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基于毛白杨 × 欧美杨转录组分析构建两个与盐胁迫及盐胁迫下木质素合成相关的调控网络。

Construction of two regulatory networks related to salt stress and lignocellulosic synthesis under salt stress based on a Populus davidiana × P. bolleana transcriptome analysis.

机构信息

State Key Laboratory of Tree Genetics and Breeding (Northeast Forestry University), Harbin, 150040, China.

出版信息

Plant Mol Biol. 2022 Aug;109(6):689-702. doi: 10.1007/s11103-022-01267-8. Epub 2022 Apr 29.

Abstract

Construction of ML-hGRN for the salt pathway in Populus davidiana × P. bolleana. Construction of ML-hGRN for the lignocellulosic pathway in Populus davidiana × P. bolleana under salt stress. Many woody plants, including Populus davidiana × P. bolleana, have made great contributions to human production and life. High salt is one of the main environmental factors that restricts the growth of poplar. This study found that high salt could induce strong biochemical changes in poplar. To detect the effect of salt treatment on gene expression, 18 libraries were sequenced on the Illumina sequencing platform. The results identified a large number of early differentially expressed genes (DEGs) and a small number of late DEGs, which indicated that most of the salt response genes of poplar were early response genes. In addition, 197 TFs, including NAC, ERF, and other TFs related to salt stress, were differentially expressed during salt treatment, which indicated that these TFs may play an important role in the salt stress response of poplar. Based on the RNA-seq analysis results, multilayered hierarchical gene regulatory networks (ML-hGRNs) of salt stress- and lignocellulosic synthesis-related DEGs were constructed using the GGM algorithm. The lignocellulosic synthesis regulatory network under salt stress revealed that lignocellulosic synthesis might play an important role in the process of salt stress resistance. Furthermore, the NAC family transcription factor PdbNAC83, which was found in the upper layer in both pathways, was selected to verify the accuracy of the ML-hGRNs. DAP-seq showed that the binding site of PdbNAC83 included a "TT(G/A)C(G/T)T" motif, and ChIP-PCR further verified that PdbNAC83 can regulate the promoters of at least six predicted downstream genes (PdbNLP2-2, PdbZFP6, PdbMYB73, PdbC2H2-like, PdbMYB93-1, PdbbHLH094) by binding to the "TT(G/A)C(G/T)T" motif, which indicates that the predicted regulatory network diagram obtained in this study is relatively accurate. In conclusion, a species-specific salt response pathway might exist in poplar, and this finding lays a foundation for further study of the regulatory mechanism of the salt stress response and provides new clues for the use of genetic engineering methods to create high-quality and highly resistant forest germplasms.

摘要

构建盐胁迫下杂种毛白杨木质素和纤维素生物合成途径的多层级基因调控网络。许多木本植物,包括杂种毛白杨,为人类的生产和生活做出了巨大贡献。高盐是限制杨树生长的主要环境因素之一。本研究发现,高盐会引起杨树强烈的生化变化。为了检测盐处理对基因表达的影响,在 Illumina 测序平台上对 18 个文库进行了测序。结果鉴定出大量早期差异表达基因(DEGs)和少量晚期 DEGs,表明杨树盐胁迫响应基因大部分为早期响应基因。此外,在盐胁迫处理过程中,有 197 个转录因子(TFs),包括 NAC、ERF 等与盐胁迫相关的 TFs,发生了差异表达,表明这些 TFs可能在杨树盐胁迫响应中发挥重要作用。基于 RNA-seq 分析结果,利用 GGM 算法构建了盐胁迫和木质素合成相关 DEGs 的多层级基因调控网络(ML-hGRNs)。盐胁迫下木质素合成调控网络表明,木质素合成可能在盐胁迫抵抗过程中发挥重要作用。此外,在两条途径的上层均发现了 NAC 家族转录因子 PdbNAC83,选择其进行验证 ML-hGRNs 的准确性。DAP-seq 表明,PdbNAC83 的结合位点包含“TT(G/A)C(G/T)T”基序,ChIP-PCR 进一步验证了 PdbNAC83 可以通过结合“TT(G/A)C(G/T)T”基序来调节至少 6 个预测下游基因(PdbNLP2-2、PdbZFP6、PdbMYB73、PdbC2H2-like、PdbMYB93-1、PdbbHLH094)的启动子,这表明本研究中获得的预测调控网络图相对准确。综上所述,杨树可能存在种特异性的盐胁迫响应途径,这为进一步研究盐胁迫响应的调控机制奠定了基础,并为利用遗传工程方法创造优质、高抗的林木种质资源提供了新线索。

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