外源NO调控羽扇豆响应盐碱胁迫的转录组分析
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河南牧业为经济学院艺术学院

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河南牧业经济学院博士启动金(906/53000187)资助


Transcriptome analysis of exogenous NO regulation of lupine in response to saline stress
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1.College of Art, Henan University of Animal Husbandry and Economy;2.College of Art, Henan University of Animal Husbandry and Economy, Zhengzhou 450046

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    摘要:

    本研究为揭示外源NO调控羽扇豆响应盐碱胁迫的分子机制,以羽扇豆为研究对象,利用100mmol/LNaHCO3和Na2CO3(摩尔系数比为1:1)溶液模拟盐碱胁迫,硝普钠(SNP)为外源NO供体。试验设置7个处理,分别为空白对照(0mmol/L盐碱混合溶液+0μmol/L SNP)、盐碱胁迫对照(100mmol/L盐碱混合溶液+ 0μmol/L SNP)及5个浓度梯度的SNP处理(50、100、150、200、250μmol/L),测定植株的可溶性糖含量、蔗糖磷酸合成酶及蔗糖合成酶活性,并对盐碱胁迫对照组和SNP处理(最佳浓度)+盐碱胁迫组的材料进行转录组测序。结果表明:外源NO调控可提高羽扇豆幼苗的耐盐碱性。外源NO提高了盐碱胁迫下羽扇豆幼苗的渗透调节物质可溶性糖含量及蔗糖合成的关键蔗糖合成酶和蔗糖磷酸合成酶活性;外源NO调控羽扇豆幼苗糖代谢通路中关键酶基因的表达。β-呋喃果糖酶、蔗糖合成酶及β-葡萄糖苷酶基因上调,GDP-甘露糖 4,6-脱水酶及1,6-二磷酸果糖醛缩酶(I类)基因下调。这些关键酶基因的表达影响糖代谢效率,进而提高了羽扇豆幼苗的耐盐性;外源NO调控羽扇豆响应盐碱胁迫的转录因子差异基因中表达数量最多的家族主要是bHLH、WRKY、ERF、MYB、bZIP,并推测本研究挖掘的bHLH、WRKY、MYB、bZIP可能表达后会提高羽扇豆幼苗的耐盐碱性。本研究旨在为羽扇豆的选育以及在盐碱地的推广应用提供理论科学依据。

    Abstract:

    This study investigated the molecular mechanism of exogenous nitric oxide (NO) in enhancing lupin"s tolerance to saline-alkaline stress. Saline-alkaline stress was simulated using a 100 mmol/L NaHCO? and Na?CO? (1:1 ratio) solution, with sodium nitroprusside (SNP) as the exogenous NO donor. The experiment included seven treatments: blank control, saline-alkaline stress control, and five SNP concentrations (50–250 μmol/L). Key physiological indicators (soluble sugar content, sucrose synthase, and sucrose phosphate synthase activity) were measured, and transcriptome sequencing was performed on saline-alkaline-stressed and SNP-treated (optimal concentration) groups.Results showed that exogenous NO improved lupin"s salinity tolerance by increasing osmolyte (soluble sugar) content and enhancing key sucrose-synthesizing enzyme activities. Transcriptome analysis revealed upregulation of genes encoding β-furanofructokinase, sucrose synthase, and β-glucosidase, while genes for GDP-mannose 4,6-dehydratase and aldolase were downregulated. These changes optimized sugar metabolism efficiency under stress. Additionally, NO-regulated transcription factors (bHLH, WRKY, ERF, MYB, bZIP) were implicated in stress tolerance. The findings provide insights for breeding lupin varieties adapted to saline-alkaline soils.

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  • 收稿日期:2025-06-06
  • 最后修改日期:2025-07-06
  • 录用日期:2025-08-14
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