生物技术通报 ›› 2026, Vol. 42 ›› Issue (2): 228-238.doi: 10.13560/j.cnki.biotech.bull.1985.2025-0579

• 研究报告 • 上一篇    下一篇

烟草豫浓香201对低温胁迫的生理响应及转录组分析

王亚乐(), 李雪君, 孙计平(), 孙焕   

  1. 河南省农业科学院烟草研究所,许昌 461000
  • 收稿日期:2025-06-05 出版日期:2026-02-26 发布日期:2026-03-17
  • 通讯作者: 孙计平,女,博士,副研究员,研究方向 :烟草遗传育种;E-mail: sunjiping2002@126.com
  • 作者简介:王亚乐,女,硕士,研究实习员,研究方向 :烟草遗传育种;E-mail: yms_0905@126.com
  • 基金资助:
    中国烟草总公司河南省公司科技项目(2023410000240020);河南省农业科学院基础性科研项目(2025JC14)

Physiological Response and Transcriptome Analysis of Tobacco Yunongxiang 201 to Low Temperature Stress

WANG Ya-le(), LI Xue-jun, SUN Ji-ping(), SUN Huan   

  1. Tobacco Research Institute,Henan Academy of Agricultural Sciences, Xuchang 461000
  • Received:2025-06-05 Published:2026-02-26 Online:2026-03-17

摘要:

目的 豫浓香201是利用0.6% EMS诱变中烟100自交6代选育获得的烤烟新品种,其抗病性好、品质优良,但大田表现低温敏感易早花特征,探究豫浓香201低温敏感形成的分子机制。 方法 以豫浓香201和中烟100为供试材料,4 ℃胁迫0、6和24 h观察其生长状态,测定H2O2含量、脯氨酸含量、抗氧化酶活性和内源ABA含量等生理指标,联合转录组学开展低温响应分子机制探究。 结果 与中烟100相比,4 ℃ 24 h豫浓香201严重萎蔫。低温处理后,中烟100内H2O2含量、脯氨酸含量、SOD和POD抗氧化酶明显升高,且持续低温内源ABA含量显著增加;豫浓香201细胞内H2O2含量极显著升高、脯氨酸含量、SOD和POD抗氧化酶无明显升高,且内源ABA含量明显降低。低温6 h,中烟100和豫浓香201参与低温响应的差异表达基因(DEGs)数目分别为4 314、3 769;低温24 h,中烟100和豫浓香201的DEGs分别为17 618、14 293。KEGG富集显示,低温胁迫下,两品种参与淀粉-蔗糖代谢通路的DEGs数量相当,中烟100 中DEGs参与植物激素转导通路较多,豫浓香201 DEGs参与植物昼夜节律通路较多。低温处理后,中烟100中可溶性糖相关基因SUSTPP,α-淀粉酶基因AMY3,ABA通路相关基因SRK2ESAPK3均上调表达,有助于增强抗寒性;豫浓香201中开花途径相关基因ELF3FLK,冷调节基因COR27,光形态建成核心调控因子COP1与CBF负调节因子EIN3均表达上调。 结论 低温后,中烟100激活复杂而广泛的抗寒防御通路,而豫浓香201抗氧化酶系统调节能力不足,致使ROS清除系统减弱,对低温更敏感。

关键词: 烟草, 低温胁迫, 豫浓香201, 转录组学, 生理响应

Abstract:

Objective Yunongxiang 201 is a new flue-cured tobacco variety by self-crossing six generations, which was selected from the Zhongyan 100 0.6% EMS mutant library, with good resistance diseases and elite tobacco quality, whereas, it in field showed low-temperature sensitivity and early flowering characteristics. The molecular mechanism formed by low-temperature sensitivity of Yunongxiang 201 was studied. Method Yunongxiang 201 and Zhongyan 100 were used as test materials, their growth status was observed under 4 ℃ stress for 0 h, 6 h and 24 h. The physiological indexes of H2O2 content, proline content, antioxidant enzyme activity and endogenous ABA content was determined, and the growth status of plants recovered at 25 ℃ for 15 d was observed. The molecular mechanism was explored by combining transcriptomics. Result Compared with Zhongyan 100, Yunongxiang 201 wilted seriously at 4 ℃ for 24 h. Encountering low temperature, the H2O2 content, proline content, SOD and POD antioxidant enzymes in Zhongyan 100 increased significantly, and the content of endogenous ABA increased significantly under continuous low temperature; interestingly, the content of H2O2 in Yunongxiang 201 increased significantly, the content of proline, SOD and POD antioxidant enzymes didn’t increase significantly, and the content of endogenous ABA decreased significantly. The number of differential expressed genes (DEGs) involved in low- temperature-response of Zhongyan 100 and Yunongxiang 201 respectively were 4 314 and 3 769 at 6 h; Zhongyan 100 and Yunongxiang 201 respectively were 17 618 and 14 293 at 24 h. KEGG enrichment showed that the number of DEGs involved in starch-sucrose metabolism pathway was similar in the two varieties, Zhongyan 100's DEGs were more involved in plant hormone transduction pathway, and Yunongxiang 201’s DEGs were more involved in plant-circadian rhythm pathway under cold stress. After encountering low temperature, the expressions of soluble sugar related genes SUS, TPP, α-amylasegene AMY3, as well as ABA pathway-related genes SRK2E, SAPK3 were up-regulated in Zhongyan 100, which was conducive to enhancing cold resistance. The expressions of flowering pathway-related genes ELF3, FLK, cold-regulating gene COR27, constitutive photomorphogenic1 gene COP1 and CBF negative regulator EIN3 in Yunongxiang 201 was up-regulated. Conclusion After low temperature, the broad and complex cold-resistant defense pathway of Zhongyan 100 is activated, while the antioxidant enzyme system is insufficiently regulated, thus the ROS scavenging system were weakened, resulting in the more sensitive of Yunongxiang 201 to low temperature.

Key words: Nicotiana tabacum, cold stress, Yunongxiang 201, transcriptomics, physiological response