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盐胁迫下Sedum lineare Thunb. 的转录组测序和功能分析。

Transcriptome sequencing and functional analysis of Sedum lineare Thunb. upon salt stress.

机构信息

School of Environmental Science and Engineering, Tianjin University, Tianjin, 300072, China.

出版信息

Mol Genet Genomics. 2019 Dec;294(6):1441-1453. doi: 10.1007/s00438-019-01587-3. Epub 2019 Jun 18.

Abstract

Soil salinization is one major constraint to plant geographical distribution, yield, and quality, and as an ideal plant for the "greening" of flat-roofed buildings, Sedum lineare Thunb. has strong tolerance against a variety of environmental adversities including salinity with the underlying mechanism still remaining unknown. In this study, we performed de novo transcriptome sequencing on leaf and root samples of NaCl-treated S. lineare Thunb. and identified 584 differentially expressed genes (DEGs), which were further annotated by gene function classification and pathway assignments using the public data repositories. In addition to the increased gene expression level verified by qRT-PCR, the elevated activities of the corresponding enzymes were also demonstrated for peroxidase (POD), glutathione peroxidases (GPX), and cysteine synthase (CSase) in the NaCl-treated roots. Furthermore, two highly inducible genes without known functions related to salt tolerance were selected to be overexpressed and tested for their effects on salt tolerance in the model plant, Arabidopsis thaliana. Upon 150 mM NaCl treatment, 35S:SlCXE but not 35S:SlCYP72A transgenic Arabidopsis seedlings exhibited improved salt resistance as shown by the increased seed germination rates and longer primary roots of transgenic seedlings when compared to wild-type plants. Taken together, this work laid a foundation for a better understanding of the salt adaptation mechanism of S. lineare Thunb. and genes identified could serve as useful resources for the development of more salt-tolerant varieties of other species through genetic engineering.

摘要

土壤盐渍化是限制植物地理分布、产量和品质的主要因素之一。而Sedum lineare Thunb. 作为平屋顶绿化的理想植物,具有很强的耐盐能力,能够耐受各种环境逆境,其潜在的耐盐机制尚不清楚。在本研究中,我们对 NaCl 处理的 S. lineare Thunb. 叶片和根部样本进行了 de novo 转录组测序,共鉴定出 584 个差异表达基因(DEGs),并进一步通过公共数据库的基因功能分类和途径注释进行了注释。除了 qRT-PCR 验证的基因表达水平增加外,还证明了 NaCl 处理的根部过氧化物酶(POD)、谷胱甘肽过氧化物酶(GPX)和半胱氨酸合成酶(CSase)等相应酶的活性升高。此外,选择了两个与耐盐性相关的未知功能的高度诱导基因进行过表达,并在模式植物拟南芥中测试它们对盐胁迫的影响。在 150 mM NaCl 处理下,与野生型植物相比,35S:SlCXE 而非 35S:SlCYP72A 转基因拟南芥幼苗的种子发芽率提高,主根更长,表现出更强的耐盐性。总之,这项工作为更好地理解 S. lineare Thunb. 的耐盐适应机制奠定了基础,所鉴定的基因可作为通过基因工程培育其他物种更耐盐品种的有用资源。

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