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林业科学 ›› 2025, Vol. 61 ›› Issue (3): 135-146.doi: 10.11707/j.1001-7488.LYKX20240037

• 研究论文 • 上一篇    下一篇

米槁种子萌发过程中生理动态变化

唐子燕1,2(),刘济明1,黄小龙3,*(),陈敬忠4,王灯5,李丽霞6,刘欢1,梁格林1,代丽1,3   

  1. 1. 贵州大学林学院 贵阳 550000
    2. 贵州省天柱县林业局 天柱 556600
    3. 贵州省林业科学研究院 西南喀斯特山地生物多样性保护国家林业和草原局重点实验室 贵阳 550000
    4. 贵州中医药大学药学院 贵阳 550000
    5. 邵阳学院农林生态学院 邵阳 422000
    6. 贵阳康养职业大学 贵阳 550000
  • 收稿日期:2024-01-15 出版日期:2025-03-25 发布日期:2025-03-27
  • 通讯作者: 黄小龙 E-mail:779671163@qq.com;guidah365@126.com
  • 基金资助:
    基于植物-微生物共生体系下米槁生态化种植关键技术研究( 黔科合支撑[2023]一般 049);贵州重点生态区生态系统优化创新能力建设(黔科合服企[2023]009);接种内源促生真菌对药用植物米槁抗旱性的影响机制(贵康大K2024-6)。

Physiological Dynamic Changes during the Seed Germination Process of Cinnamomum migao

Ziyan Tang1,2(),Jiming Liu1,Xiaolong Huang3,*(),Jingzhong Chen4,Deng Wang5,Lixia Li6,Huan Liu1,Gelin Liang1,Li Dai1,3   

  1. 1. Forestry of College,Guizhou University Guiyang 550000
    2. Forestry Bureau of Tianzhu County Guizhou Province Tianzhu 556600
    3. Guizhou Academy of Forestry Key Laboratory of National Forestry and Grassland Administration on Biodiversity Conservation in Karst Mountainous Areas of Southwestern China Guiyang 550000
    4. College of Pharmacy ,Guizhou University of Traditional Chinese Medicine Guiyang 55000
    5. College of Agriculture, Forestry and Ecology,Shaoyang University Shaoyang 422000
    6. Guiyang Healthcare Vocational University Guiyang 550000
  • Received:2024-01-15 Online:2025-03-25 Published:2025-03-27
  • Contact: Xiaolong Huang E-mail:779671163@qq.com;guidah365@126.com

摘要:

目的: 分析萌发过程中米槁种子种胚形态结构和生理动态变化规律,为探明米槁天然更新障碍机制以及其种子萌发机制提供理论依据。方法: 以自然萌发状态下的米槁种子为材料,通过比较干种(GZ)、吸水(XS)、裂口(LK)和萌发(MF)4个不同萌发阶段中,种胚形态结构变化、子叶细胞显微结构变化以及种子内源激素、贮藏物质含量和抗氧化酶活性等生理变化,探讨米槁种子在萌发过程中形态及生理特征的动态变化。结果: 干种阶段米槁种子的子叶细胞中存在丰富的油体,吸水阶段油体开始被消耗,萌发阶段油量明显减少,随之油体结构消失。随着萌发进程,淀粉和脂肪含量显著减少,吸水阶段和干种阶段淀粉含量相比差异并不显著,到萌发后2个阶段显著降低,而脂肪含量在种子吸水阶段后迅速降低;可溶性蛋白含量、POD活性显著升高,可溶性糖含量在吸水阶段最高,呈先减少后增加的趋势;MDA含量、SOD活性均表现为先增后降的趋势,在裂口阶段达到了峰值,而CAT活性在吸水阶段急剧升高后一直保持稳定状态;萌发过程中ABA、JA含量呈下降趋势,IAA、GA3、CTK、BR含量呈上升趋势,同时,ABA/GA3 和ABA/IAA 的比值显著降低,而ETH和SA含量在裂口阶段显著上升。从干种阶段到完成萌发,淀粉含量与可溶性糖含量变化呈极显著负相关,与脂肪含量呈极显著正相关;可溶性蛋白含量与抗氧化酶SOD和POD活性呈极显著正相关,与CAT活性呈显著正相关;ABA含量与GA3、IAA、CTK、BR含量变化呈极显著负相关,与ETH含量呈显著负相关,但与JA含量呈显著正相关。结论: 淀粉和脂肪为米槁种子萌发过程中提供物质能量的重要贮藏物质。CAT、SOD对平衡MDA含量起关键性作用,POD对米槁种子萌发具有显著促进作用。胚根、胚轴及胚芽的生长主要受到内源激素ETH和SA的影响,GA3浓度的升高和ABA浓度的降低是促进米槁种子萌发的关键。

关键词: 种子萌发, 贮藏物质, 内源激素, 抗氧化酶

Abstract:

Objective: This study aims to analyze the dynamic changes of morphological structure and physiological characteristics of Cinnamomum migao seed embryos during germination to reveal the mechanism of natural regeneration barrier, so as to provide a theoretical basis and technical support for the breeding and application. Method: In this study, the naturally germinating C. migao seeds were used as test materials. The morphological changes of embryo and microscopic changes of cotyledon cells, and physiological changes such as the contents of endogenous hormones and storage substances, and antioxidant enzyme activities in C. migao seeds at four different germination stages of dry seed (GZ, seeds without absorbing water), imbibed seed (XS, absorb water to full imbibition), fissure seed (LK, seed coat fissure after imbibition), and germinated seed (MF, radicle protruding the seed coat after imbibition). Result: At the dry seed stage, there were abundant oil bodies in the cotyledon cells of C. migao seeds. The oil bodies began to be consumed at the stage of XS, decreased significantly at the stage of MF, and subsequently, the oil structure disappeared. With seed germination, starch and lipid gradually degraded to supply energy. There was no significant difference in starch content between the stage XS and stage GZ. The starch content decreased significantly in the stage LK and stage MF, while the fat content decreased rapidly after the seed water absorption stage. On the contrary, the soluble protein content and POD activity significantly increased, while the soluble sugar content first decreased and then increased during the germination process of seeds. MDA content and SOD activity first increased and then decreased, reaching a peak at the stage LK, while CAT activity maintained a stable status after a sharp increase at stage XS. ABA and JA contents showed a decreasing trend, and IAA、GA3、CTK and BR contents showed an increasing trend during the germination process. At the same time, the ratios of ABA/GA3 and ABA/IAA significantly decreased, while ETH and SA contents increased significantly at stage LK. From stage GZ to stage MF, starch content was highly significantly negatively correlated with soluble sugar content, and highly significantly positively correlated with fat content. The content of soluble protein was highly significantly positively correlated with the activities of SOD and POD, and significantly positively correlated with CAT activity. ABA content was highly significantly negatively correlated with GA3, IAA, CTK and BR content, significantly negatively correlated with ETH content, but significantly positively correlated with JA content. Conclusion: Starch and lipid are important storage substances which provide essential material and energy during the germination of C. migao. CAT and SOD play a key role in balancing MDA contents, while POD significantly promotes seed germination. The growth of radicle, hypocotyl and germ is mainly affected by endogenous hormones ETH and SA. The increase of GA3 content and the decrease of ABA content are the critical to promote the germination of C. migao seeds.

Key words: seed germination, storage substances, endogenous hormone, antioxidant enzymes

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