Bulletin of Botanical Research ›› 2022, Vol. 42 ›› Issue (4): 657-666.doi: 10.7525/j.issn.1673-5102.2022.04.015
• Physiology and Ecology • Previous Articles Next Articles
Liben PAN1, Xue YAN2, Jia LIU2, Kexin WU1, Yang LIU2, Shaochong LIU3()
Received:
2021-11-17
Online:
2022-07-20
Published:
2022-07-15
Contact:
Shaochong LIU
E-mail:lscnefu@126.com
About author:
PAN Liben(1997—),female,Ph.D candidate,mainly engaged in the study of physiological and biochemical of understory plants.
Supported by:
CLC Number:
Liben PAN, Xue YAN, Jia LIU, Kexin WU, Yang LIU, Shaochong LIU. Physiological Characteristics of Early Spring Flowering Plants under Northeast Forest[J]. Bulletin of Botanical Research, 2022, 42(4): 657-666.
Add to citation manager EndNote|Ris|BibTeX
URL: https://bbr.nefu.edu.cn/EN/10.7525/j.issn.1673-5102.2022.04.015
Fig.1
The ratio of other hormones to ABA in early spring flowering plants and non-early spring flowering plants1.Adonis amurensis;2.Anemone amurensis;3.Fritillaria ussuriensis;4.Smilacina japonica;5.Gagea lutea;6.Aquilegia viridiflora;7.Cimicifuga foetida;8.Aconitum carmichaeli;9.Veratrum nigrum;10.Lilium distichum;Different small letters indicate the significant difference between early spring flowering plants(P<0.05);Different capital letters indicate the significant difference between non early spring flowering plants(P<0.05); * indicates the difference between early spring flowering plants and non-early spring flowering plants(P<0.05),** indicates the extremely significant difference between groups(P<0.01),ns indicates that there is no significant difference between the two groups;The same as below
Table 1
Basic information of target metabolites based on LC-MS
化合物 Compounds | 保留时间 Retention time /min | 质荷比 m/z | 分子式 Molecular formula | 碳骨架 Carbon skeleton | 化合物 Compounds | 保留时间 Retention time /min | 质荷比 m/z | 分子式 Molecular formula | 碳骨架 Carbon skeleton |
---|---|---|---|---|---|---|---|---|---|
对羟基肉桂酸 P-hydroxycinnamic acid | 4.26 | 164/146 | C9H8O3 | C6C3 | 柚皮苷 Naringin | 4.93 | 581/272 | C9H11NO2 | C6C3C6 |
苯甲酸 Benzoic acid | 5.69 | 123/78 | C7H6O2 | C6C1 | 山奈酚 Kaempferol | 7.94 | 287/152.9 | C27H32O14 | C6C3C6 |
龙胆酸 2,5-dihydroxybenzoic acid | 3.06 | 154/136 | C7H6O4 | C6C1 | 甘草素 Liquiritigenin | 6.58 | 257/136 | C15H10O6 | C6C3C6 |
染料木素 Genistein | 7.78 | 271/152 | C15H10O5 | C6C3C6 | 高良姜素 Galangin | 7.68 | 270/152 | C15H12O4 | C6C3C6 |
芹菜素 Apigenin | 7.79 | 271/91 | C15H10O5 | C6C3C6 | 原儿茶酸 Protocatechuic acid | 2.24 | 154/65 | C15H10O5 | C6C1 |
大豆苷元 Daidzein | 6.31 | 255/180 | C15H10O4 | C6C3C6 | 芦丁 Rutin | 3.99 | 611/302 | C27H30O16 | C6C3C6 |
丁香酸 Syringic acid | 3.31 | 199/140 | C9H10O5 | C6C1 | 异甘草素 Isoliquiritigenin | 8.69 | 257/146 | C27H30O16 | C6C3C6 |
柚皮素 Naringenin | 7.83 | 273/152 | C15H12O5 | C6C3C6 | 香草酸 Vanillic acid | 3.24 | 169/92 | C15H12O4 | C6C1 |
槲皮素 Quercetin | 4.89 | 449/303 | C21H20O11 | C6C3C6 | 染料木苷 Genistin | 4.47 | 432.9/271 | C8H8O4 | C6C3C6 |
绿原酸 Chlorogenic acid | 2.58 | 355/162 | C16H18O9 | C6C3 | 白杨素 Chrysin | 6.25 | 255/153 | C21H20O10 | C6C3C6 |
阿魏酸 Ferulic acid | 4.53 | 195/176 | C10H10O4 | C6C3 | 紫云英苷 Astragalin | 4.75 | 449.1/287.1 | C15H10O4 | C6C3C6 |
木犀草素 Luteolin | 6.68 | 287.1/152.5 | C15H10O6 | C6C3C6 | 花旗松素 Taxifolin | 4.72 | 305/231 | C21H20O11 | C6C3C6 |
肉桂酸 Cinnamic acid | 7.41 | 148/103 | C15H14O6 | C6C3 | 迷迭香酸 Rosmarinic acid | 5.32 | 361/163 | C15H12O7 | C6C3 |
橙皮素 Hesperetin | 8.14 | 303/177 | C9H8O2 | C6C3C6 | 异槲皮苷 Isoquercitrin | 4.26 | 465.1/303 | C18H16O8 | C6C3C6 |
咖啡酸 Caffeic acid | 3.25 | 181/163 | C16H14O6 | C6C3 | 芥子酸 Sinapic acid | 4.40 | 225/207 | C21H20O12 | C6C3 |
L-苯丙氨酸 L-phenylalanine | 1.69 | 166/92 | C9H8O4 |
1 | 刘晓春.早春植物及其生态学特性初探[J].林业勘查设计,2003(1): 28-30. |
LIU X C.A preliminary study on early spring plants and their ecological characteristics[J].Forest Investigation Design,2003(1):28-30. | |
2 | 李群,王萌,阮成江.五种早春开花木本植物花粉萌发的研究[J].北方园艺,2013(21):73-76. |
LI Q, WANG M, RUAN C J.Study on germination of five species of early spring flowering woody plants[J].Northern Horticulture,2013(21):73-76. | |
3 | 李盼华,石丽环,沙翠云,等.10种早春开花植物花器官抗寒临界温度比较研究[J].中国农学通报,2011,27(8):98-102. |
LI P H, SHI L H, SHA C Y,et al.The cold critical temperature compare of 10 species of early spring flowering plants in Baoding[J].Chinese Agricultural Science Bulletin,2011,27(8):98-102. | |
4 | WOLTERS H, JÜRGENS G.Survival of the flexible:hormonal growth control and adaptation in plant development[J].Nature Reviews Genetics,2009,10(5):305-317. |
5 | KHAN M, ROZHON W, POPPENBERGER B.The role of hormones in the aging of plants-a mini-review[J].Gerontology,2014,60(1):49-55. |
6 | 韩忠海,李晓宇,张继涛,等.外源植物激素对羊草开花习性及结实特征的影响[J].中国农学通报,2019,35(35):124-128. |
HAN Z H, LI X Y, ZHANG J T,et al.Exogenous plant hormones affect blooming and fruiting characteristics of Leymus chinensis [J].Chinese Agricultural Science Bulletin,2019,35(35):124-128. | |
7 | 覃喜军,黄夕洋,蒋水元,等.罗汉果花芽分化过程中内源激素的变化[J].植物生理学通讯,2010,46(9):939-942. |
QIN X J, HUANG X Y, JIANG S Y,et al.Changes in endogenous hormones during floral bud differentiation of Siraitia grosvenorii(Swingle) C. Jeffrey[J].Plant Physiology Communications,2010,46(9):939-942. | |
8 | KOVALEVA L V, ZAKHAROVA E V, MINKINA Y V.Auxin and flavonoids in the progame phase of fertilization in Petunia [J].Russian Journal of Plant Physiology,2007,54(3):396-401. |
9 | YLSTRA B, TOURAEV A, MORENO R,et al.Flavonols stimulate development,germination,and tube growth of tobacco pollen[J].Plant Physiology,1992,100(2):902-907. |
10 | MORNYA P, CHENG F Y.The levels of hormone and carbohydrate in autumn and non-autumn flowering tree peonies[J].Canadian Journal of Plant Science,2011,91(6):991-998. |
11 | 刘洋.应用代谢组学对比研究两种黄芪响应UV-B和干旱胁迫的代谢基础[D].哈尔滨:东北林业大学,2018. |
LIU Y.Comparative metabolomics study on the metabolic basis of two varieties of Astragalus in response to UV-B and drought stress[D].Harbin:Northeast Forestry University,2018. | |
12 | ALABADÍ D, BLÁZQUEZ M A, CARBONELL J,et al.Instructive roles for hormones in plant development[J].The International Journal of Developmental Biology,2009,53(8/9/10):1597-1608. |
13 | LIANG N G, CHENG D Y, LIU Q H,et al.Difference of proteomics vernalization-induced in bolting and flowering transitions of Beta vulgaris [J].Plant Physiology and Biochemistry,2018,123:222-232. |
14 | HUANG F Y, WU X T, HOU X L,et al.Vernalization can regulate flowering time through microRNA mechanism in Brassica rapa [J].Physiologia Plantarum,2018,164(2):204-215. |
15 | ZANEWICH K P, ROOD S B.Vernalization and endogenous gibberellin in winter canola[J].Plant Physiology,1993,102(1):9. |
16 | 曹尚银,张俊昌,魏立华.苹果花芽孕育过程中内源激素的变化[J].果树科学,2000,17(4):244-248. |
CAO S Y, ZHANG J C, WEI L H.Studies on the changes of endogenous hormones in the differentiation period of flower bud in apple trees[J].Journal of Fruit Science,2000,17(4):244-248. | |
17 | 黄羌维.龙眼内源激素变化和花芽分化及大小年结果的关系[J].热带亚热带植物学报,1996,4(2):58-62. |
HUANG Q W.Changes in endogenous hormone contents in relation to flower bud differentiation and on-year or off-year fruiting of longan[J].Journal of Tropical and Subtropical Botany,1996,4(2):58-62. | |
18 | 林贵玉,郑成淑,孙宪芝,等.光周期对菊花花芽分化和内源激素的影响[J].山东农业科学,2008(1):35-39. |
LIN G Y, ZHENG C S, SUN X Z,et al.Effects of photoperiod on floral bud differentiation and contents of endogenous hormones in Chrysanthemum [J].Shandong Agricultural Sciences,2008(1):35-39. | |
19 | 齐飞艳,彭镇华,胡陶,等.毛竹花期不同器官内源激素含量的变化[J].林业科学研究,2013,26(3):332-336. |
QI F Y, PENG Z H, HU T,et al.Changes of endogenous hormones in different organs during the flowering phase of moso bamboo[J].Forest Research,2013,26(3):332-336. | |
20 | 王三根.细胞分裂素在植物抗逆和延衰中的作用[J].植物学通报,2000,35(2):121-126,167. |
WANG S G.Roles of cytokinin on stress-resistance and delaying senescence in plants[J].Bulletin of Botany,2000,35(2):121-126,167. | |
21 | 李钱峰,鲁军,余佳雯,等.油菜素内酯与脱落酸互作调控植物生长与抗逆的分子机制研究进展[J].植物生理学报,2018,54(3):370-378. |
LI Q F, LU J, YU J W,et al.Advances in molecular mechanisms of brassinosteroid-abscisic acid crosstalk coordinating plant growth and stress tolerances[J].Plant Physiology Journal,2018,54(3):370-378. | |
22 | OH E, ZHU J Y, BAI M Y,et al.Cell elongation is regulated through a central circuit of interacting transcription factors in the Arabidopsis hypocotyl[J].eLife,2014,3:e03031. |
23 | HU Y R, HAN X, YANG M L,et al.The transcription factor inducer of CBF expressionl interacts with abscisic acid insensitive5 and DELLA proteins to fine-tune abscisic acid signaling during seed germination in Arabidopsis [J].The Plant Cell,2019,31(7):1520-1538. |
24 | DU J B, JIANG H K, SUN X,et al.Auxin and gibberellins are required for the receptor-like kinase ERECTA regulated hypocotyl elongation in shade avoidance in Arabidopsis [J].Frontiers in Plant Science,2018,9:124. |
25 | 于磊.水曲柳DELLA家族基因应答低温胁迫及参与被动休眠调控研究[D].哈尔滨:东北林业大学,2021. |
YU L.Response to low temperature stress and participates in passive dormancy regulation of DELLA family genes of Fraxinus mandshurica [D].Harbin:Northeast Forestry University,2021. | |
26 | DAI Y R, WANG J.Inhibition of photoperiodic induction of flowering by DL-p-Fluorophenylalanine in Pharbitis nil [J].Acta Phytophysiological Sinica,1988,14(3):304-307. |
27 | 王祥军,齐军仓,王仙,等.不同类型大麦品种籽粒中酚酸类化合物含量的差异[J].麦类作物学报,2010,30(5):847-852. |
WANG X J, QI J C, WANG X,et al.Difference of phenolic acid contents in the kernels of different types of barley[J].Journal of Triticeae Crops,2010,30(5):847-852. | |
28 | REPČÁK M, KRAUSOVÁ T.Phenolic glucosides in the course of ligulate flower development in diploid and tetraploid Matricaria chamomilla [J].Food Chemistry,2009,116(1):19-22. |
[1] | Yan WU, Sai LI, Kexin WU, Liqiang MU. Differences in Leaf Metabolism of Wild Rosa acicularis and Rosa acicularis ‘Luhe’ Based on GC-MS [J]. Bulletin of Botanical Research, 2022, 42(6): 1070-1078. |
[2] | Ying Song, Kexin Wu, Wenda Shao, Yuli Liu, Jia Liu, Yang Liu, Zhonghua Tang. Development-specific Investigation of Leaf Primary Metabolism of Acanthopanax senticosus and Acanthopanax sessiliflorus [J]. Bulletin of Botanical Research, 2022, 42(2): 268-277. |
[3] | Guobin Liu, Ting Liao, Ye Wang, Liqin Guo, Jinzhe Zhao, Yanwu Yao, Jun Cao. Regulation Mechanism of Endogenous Hormones in Adventitious Roots Formation of Platycladus orientalis ‘Beverleyensis’ [J]. Bulletin of Botanical Research, 2022, 42(2): 278-288. |
[4] | Yang-Jing ZHAO, Nan TANG, Dao-Cheng TANG, Jing ZHANG. An Optimized HPLC Procedure for Analyzing Three Endogenous Hormones in Tulip Bulbs [J]. Bulletin of Botanical Research, 2021, 41(1): 130-137. |
[5] | ZHI Hui, AI Dan, WU Ke-Xin, GUO Yun, XU Ming-Yuan, TANG Zhong-Hua. Comparison on Chemical Constituents between Potentilla chinensis and P.acaulis using GC-MS by Metabolomics Approach [J]. Bulletin of Botanical Research, 2020, 40(5): 718-727. |
[6] | WANG Ning, DONG Ying-Ying, YUAN Mei-Li, WANG Ya-Nan, ZENG Sheng-Yun. Effect of Warm Water Soaking on Protective Enzyme Activity and Endogenous Hormones Content of Eucommia ulmoides Seed During Different Stages of Germination [J]. Bulletin of Botanical Research, 2020, 40(4): 523-529. |
[7] | YANG Liu, WANG Le, XIE Zhong-Kui, GUO Zhi-Hong, ZHANG Yu-Bao. Influence of Endogenous IAA and GA3 on in vitro Lily Seedling Growth [J]. Bulletin of Botanical Research, 2016, 36(5): 760-767. |
[8] | DENG Shao-Li;JIANG Guo-Bin*;REN Xian;JIN Hua;MA Jin-Long;ZOU Ji-Xiang. Responses of Endogenous Hormones to Drought Stress in the Apoplast of Populus [J]. Bulletin of Botanical Research, 2013, 33(6): 690-696. |
[9] | ZHI Hai-Juan;SUN Hai-Feng;ZHI Peng;LI Zhen-Yu*;QIN Xue-Mei. Monitoring of Chemical Components Changes during Tussilago farfara L. Development using NMR-based Metabolomics [J]. Bulletin of Botanical Research, 2012, 32(4): 458-466. |
[10] | SUN Hong-Mei;LI Tian-Lai*;LI Yun-Fei. Changes of endogenous hormones in Lilium davidii var. unicolor bulbs during bulb development and storage at low temperature for dormancy release [J]. Bulletin of Botanical Research, 2006, 26(5): 570-576. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||