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基于 Pacbio 全长转录组测序分析西伯利亚白刺的耐盐性。

Analysis on the salt tolerance of Nitraria sibirica Pall. based on Pacbio full-length transcriptome sequencing.

机构信息

School of Horticulture and Landscape Architecture, Northeast Agricultural University, Harbin, 150030, China.

出版信息

Plant Cell Rep. 2023 Oct;42(10):1665-1686. doi: 10.1007/s00299-023-03052-3. Epub 2023 Jul 21.

Abstract

Nitraria sibirica Pall. regulates its tolerance to salt stress mainly by adjusting ion balance, modifying cell wall structure, and activating signal transduction pathways. N. sibirica, as a typical halophyte, can not only effectively restore saline-alkali land, but also has high economic value. However, studies on its salt tolerance at combining molecular and physiological levels were limited. In this study, the salt tolerance of N. sibirica was analyzed based on Pacbio full-length transcriptome sequencing, and the salt tolerance in the physiological level was verified by key genes. The results showed that 89,017 full-length transcripts were obtained, of which 84,632 sequences were annotated. A total of 86,482 coding sequences (CDS) were predicted and 6561 differentially expressed genes (DEGs) were identified. DEGs were significantly enriched in "sodium ion homeostasis", "response to osmotic stress", "reactive oxygen species metabolic process", "defense response by cell wall thickening", "signal transduction", etc. The expression levels for most of these DEGs increased under salt stress. A total of 69 key genes were screened based on weighted gene co-expression network analysis (WGCNA), of which 33 were first reported on salt tolerance. Moreover, NsRabE1c gene with the highest expression level was selected to verify its salt tolerance. Over-expression of NsRabE1c gene enhanced the germination potential and root length of transgenic Arabidopsis thaliana plants without salt treatment as compared to those of Col-0 and AtRabE1c mutant. The expression levels of NsRabE1c decreased in the growth stagnation phase, while significantly increased in the growth recovery phase under salt stress. We predicted that NsRabE1c gene help N. sibirica resist salt stress through the regulation of plant growth. The results of this study deepen the understanding of salinity resistance in N. sibirica.

摘要

西伯利亚滨藜通过调节离子平衡、改变细胞壁结构和激活信号转导途径来调节其耐盐性。作为一种典型的盐生植物,西伯利亚滨藜不仅可以有效地恢复盐碱地,而且具有很高的经济价值。然而,在分子和生理水平相结合的研究中,对其耐盐性的研究有限。本研究基于 Pacbio 全长转录组测序分析了西伯利亚滨藜的耐盐性,并通过关键基因验证了其在生理水平上的耐盐性。结果表明,获得了 89017 条全长转录本,其中 84632 条序列被注释。共预测了 86482 个编码序列(CDS),并鉴定了 6561 个差异表达基因(DEGs)。DEGs 显著富集于“钠离子稳态”、“响应渗透胁迫”、“活性氧代谢过程”、“细胞壁加厚的防御反应”、“信号转导”等通路。大多数这些 DEGs 的表达水平在盐胁迫下增加。基于加权基因共表达网络分析(WGCNA)共筛选了 69 个关键基因,其中 33 个基因是首次报道与耐盐性有关。此外,选择表达量最高的 NsRabE1c 基因进行耐盐性验证。与 Col-0 和 AtRabE1c 突变体相比,转 NsRabE1c 基因拟南芥的萌发势和根长在没有盐处理的情况下增强。在盐胁迫下,NsRabE1c 基因的表达水平在生长停滞期下降,而在生长恢复期显著增加。我们预测 NsRabE1c 基因通过调节植物生长来帮助西伯利亚滨藜抵抗盐胁迫。本研究加深了对西伯利亚滨藜耐盐性的认识。

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