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植物研究 ›› 2026, Vol. 46 ›› Issue (1): 91-100.doi: 10.7525/j.issn.1673-5102.2026.01.008

• 研究论文 • 上一篇    下一篇

复幼措施对水曲柳生长与组培再生的影响

熊成明1, 王巧欣1, 何利明1,2, 刘建飞1, 彭广州1, 胡安红3, 李新宇4, 詹亚光1,2()   

  1. 1.东北林业大学生命科学学院,哈尔滨 150040
    2.林木遗传育种全国重点实验室(东北林业大学),哈尔滨 150040
    3.伊春森工南岔林业局有限责任公司,南岔 153199
    4.哈尔滨市松北区自然资源所,哈尔滨 150028
  • 收稿日期:2025-09-11 出版日期:2026-01-20 发布日期:2026-01-20
  • 通讯作者: 詹亚光 E-mail:yaguangzhan@126.com
  • 作者简介:熊成明(1997—),男,硕士研究生,主要从事林木繁育和遗传改良研究。
  • 基金资助:
    国家重点研发计划项目(2021YFD2200303)

Impact of Rejuvenation Measures on Growth and Tissue Culture Regeneration of Fraxinus mandshurica

Chengming XIONG1, Qiaoxin WANG1, Liming HE1,2, Jianfei LIU1, Guangzhou PENG1, Anhong HU3, Xinyu LI4, Yaguang ZHAN1,2()   

  1. 1.College of Life Sciences,Northeast Forestry University,Harbin 150040
    2.State Key Laboratory of Tree Genetics and Breeding(Northeast Forestry University),Harbin 150040
    3.Yichun Forestry Industry Group Nancha Forestry Bureau Co. ,Ltd. ,Nancha 153199
    4.Harbin Songbei District Natural Resources Office,Harbin 150028
  • Received:2025-09-11 Online:2026-01-20 Published:2026-01-20
  • Contact: Yaguang ZHAN E-mail:yaguangzhan@126.com

摘要:

组织培养是珍贵用材树种水曲柳(Fraxinus mandshurica)无性繁殖的重要方式之一,但年龄效应造成的外植体生理状态老化,显著降低组培效率,严重制约水曲柳优良品种的快速无性扩繁与推广应用,目前在林木中通过复幼克服年龄效应提高组培效率的研究未见报道。该文研究不同复幼措施对4年生水曲柳植株生长与组培再生的影响,结果表明:截干+遮阴处理后,新生枝的高度和径粗分别降低37.50%和42.90%,新生枝和茎段外植体数量分别增加2.6倍和2.8倍,组培再生能力显著提升。茎段外植体启动率、新芽分化率和增殖系数均升高,启动率最高达到82.42%,是未处理CK(25.30%)的3.26倍;分化率由9.90%提升到61.11%;增殖系数由0提升到6.00。进一步通过生理生化指标和相关基因表达变化探究复幼措施克服年龄效应的潜在机制,发现复幼处理后,带腋芽茎中蔗糖和可溶性糖含量分别显著减少23.17%和46.24%,而生长素(IAA)和细胞分裂素(CTK)含量分别显著增多70.01%和57.22%。基于miR156A/C基因表达随植物的成熟而下调的趋势,进一步通过miR156-SPL-AP2/ERFs-ASA1基因通路的转录分析,揭示采穗母树经过截干+遮阴处理后,复幼及芽再生相关基因FmmiR156A、FmmiR156CFmASA1表达量较CK分别提高10.01倍、13.53倍和12.58倍,FmSPL2FmSPL9表达量较CK分别降低93.05%和88.30%,揭示上述指标可能是促进水曲柳复幼从而提高外植体组培再生效率的关键因素。该研究为解决水曲柳等林木年龄效应问题和提高组培繁殖能力提供切实可行的方法,为水曲柳良种/新品种的规模繁育和推广提供技术支撑。

关键词: 水曲柳, 组织培养, 年龄效应, 复幼处理, 生理生化指标, 基因表达

Abstract:

As an essential method for clonal propagation of the valuable timber species Fraxinus mandshurica, tissue culture is hindered by physiological aging of explants due to age-related effects, which significantly reduces tissue culture efficiency and severely restricts the rapid clonal propagation and widespread application of superior F. mandshurica varieties. Currently, there are no reports on overcoming the age effect through rejuvenation to improve tissue culture efficiency in forest trees. This study investigated the effects of different rejuvenation treatments on growth performance and tissue culture regeneration of 4-year-old F. mandshurica plants. The results showed that after trunk cutting + shading treatment, the height and diameter of new shoots decreased by 37.50% and 42.90%, respectively, while the number of new shoots and stem segment explants increased by 2.6-fold and 2.8-fold, which significantly enhanced tissue culture regeneration capacity. The initiation rate of stem segment explants, new shoot differentiation rate, and propagation coefficient of the shoots under treatment all increased compared to the untreated control(CK). The highest initiation rate reached 82.42%, which was 3.26 times as high as that of the CK(25.30%). The differentiation rate increased from 9.90% to 61.11%. The propagation coefficient increased from 0 to 6.00. Further investigation into the mechanism by which rejuvenation measures overcome the age effect was conducted through the analysis of physiological and biochemical indicators and related gene expression changes. It was found that after rejuvenation treatment, sucrose and soluble sugar content significantly decreased by 23.17% and 46.24%, while the content of auxin(IAA) and cytokinin(CTK) significantly increased by 70.01% and 57.22%, respectively. Based on the trend of miR156A/C gene expression downregulating with plant maturation, transcriptional analysis of the miR156-SPL-AP2/ERFs-ASA1 gene pathway further revealed that after trunk cutting + shading treatment, the expression levels of rejuvenation and bud regeneration-related genes FmmiR156A, FmmiR156C, and FmASA1 increased by 10.01, 13.53, and 12.58 times compared to CK, while the expression levels of FmSPL2 and FmSPL9 decreased by 93.05% and 88.30% compared to CK. These findings indicated that the above indicators may be key factors promoting rejuvenation in F. mandshurica, thereby improving the tissue culture regeneration efficiency of explants. This study provided practical methods for addressing the age effect and improving tissue culture propagation capacity in F. mandshurica and other forest trees species, offering technical support for the large-scale propagation and promotion of superior varieties and new cultivars of F. mandshurica.

Key words: Fraxinus mandshurica, tissue culture, age effect, rejuvenation treatment, physiological and biochemical indicators, gene expression

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