
白玉兰二次开花诱导与生理调控研究
陈香波, 张冬梅, 傅仁杰, 张浪, 申亚梅, 罗玉兰, 尹丽娟
南京林业大学学报(自然科学版) ›› 2024, Vol. 48 ›› Issue (5) : 97-104.
白玉兰二次开花诱导与生理调控研究
Induction and physiological regulatory mechanism of secondary flowering in Yulannia denudata
【目的】通过人工诱导实现白玉兰(Yulania denudata)二次开花,以探明白玉兰花芽分化与开花诱导的生理调控机制。【方法】采用施用营养肥与激素处理白玉兰植株,进行花芽发育石蜡切片观察,并测定不同时期花芽内源激素含量。【结果】5月上旬随着营养生长趋于减缓,白玉兰起始花芽分化,至6月上旬花芽分化基本完成;单独采用外源激素(6-BA、GA3)或配合施用营养肥(N、P、K、糖),可诱导白玉兰当年二次开花,二次开花株率33%~100%,单株最大开花量22;花芽分化成熟过程中,内源GA3与ABA含量升高,而打破休眠、开花的花芽内脱落酸(ABA)含量下降,内源生长素类激素(IAA、ME-IAA)含量升高;较未开花对照,外源细胞分裂素处理株花芽内ME-IAA、IPA、JA-Ile、JA含量较高,外源赤霉素(GA3)处理株内源tZR、GA1、GA3含量较高。【结论】外源激素可不依赖于营养处理直接诱导白玉兰二次开花,不同激素诱导白玉兰二次开花可能存在不同的开花调控通路。
【Objective】The aim of this study was to achieve the secondary flowering of Yulannia denudata through artificial induction and to explore the physiological regulation mechanism of flower bud differentiation and flowering induction in Y. denudata.【Method】Y. denudata plants were treated with nutrients and hormones. Flower buds were embedded in paraffin and sectioned to observe flower bud development, and endogenous hormone contents in flower buds at different stages were measured.【Result】Flower bud differentiation of Y. denudata began in early May when vegetative growth slowed down and was completed by early June. Secondary flowering within the same year was induced via treatment with exogenous hormones [6-benzylaminopurine (6-BA) and gibberellin A3 (GA3)] alone or in combination with nutrient applications [nitrogen (N), phosphorus (P), potassium (K) and sugars]. The secondary flowering rate ranged from 33% to 100%, with the maximum of 22 flowers per plant. During the maturation of flower bud differentiation, the levels of endogenous GA3 and abscisic acid (ABA) increased. The ABA content in flower buds decreased while breaking dormancy and flowering, whereas the content of endogenous auxins (indole-3-acetic acid (IAA) and methylindole-3-acetic acid (ME-IAA) increased. Flower buds treated with exogenous cytokinins had higher levels of ME-IAA, IPA, jasmonoyl-l-isoleucine (JA-Ile) and jasmonate (JA), while flower buds treated with exogenous gibberellins (GA3) had higher levels of endogenous trans-zeatin riboside (tZR), gibberellin A1 (GA1), and GA3. 【Conclusion】Exogenous hormones directly induce secondary flowering in Y. denudata without relying on nutrient treatments. Thus, different hormones may induce secondary flowering through various regulatory pathways.
白玉兰 / 花芽分化 / 二次开花 / 生理调控 / 营养 / 激素
Yulannia denudata / differentiation of flower bud / secondary flowering / physiological regulation / nutrition / hormone
[1] |
中国科学院中国植物志编辑委员会. 刘玉壶. 中国植物志.第30(1)卷.被子植物门.双子叶植物纲.防已科木兰科[M]. 北京: 科学出版社, 1996.
Chinese Academy of Sciences, Editorial Committee of Flora of China,
|
[2] |
舒素芳, 毛俊萱, 蔡敏. 白玉兰始花期与气象因子的关系分析[J]. 浙江农业学报, 2013, 25(2):248-251.
|
[3] |
范李节, 陈梦倩, 王宁杭, 等. 3种木兰属植物花芽分化时期及形态变化[J]. 东北林业大学学报, 2018, 46(1):27-30,39.
|
[4] |
武祖发, 胡建军, 斯华文, 等. 玉兰花芽分化观察[J]. 中国中药杂志, 1991, 16(2):79-81,126.
|
[5] |
张杰, 张春英, 王亚玲, 等. 木兰珍品:多季开花木兰[J]. 园林, 2018, 11:56-59.
|
[6] |
蒋政, 孙李勇, 刘旭, 等. 常春二乔玉兰春夏季开花节律及营养效应研究[J]. 植物研究, 2019, 39(2):192-199.
|
[7] |
唐启义, 冯明光. 统计分析及数据挖掘[M]. 北京: 科学出版社, 2007.
|
[8] |
陈建业, 鲁国荣, 宁玉霞, 等. 木兰属等3属植物的芽种类、结构与成枝规律研究[J]. 中国农学通报, 2012, 28(34):46-52.
|
[9] |
|
[10] |
|
[11] |
程少禹. ‘红元宝’紫玉兰两次花芽分化糖含量变化及转录组分析[D]. 杭州: 浙江农林大学, 2021.
|
[12] |
程少禹, 宣铃娟, 董彬, 等. ‘红元宝’紫玉兰两次花芽分化差异代谢通路及关键调控基因筛选[J]. 园艺学报, 2020, 47(8):1490-1504.
|
[13] |
赵慧慧. 高温胁迫下小麦中植物激素对外源海藻糖的响应[D]. 上海: 华东师范大学, 2016.
|
[14] |
肖爱华, 陈发菊, 贾忠奎, 等. 梯度洗脱高效液相色谱法测定红花玉兰中4种植物激素[J]. 分析试验室, 2020, 39(3):249-254.
|
[15] |
牛辉陵, 张洪武, 边媛, 等. 枣花分化发育过程及其内源激素动态研究[J]. 园艺学报, 2015, 42(4):655-664.
|
[16] |
孙斌. 盆栽金银花花期调控初步研究[J]. 山东林业科技, 2015, 45(6):41-43.
|
[17] |
温璐华, 王真, 庄维兵, 等. 外源GA4处理解除果梅花芽休眠的生理效应研究[J]. 中国南方果树, 2015, 44(5):16-22.
|
[18] |
|
[19] |
潘瑞炽, 董愚得. 植物生理学[M]. 北京: 高等教育出版社, 1998.
|
[20] |
|
[21] |
肖安琪. 三角梅花芽分化的内源激素变化与花期调控研究[D]. 广州: 华南农业大学, 2016.
|
[22] |
|
[23] |
|
[24] |
|
[25] |
孙丽, 徐启江. 高等植物开花诱导途径信号整合的分子机制[J]. 生物技术通讯, 2009, 20(6):885-890.
|
[26] |
|
[27] |
|
[28] |
|
[29] |
杨小凤, 李小蒙, 廖万金. 植物开花时间的遗传调控通路研究进展[J]. 生物多样性, 2021, 29(6):825-842.
|
/
〈 |
|
〉 |