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Desiccation tolerance in bryophytes: The dehydration and rehydration transcriptomes in the desiccation-tolerant bryophyte Bryum argenteum

机译:苔藓植物的脱水耐性:耐干燥苔藓植物Bryum argenteum的脱水和补水转录组

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摘要

The desiccation tolerant bryophyte Bryum argenteum is an important component of desert biological soil crusts (BSCs) and is emerging as a model system for studying vegetative desiccation tolerance. Here we present and analyze the hydration-dehydration-rehydration transcriptomes in B. argenteum to establish a desiccation-tolerance transcriptomic atlas. B. argenteum gametophores representing five different hydration stages (hydrated (H0), dehydrated for 2 h (D2), 24 h (D24), then rehydrated for 2 h (R2) and 48 h (R48)), were sampled for transcriptome analyses. Illumina high throughput RNA-Seq technology was employed and generated more than 488.46 million reads. An in-house de novo transcriptome assembly optimization pipeline based on Trinity assembler was developed to obtain a reference Hydration-Dehydration-Rehydration (H-D-R) transcriptome comprising of 76,206 transcripts, with an N50 of 2,016 bp and average length of 1,222 bp. Comprehensive transcription factor (TF) annotation discovered 978 TFs in 62 families, among which 404 TFs within 40 families were differentially expressed upon dehydration-rehydration. Pfam term enrichment analysis revealed 172 protein families/domains were significantly associated with the H-D-R cycle and confirmed early rehydration (i.e. the R2 stage) as exhibiting the maximum stress-induced changes in gene expression.
机译:耐旱的苔藓植物Bryum argenteum是沙漠生物土壤结皮(BSC)的重要组成部分,并且正在成为研究植物耐旱性的模型系统。在这里,我们介绍并分析阿根廷双歧杆菌的水合-脱水-脱水转录组,以建立一个耐脱水的转录组图谱。采样代表五个不同水合阶段的阿根廷双歧杆菌(水合(H0),脱水2 h(D2),24 h(D24),然后再水化2 h(R2)和48 h(R48)),以进行转录组分析。 。使用Illumina高通量RNA-Seq技术,产生了超过4.8846亿次读取。建立了基于Trinity汇编程序的内部从头转录组装配优化流水线,以获取参考水合脱水脱水(H-D-R)转录组,该转录组包含76,206个转录本,N50为2,016 bp,平均长度为1,222 bp。综合转录因子(TF)注释发现了62个家族中的978个TF,其中40个家族中的404个TF在脱水-再水化后被差异表达。 Pfam术语富集分析显示172个蛋白家族/结构域与H-D-R周期显着相关,并确认了早期补液(即R2期)表现出最大的应激诱导的基因表达变化。

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