纳米铜加蔗糖处理对非洲菊切花的保鲜作用

王书玉, 黎蓝, 赖凌峰, 李红梅, 刘季平, 何生根

中国农学通报. 2021, 37(4): 62-67

PDF(2474 KB)
PDF(2474 KB)
中国农学通报 ›› 2021, Vol. 37 ›› Issue (4) : 62-67. DOI: 10.11924/j.issn.1000-6850.casb2020-0485
林学·园艺·园林

纳米铜加蔗糖处理对非洲菊切花的保鲜作用

作者信息 +

Fresh-keeping Effects of Nano-copper and Sucrose on Cut Gerbera jamesonii

Author information +
History +

摘要

为探究新型纳米级无机杀菌剂纳米铜(nano-copper,NC)处理对切花的保鲜效应,以非洲菊(Gerbera jamesonii)‘红艳’切花为试材,观测不同浓度NC单独处理及其与蔗糖组合溶液瓶插处理对非洲菊瓶插寿命、观赏品质和水分关系的影响。结果表明,与去离子水处理(对照组)相比,1、3、5 mg/L NC单独处理对非洲菊切花没有明显的保鲜作用,而各浓度NC加3%蔗糖的组合处理均可有效延缓和减轻该切花的花朵萎蔫和花茎弯折等品质劣变症状。其中,以1、3 mg/L NC+3%蔗糖的组合处理效果最为突出,可显著延长该切花的瓶插寿命,并使花枝瓶插期间的鲜重、水分吸收量和水分平衡值均显著高于对照和NC单独处理。试验表明适宜浓度的NC加蔗糖组合溶液瓶插处理对非洲菊‘红艳’切花具有良好的保鲜作用。

Abstract

To study the fresh-keeping effects of nano-copper (NC), a novel nano-grade inorganic bactericide, on cut flowers, the vase life, ornamental quality and water relations of cut Gerbera jamesonii ‘Hongyan’ via vase treatments with NC alone and NC plus sucrose were investigated. The results showed that: compared with deionized water (control), the 1, 3 and 5 mg/L NC treatment had no positive fresh-keeping effects on cut gerberas. However, the various concentrations of NC plus 3% sucrose could effectively delay and alleviate the disorders in flower wilting and stem bending in different degrees. Among them, the treatments of 1 and 3 mg/L NC plus 3% sucrose had the most beneficial effects, which could significantly prolong the vase life of cut gerberas, and their fresh weight, and the water uptake and water balance value of cut gerberas were significantly higher than those of the control and NC alone during the whole vase period. In conclusion, appropriate concentration of NC and sucrose combination solution had beneficial fresh-keeping effect on cut gerberas ‘Hongyan’.

关键词

非洲菊 / 切花 / 纳米铜 / 蔗糖 / 保鲜

Key words

Gerbera jamesonii / cut flower / nano-copper / sucrose / fresh-keeping

引用本文

导出引用
王书玉 , 黎蓝 , 赖凌峰 , 李红梅 , 刘季平 , 何生根. 纳米铜加蔗糖处理对非洲菊切花的保鲜作用. 中国农学通报. 2021, 37(4): 62-67 https://doi.org/10.11924/j.issn.1000-6850.casb2020-0485
Wang Shuyu , Li Lan , Lai Lingfeng , Li Hongmei , Liu Jiping , He Shenggen. Fresh-keeping Effects of Nano-copper and Sucrose on Cut Gerbera jamesonii. Chinese Agricultural Science Bulletin. 2021, 37(4): 62-67 https://doi.org/10.11924/j.issn.1000-6850.casb2020-0485

参考文献

[1]
黄文彬, 董晓鸣. 非洲菊切花采后生理及保鲜技术研究[J]. 现代园艺, 2018(9):11-13.
[2]
Cheng G P, Wang L, He S G, et al. Involvement of pectin and hemicellulose depolymerization in cut gerbera flower stem bending during vase life[J]. Postharvest Biology and Technology, 2020,167:111232
[3]
王芳, 张楠, 张丽华. 不同保鲜剂对非洲菊切花保鲜效果的影响[J]. 现代园艺, 2015(8):5-7.
[4]
娄喜艳, 王桂青, 丁锦平, 等. 不同试剂组合对非洲菊鲜切花保鲜效果的影响[J]. 南方农业学报, 2018,49(9):1811-1815.
[5]
邓雪梅. 不同保鲜剂对非洲菊保鲜效果的影响[J]. 四川农业与农机, 2018(2):36-37.
[6]
过聪, 张庆华, 韩永超, 等. 非洲菊切花保鲜中的细菌鉴定和8-HQ抑菌保鲜研究[J]. 保鲜与加工, 2019,19(3):39-43,49.
[7]
吕培涛, 刘季平, 曹锦萍, 等. 二氯异氰脲酸钠对非洲菊鲜切花的保鲜效应[J]. 仲恺农业工程学院学报, 2010,23(1):26-29.
[8]
Liu J P, He S G, Zhang Z Q, et al. Nano-silver pulse treatments inhibit stem-end bacteria on cut gerbera cv. Ruikou flowers[J]. Postharvest Biology and Technology, 2009,54(1):59-62.
[9]
吕培涛, 黄新敏, 陆益民, 等. ICP-AES法测定纳米银在非洲菊切花中的时空分布[J]. 光谱学与光谱分析, 2011,31(8):2253-2255.
[10]
吴志成, 黄立新, 胡耀明, 等. 纳米银预处理对非洲菊切花抗氧化酶活性的影响[J]. 仲恺农业工程学院学报, 2012,25(1):16-19.
[11]
Ruparelia J P, Chatterjee A K, Duttagupta S P, et al. Strain specificity in antimicrobial activity of silver and copper nanoparticles[J]. Acta Biomaterialia, 2008,4(3):707-716.
The antimicrobial properties of silver and copper nanoparticles were investigated using Escherichia coli (four strains), Bacillus subtilis and Staphylococcus aureus (three strains). The average sizes of the silver and copper nanoparticles were 3 nm and 9 nm, respectively, as determined through transmission electron microscopy. Energy-dispersive X-ray spectra of silver and copper nanoparticles revealed that while silver was in its pure form, an oxide layer existed on the copper nanoparticles. The bactericidal effect of silver and copper nanoparticles were compared based on diameter of inhibition zone in disk diffusion tests and minimum inhibitory concentration (MIC) and minimum bactericidal concentration (MBC) of nanoparticles dispersed in batch cultures. Bacterial sensitivity to nanoparticles was found to vary depending on the microbial species. Disk diffusion studies with E. coli and S. aureus revealed greater effectiveness of the silver nanoparticles compared to the copper nanoparticles. B. subtilis depicted the highest sensitivity to nanoparticles compared to the other strains and was more adversely affected by the copper nanoparticles. Good correlation was observed between MIC and MBC (r2=0.98) measured in liquid cultures. For copper nanoparticles a good negative correlation was observed between the inhibition zone observed in disk diffusion test and MIC/MBC determined based on liquid cultures with the various strains (r2=-0.75). Although strain-specific variation in MIC/MBC was negligible for S. aureus, some strain-specific variation was observed for E. coli.
[12]
Khan S T, Ahamed M, Al-Khedhairy A, et al. Biocidal effect of copper and zinc oxide nanoparticles on human oral microbiome and biofilm formation[J]. Materials Letters, 2013,97(15):67-70.
[13]
王琦, 卢珊, 胡长鹰. 纳米铜食品抗菌包装材料的研究进展[J]. 包装工程, 2019,40(5):64-71.
[14]
罗娟, 高丽, 王啸, 等. 花团状纳米铜的表征及抑菌性能研究[J]. 山地农业生物学报, 2015,34(3):68-71.
[15]
张文凤, 阎玺庆, 王治华, 等. 花状纳米铜的制备及抗菌性能[J]. 功能材料, 2013,44(15):2156-2161.
[16]
Ratnayake K, Bui C L, Joyce D C. Copper distribution and ionic form effects for postharvest treatments of cut Acacia holosericea stems[J]. Scientia Horticulturae, 2011,130(4):919-926.
[17]
邸葆, 张钢, 陈段芬. 蔗糖浓度对非洲菊切花保鲜效果及生理特性的影响[J]. 北方园艺, 2011(4):172-175.
[18]
熊光元, 刘家凯. 不同蔗糖浓度对菊花切花保鲜的影响[J]. 中国园艺文摘, 2010,26(5):11-14.
[19]
关雪莲, 周桂玲. 4种鲜切花保鲜剂保鲜效果的研究[J]. 新疆农业大学学报, 2004(2):48-51.
[20]
Lin X H, Li H M, Lin S Q, et al. Improving the postharvest performance of cut spray ‘Prince’ carnations by vase treatments with nano-silver and sucrose[J]. Journal of Horticultural Science and Biotechnology, 2019,94:513-521.
[21]
刘季平, 张昭其, 李红梅, 等. 纳米银处理减轻香石竹切花细菌性茎堵塞的研究[J]. 园艺学报, 2014,41(1):131-138.
[22]
祝小云, 王晰, 徐哲, 等. 切花非洲菊采后弯茎机制初探[J]. 热带作物学报, 2016,37(5):922-929.
[23]
Ge Y F, Lai Q X, Luo P, et al. Transcriptome profiling of Gerbera hybrida reveals that stem bending is caused by water stress and regulation of abscisic acid[J]. BMC Genomics, 2019,20(1):600.
[24]
Van Doorn W G. Water relations of cut flowers: An update[J]. Horticultural Reviews, 2012,40:55-106.
[25]
公勤, 康群, 王玲, 等. 重金属铜对植物毒害机理的研究现状及展望[J]. 南方农业学报, 2018,49(3):469-475.

基金

国家自然科学基金项目“基于非叶气孔研究非洲菊切花的失水凋萎机制与调控”(31972439)
广东省自然科学基金项目“基于非叶气孔研究非洲菊切花的失水凋萎机制与调控”(2019A515011058)
广东省现代农业产业技术体系创新团队建设专项“农业纳米共性关键技术研发”(2019KJ140)

版权

版权所有,未经授权,不得转载、摘编本刊文章,不得使用本刊的版式设计。
PDF(2474 KB)

Accesses

Citation

Detail

段落导航
相关文章

/