Zorin Evgeny A, Afonin Alexey M, Kulaeva Olga A, Gribchenko Emma S, Shtark Oksana Y, Zhukov Vladimir A
All-Russia Research Institute for Agricultural Microbiology (ARRIAM), 196608 St. Petersburg, Russia.
Plants (Basel). 2020 Dec 3;9(12):1700. doi: 10.3390/plants9121700.
Alternative splicing (AS), a process that enables formation of different mRNA isoforms due to alternative ways of pre-mRNA processing, is one of the mechanisms for fine-tuning gene expression. Currently, the role of AS in symbioses formed by plants with soil microorganisms is not fully understood. In this work, a comprehensive analysis of the transcriptome of garden pea ( L.) roots in symbiosis with arbuscular mycorrhiza was performed using RNAseq and following bioinformatic analysis. AS profiles of mycorrhizal and control roots were highly similar, intron retention accounting for a large proportion of the observed AS types (67%). Using three different tools (SUPPA2, DRIMSeq and IsoformSwitchAnalyzeR), eight genes with AS events specific for mycorrhizal roots of pea were identified, among which four were annotated as encoding an apoptosis inhibitor protein, a serine/threonine-protein kinase, a dehydrodolichyl diphosphate synthase, and a pre-mRNA-splicing factor ATP-dependent RNA helicase DEAH1. In pea mycorrhizal roots, the isoforms of these four genes with preliminary stop codons leading to a truncated ORFs were up-regulated. Interestingly, two of these four genes demonstrating mycorrhiza-specific AS are related to the process of splicing, thus forming parts of the feedback loops involved in fine-tuning of gene expression during mycorrhization.
可变剪接(AS)是一种由于前体mRNA加工方式的不同而使不同mRNA异构体得以形成的过程,是微调基因表达的机制之一。目前,AS在植物与土壤微生物形成的共生关系中的作用尚未完全了解。在这项工作中,利用RNA测序及后续的生物信息学分析,对与丛枝菌根共生的豌豆(L.)根的转录组进行了全面分析。菌根根和对照根的可变剪接图谱高度相似,内含子保留在观察到的可变剪接类型中占很大比例(67%)。使用三种不同的工具(SUPPA2、DRIMSeq和IsoformSwitchAnalyzeR),鉴定出八个在豌豆菌根根中具有特定可变剪接事件的基因,其中四个被注释为编码凋亡抑制蛋白、丝氨酸/苏氨酸蛋白激酶、脱氢多萜醇二磷酸合酶和前体mRNA剪接因子ATP依赖的RNA解旋酶DEAH1。在豌豆菌根根中,这四个带有导致截短开放阅读框的初步终止密码子的基因的异构体上调。有趣的是,这四个显示出菌根特异性可变剪接的基因中有两个与剪接过程相关,从而形成了菌根形成过程中参与基因表达微调的反馈环的一部分。