaptation of Sonneratia species to harsh intertidal environments.
可变剪接(AS)是指从一个基因产生多个 mRNA 转录本的过程,它在植物生长、发育和环境应激反应中起着至关重要的作用。然而,同属物种之间保守的 AS 事件的功能意义还没有得到很好的描述。在这项研究中,我们对四个红树林属的四个常见物种(海桑属)进行了转录组测序,以研究 AS 事件。在这四个物种的根中,约有 25%至 35%的表达基因中鉴定出了 7248 到 12623 个 AS 事件。AS 事件在海桑属中的频率与基因组特征有关,包括基因表达水平以及内含子/外显子的数量和长度。在这四个物种中,从 1170 个基因中鉴定出了 1355 个进化上保守的 AS(ECAS)事件。与非 ECAS 事件相比,ECAS 事件的长度更短,产生提前终止密码子(PTCs)和移码的可能性更小。包含 ECAS 事件的基因的功能注释表明,26 个富集的基因本体论(GO)术语中的四个与质子转运、信号转导和碳代谢有关,而另外三个 GO 术语中的 60 个基因与渗透、氧化和热应激反应有关,这可能有助于海桑属物种适应恶劣的潮间带环境。