Acta Horticulturae Sinica ›› 2021, Vol. 48 ›› Issue (4): 825-836.doi: 10.16420/j.issn.0513-353x.2020-0441
• Reviews • Previous Articles Next Articles
YU Xin, ZHANG Xiaonan, ZHAO Xiaochun()
Received:
2020-11-16
Online:
2021-04-25
Published:
2021-04-29
Contact:
ZHAO Xiaochun
E-mail:zhaoxiaochun@cric.cn
CLC Number:
YU Xin, ZHANG Xiaonan, ZHAO Xiaochun. Bioactive Compounds in Citrus Peel and Peel-related Important Horticultural Traits[J]. Acta Horticulturae Sinica, 2021, 48(4): 825-836.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.ahs.ac.cn/EN/10.16420/j.issn.0513-353x.2020-0441
[1] |
Agocs A, Nagy V, Szabo Z, Mark L, Ohmacht R, Deli J. 2007. Comparative study on the carotenoid composition of the peel and the pulp of different citrus species. Innovative Food Science and Emerging Technologies, 8 (3):390-394.
doi: 10.1016/j.ifset.2007.03.012 URL |
[2] | Ahmad S, Singh Z, Khan AS, Iqbal Z. 2013. Pre-harvest application of salicylic acid maintain the rind textural properties and reduce fruit rot and chilling injury of sweet orange during cold storage. Pakistan Journal of Agricultural Sciences, 50 (4):559-569. |
[3] |
Arora S, Mohanpuria P, Sidhu G S. 2018. Citrus limonoids:mechanism,function and its metabolic engineering for human health. Fruits, 73 (3):158-173.
doi: 10.17660/th2018/73.3.3 URL |
[4] |
Baba S, Ueno Y, Kikuchi T, Tanaka R, Fujimori K. 2016. A limonoid Kihadanin B from immature Citrus unshiu peels suppresses adipogenesis through repression of the Akt-FOXO1-PPAR gamma axis in adipocytes. Journal of Agricultural and Food Chemistry, 64 (51):9607-9615.
doi: 10.1021/acs.jafc.6b04521 URL |
[5] | Barreca D, Mandalari G, Calderaro A, Smeriglio A, Trombetta D, Felice M R, Gattuso G. 2020. Citrus flavones:an update on sources,biological functions,and health promoting properties. Plants (Basel), 9 (3):288. |
[6] |
Brummell D A. 2006. Cell wall disassembly in ripening fruit. Functional Plant Biology, 33 (2):103-119.
doi: 10.1071/FP05234 URL |
[7] |
Butelli E, Licciardello C, Zhang Y, Liu J, Mackay S, Bailey P, Reforgiato-Recupero G, Martin C. 2012. Retrotransposons control fruit-specific,cold-dependent accumulation of anthocyanins in blood oranges. Plant Cell, 24 (3):1242-1255.
doi: 10.1105/tpc.111.095232 URL |
[8] |
Chaidedgumjorn A, Sotanaphun U, Kitcharoen N, Asavapichayont P, Satiraphan M, Sriamornsak P. 2009. Pectins from Citrus maxima. Pharmaceutical Biology, 47 (6):521-526.
doi: 10.1080/13880200902845795 URL |
[9] | Chang Mei-yan, Feng Shan, Wang Ting-ting, Yang Qing-yue, Li Tao. 2018. Progresses on chemical constituents of coumarins in medicinal citrus. Chemical Industry Management,(11):9-10. (in Chinese) |
苌美燕, 冯杉, 王婷婷, 杨青月, 李涛. 2018. 柑橘属药用植物香豆素类化学成分研究进展. 化工管理,(11):9-10. | |
[10] | Chen Hong, Xu Xiang-zhou, Yin Yi-jun, Pan Hai-bing, Bao Xiu-lan, Li Shan-jun, Xu Qin-chao. 2017. Experimental study on mechanical properties and peel separation characteristics of Citrus reticulate blanco with peel clamped moving. Transactions of the Chinese Society of Agricultural Engineering, 33 (14):25-31. (in Chinese) |
陈红, 徐翔宙, 尹伊君, 潘海兵, 鲍秀兰, 李善军, 徐勤超. 2017. 宽皮柑橘移动夹持剥皮力学特性与果皮分离特性试验研究. 农业工程学报, 33 (14):25-31. | |
[11] | Chen Jia-jing, Peng Zhao-xin, Shi Mei-yan, Xu Juan. 2016. Advances in on flavonoid composition and metabolism in citrus. Acta Horticulturae Sinica, 43 (2):384-400. (in Chinese) |
陈嘉景, 彭昭欣, 石梅艳, 徐娟. 2016. 柑橘中类黄酮的组成与代谢研究进展. 园艺学报, 43 (2):384-400. | |
[12] | Chen Jie-zhong, Ye Zi-xing, Zhou Bi-yan, Xu Chun-xiang, Li Juan. 2005. Effects of pectins and pectinesterase activity on creasing fruit formation in orange( Citrus sinensis Osbeck). Acta Horticulturae Sinica, 32 (2):202-206. (in Chinese) |
陈杰忠, 叶自行, 周碧燕, 徐春香, 李娟. 2005. 柑橘果皮果胶及其酶活性对皱皮果形成的影响. 园艺学报, 32 (2):202-206. | |
[13] | Chen Kaili, Xu Ke, Zhang Xiancong, Wang Yanan, Wang Zhihui, Wang Xun. 2017. Advances in genes information involved in pectin metabolism in fruit. Acta Horticulturae Sinica, 44 (10):2008-2014. (in Chinese) |
陈凯莉, 许轲, 张贤聪, 王亚楠, 汪志辉, 王迅. 2017. 果实中果胶代谢相关酶基因的研究进展. 园艺学报, 44 (10):2008-2014. | |
[14] |
Ciriminna R, Chavarria-Hernandez N, Hernandez AIR, Pagliaro M. 2015. Pectin:a new perspective from the biorefinery standpoint. Biofuels,Bioproducts and Biorefining, 9 (4):368-377.
doi: 10.1002/bbb.2015.9.issue-4 URL |
[15] |
Detsi A, Kontogiorgis C, Hadjipavlou-Litina D. 2017. Coumarin derivatives:an updated patent review(2015-2016). Expert Opinion on Therapeutic Patents, 27 (11):1201-1226.
doi: 10.1080/13543776.2017.1360284 URL |
[16] |
Dosoky N S, Setzer W N. 2018. Biological activities and safety of Citrus spp. essential oils. International Journal of Molecular Sciences, 19 (7):1966.
doi: 10.3390/ijms19071966 URL |
[17] |
Dugrand A, Olry A, Duval T, Hehn A, Froelicher Y, Bourgaud F. 2013. Coumarin and furanocoumarin quantitation in citrus peel via ultraperformance liquid chromatography coupled with mass spectrometry(UPLC-MS). Journal of Agricultural and Food Chemistry, 61 (45):10677-10684.
doi: 10.1021/jf402763t URL pmid: 24117278 |
[18] |
Eggersdorfer M, Wyss A. 2018. Carotenoids in human nutrition and health. Archives of Biochemistry and Biophysics, 652:18-26.
doi: S0003-9861(18)30165-6 pmid: 29885291 |
[19] |
Fouad H A, da Camara C A G. 2017. Chemical composition and bioactivity of peel oils from Citrus aurantiifolia and Citrus reticulata and enantiomers of their major constituent against Sitophilus zeamais(Coleoptera:Curculionidae). Journal of Stored Products Research, 73:30-36.
doi: 10.1016/j.jspr.2017.06.001 URL |
[20] |
Garcialuis A, Agusti M, Almela V, Romero E, Guardiola J L. 1985. Effect of gibberellic-acid on ripening and peel puffing in Satsuma mandarin. Scientia Horticulturae, 27:75-86.
doi: 10.1016/0304-4238(85)90057-3 URL |
[21] |
Goldenberg L, Yaniv Y, Kaplunov T, Doron-Faigenboim A, Porat R, Carmi N. 2014. Genetic diversity among mandarins in fruit-quality traits. Journal of Agricultural and Food Chemistry, 62 (21):4938-4946.
doi: 10.1021/jf5002414 URL pmid: 24828369 |
[22] |
Gonzalez-Mas M C, Rambla J L, Lopez-Gresa M P, Blazquez M A, Granell A. 2019. Volatile compounds in citrus essential oils:a comprehensive review. Frontiers in Plant Science, 10:12.
doi: 10.3389/fpls.2019.00012 URL |
[23] |
Gualdani R, Cavalluzzi M M, Lentini G, Habtemariam S. 2016. The chemistry and pharmacology of citrus limonoids. Molecules, 21 (11):1530.
doi: 10.3390/molecules21111530 URL |
[24] |
Huang D, Wang X, Tang Z, Yuan Y, Xu Y, He J, Jiang X, Peng SA, Li L, Butelli E, Deng X, Xu Q. 2018. Subfunctionalization of the Ruby2-Ruby 1 gene cluster during the domestication of citrus. Nature Plants, 4 (11):930-941.
doi: 10.1038/s41477-018-0287-6 pmid: 30374094 |
[25] |
Huang D, Yuan Y, Tang Z, Huang Y, Kang C, Deng X, Xu Q. 2019. Retrotransposon promoter of Ruby 1 controls both light- and cold-induced accumulation of anthocyanins in blood orange. Plant Cell and Environment, 42 (11):3092-3104.
doi: 10.1111/pce.v42.11 URL |
[26] |
Hussain Z, Singh Z. 2015. Involvement of polyamines in creasing of sweet orange [ Citrus sinensis (L.) Osbeck] fruit. Scientia Horticulturae, 190:203-210.
doi: 10.1016/j.scienta.2015.04.013 URL |
[27] | Ibanez A M, Martinelli F, Reagan R L, Uratsu S L, Vo A, Tinoco M A, Phu M L, Chen Y, Rocke D M, Dandekara A M. 2014. Transcriptome and metabolome analysis of citrus fruit to elucidate puffing disorder. Plant Science, 217:87-98. |
[28] | Jalgaonkar K R, Jha S K, Pal R K, Jha G K, Samuel D V K. 2013. Effect of species and particle size on essential oil yield of citrus peel( Citrus spp.). Indian Journal of Agricultural Sciences, 83 (12):1285-1288. |
[29] |
Jing L, Lei Z T, Zhang G W, Pilon A C, Huhman D V, Xie R J, Xi W P, Zhou Z Q, Sumner L W. 2015. Metabolite profiles of essential oils in citrus peels and their taxonomic implications. Metabolomics, 11 (4):952-963.
doi: 10.1007/s11306-014-0751-x URL |
[30] |
Kaur M, Kohli S, Sandhu S, Bansal Y, Bansal G. 2015. Coumarin:a promising scaffold for anticancer agents. Anti-cancer Agents in Medicinal Chemistry, 15 (8):1032-1048.
doi: 10.2174/1871520615666150101125503 URL |
[31] |
Kaur R, Kaur N, Singh H. 2019. Pericarp and pedicel anatomy in relation to fruit cracking in lemon(Citrus limon L. Burm.). Scientia Horticulturae, 246:462-468.
doi: 10.1016/j.scienta.2018.11.040 URL |
[32] | Kawase K, Hirai K, Kamuro Y, Maotani T. 1985. Effects of ethychlozate on suppressing the rind puffing of satsuma mandarin. Journal of the Japanese Society for Horticultural Science, 54 (2):171-177. |
[33] |
Kikuchi T, Ueno Y, Hamada Y, Furukawa C, Fujimoto T, Yamada T, Tanaka R. 2017. Five new limonoids from peels of satsuma orange (Citrus reticulata). Molecules, 22 (6):907.
doi: 10.3390/molecules22060907 URL |
[34] | Kubo T, Hiratsuka S. 1998. Effect of bearing angle of satsuma mandarin fruit on rind roughness,pigmentation,and sugar and organic acid concentrations in the juice. Journal of the Japanese Society for Horticultural Science, 67 (1):51-58. |
[35] | Kubo T, Hiratsuka S. 1999. Histological study on rind roughness of satsuma mandarin fruit. Journal of the Japanese Society for Horticultural Science, 68 (1):101-107. |
[36] | Kubo T, Hiratsuka S. 2000. Relationship between rind roughness and gibberellins in satsuma mandarin fruit. Journal of the Japanese Society for Horticultural Science, 69 (6):718-723. |
[37] | Kubo T, Maekawa M, Hiratsuka S. 1996. Relationship between rind surface morphology and sugar concentration in the juice of satsuma mandarin fruit. Journal of the Japanese Society for Horticultural Science, 65 (3):447-453. |
[38] | Kuraoka T, Iwasaki K, Ishii T. 1977. Effects of GA 3 on puffing and levels of GA-like substances and ABA in peel of satsuma mandarin( Citrus unshu marc). Journal of the American Society for Horticultural Science, 102 (5):651-654. |
[39] |
Lara-Espinoza C, Carvajal-Millan E, Balandran-Quintana R, Lopez-Franco Y, Rascon-Chu A. 2018. Pectin and pectin-based composite materials:beyond food texture. Molecules, 23 (4):942.
doi: 10.3390/molecules23040942 URL |
[40] | Lai Cheng-chun, Huang Xian-gui, Wang Qi, Chen Yuan, Gao Hui-ying, Xie Hong-gen. 2019. Effect of fruit growth and soil moisture content on fruit cracking for‘Murcott’tangerine. Journal of Fujian Agriculture and Forestry University(Natural Science Edition), 48 (4):434-439. (in Chinese) |
赖呈纯, 黄贤贵, 王琦, 陈源, 高慧颖, 谢鸿根. 2019. 果实生长与果园土壤含水量的变化对‘茂谷柑’裂果的影响. 福建农林大学学报(自然科学版), 48 (4):434-439. | |
[41] |
Li J, Liang C H, Liu X Y, Huai B, Chen J Z, Yao Q, Qin Y, Liu Z, Luo X Y. 2016. Effect of Zn and NAA co-treatment on the occurrence of creasing fruit and the peel development of‘Shatangju’mandarin. Scientia Horticulturae, 201:230-237.
doi: 10.1016/j.scienta.2016.01.039 URL |
[42] |
Liu D C, Zeng Q, Ji Q X, Liu C F, Liu S B, Liu Y. 2012. A comparison of the ultrastructure and composition of fruits’ cuticular wax from the wild-type‘Newhall’navel orange(Citrus sinensis [L.] Osbeck cv. Newhall)and its glossy mutant. Plant Cell Reports, 31 (12):2239-2246.
doi: 10.1007/s00299-012-1333-x URL |
[43] | Liu Fang. 2012. Study on the anatomical morphology and quality changes of rough fruit of satsuma[M. D. Dissertation]. Wuhan:Huazhong Agricultural University. (in Chinese) |
刘芳. 2012. 温州蜜柑粗皮大果的解剖形态和品质变化研究[硕士论文]. 武汉:华中农业大学. | |
[44] |
Lo Piero A R. 2015. The state of the art in biosynthesis of anthocyanins and its regulation in pigmented sweet oranges [( Citrus sinensis)L. Osbeck]. Journal of Agricultural and Food Chemistry, 63 (16):4031-4041.
doi: 10.1021/acs.jafc.5b01123 URL |
[45] |
Lu X P, Li F F, Xiong J, Cao X J, Ma X C, Zhang Z M, Cao S Y, Xie S X. 2017. Transcriptome and metabolome analyses provide insights into the occurrence of peel roughing disorder on satsuma mandarin( Citrus unshiu Marc.) fruit. Frontiers in Plant Science, 8:1907.
doi: 10.3389/fpls.2017.01907 URL |
[46] |
Luan Y, Wang S, Wang R, Xu C. 2020. Accumulation of red apocarotenoid beta-citraurin in peel of a spontaneous mutant of Huyou( Citrus changshanensis)and the effects of storage temperature and ethylene application. Food Chemistry, 309:125705.
doi: 10.1016/j.foodchem.2019.125705 URL |
[47] |
Ma G, Zhang L C, Matsuta A, Matsutani K, Yamawaki K, Yahata M, Wahyudi A, Motohashi R, Kato M. 2013. Enzymatic formation of beta-citraurin from beta-cryptoxanthin and zeaxanthin by carotenoid cleavage dioxygenase 4 in the flavedo of citrus fruit. Plant Physiology, 163 (2):682-695.
doi: 10.1104/pp.113.223297 URL |
[48] | Ma Xiao-huan, Peng Liang-zhi, Chun Chang-pin, Ling Li-li, Cao Li, Jiang Cai-lun, Xie Fa, Zhang Wen-wen, Gu Zu-liang, Tang Huan-qing. 2011. Changes in albedo microstructures and macroelement content in peels of peel pitting‘Navel’oranges. Acta Horticulturae Sinica, 38 (10):1857-1864. (in Chinese) |
马小焕, 彭良志, 淳长品, 凌丽俐, 曹立, 江才伦, 解发, 张雯雯, 古祖亮, 唐焕庆. 2011. 脐橙果皮内裂发生的解剖结构和矿质营养元素变化. 园艺学报, 38 (10):1857-1864. | |
[49] | Maotani T, Kawase K, Kamuro Y, Hirai K. 1983. Effects of ethylene on peel puffing of satsuma mandarin. Journal of the Japanese Society for Horticultural Science, 52 (3):238-242. |
[50] |
Manuranjan G, Lalduhsanga P, Lalhlenmawia H, Bibhuti K, Thanzami K. 2019. Physicochemical,antibacterial and antioxidant properties of fixed and essential oils extracted from the peels of Citrus macroptera fruit. Indian Journal of Pharmaceutical Sciences, 81 (1):82-88.
doi: 10.4172/pharmaceutical-sciences.1000482 |
[51] |
Martinelli F, Ibanez A M, Reagan R L, Davino S, Dandekar A M. 2015. Stress responses in citrus peel:comparative analysis of host responses to Huanglongbing disease and puffing disorder. Scientia Horticulturae, 192:409-420.
doi: 10.1016/j.scienta.2015.06.037 URL |
[52] |
Milani A, Basirnejad M, Shahbazi S, Bolhassani A. 2017. Carotenoids:biochemistry,pharmacology and treatment. British Journal of Pharmacology, 174 (11):1290-1324.
doi: 10.1111/bph.v174.11 URL |
[53] |
Minamikawa M F, Nonaka K, Kaminuma E, Kajiya-Kanegae H, Onogi A, Goto S, Yoshioka T, Imai A, Hamada H, Hayashi T, Matsumoto S, Katayose Y, Toyoda A, Fujiyama A, Nakamura Y, Shimizu T, Iwata H. 2017. Genome-wide association study and genomic prediction in citrus:potential of genomics-assisted breeding for fruit quality traits. Scientific Reports, 7:4721.
doi: 10.1038/s41598-017-05100-x pmid: 28680114 |
[54] |
Muramatsu N, Takahara T, Ogata T, Kojima K. 1999. Changes in rind firmness and cell wall polysaccharides during citrus fruit development and maturation. HortScience, 34 (1):79-81.
doi: 10.21273/HORTSCI.34.1.79 URL |
[55] |
Naqash F, Masoodi F A, Rather S A, Wani S M, Gani A. 2017. Emerging concepts in the nutraceutical and functional properties of pectin-a review. Carbohydrate Polymers, 168:227-239.
doi: S0144-8617(17)30314-4 pmid: 28457445 |
[56] | Navarra M, Mannucci C, Delbò M, Calapai G. 2015. Citrus bergamia essential oil:from basic research to clinical application. Frontiers in Pharmacology, 6:36. |
[57] |
Pose S, Paniagua C, Matas A J, Gunning A P, Morris V J, Quesada M A, Mercado J A. 2019. A nanostructural view of the cell wall disassembly process during fruit ripening and postharvest storage by atomic force microscopy. Trends in Food Science and Technology, 87:47-58.
doi: 10.1016/j.tifs.2018.02.011 URL |
[58] |
Rodrigo M J, Alquezar B, Alos E, Lado J, Zacarias L. 2013a. Biochemical bases and molecular regulation of pigmentation in the peel of citrus fruit. Scientia Horticulturae, 163:46-62.
doi: 10.1016/j.scienta.2013.08.014 URL |
[59] |
Rodrigo M J, Alquezar B, Alos E, Medina V, Carmona L, Bruno M, Al-Babili S, Zacarias L. 2013b. A novel carotenoid cleavage activity involved in the biosynthesis of citrus fruit-specific apocarotenoid pigments. Journal of Experimental Botany, 64 (14):4461-4478.
doi: 10.1093/jxb/ert260 URL |
[60] |
Sato K, Ikoma Y. 2017. Improvement in handpicking efficiency of satsuma mandarin fruit with combination treatments of gibberellin,prohydrojasmon and ethephon. Horticulture Journal, 86 (3):283-290.
doi: 10.2503/hortj.OKD-003 URL |
[61] | Sato K, Ikoma Y, Matsumoto H, Nakajima N. 2015. Effects of spray concentrations and spray times of gibberellin and prohydrojasmon on peel puffing and peel color in Satsuma mandarin fruit. Horticultural Research(Japan), 14 (4):419-426. |
[62] |
Sharma K, Mahato N, Lee Y R. 2019. Extraction,characterization and biological activity of citrus flavonoids. Reviews in Chemical Engineering, 35 (2):265-284.
doi: 10.1515/revce-2017-0027 URL |
[63] |
Shi Z, Yang H, Jiao J, Wang F, Lu Y, Deng J. 2019. Effects of graft copolymer of chitosan and salicylic acid on reducing rot of postharvest fruit and retarding cell wall degradation in grapefruit during storage. Food Chemistry, 283:92-100.
doi: 10.1016/j.foodchem.2018.12.078 URL |
[64] | Tao Jun, Zhang Shang-long, Xu Jian-guo, Liu Chun-rong. 2003a. Analysis of major carotenoid composition and its content in citrus fruit. Scientia Agricultura Sinica, 36 (10):1202-1208. (in Chinese) |
陶俊, 张上隆, 徐建国, 刘春荣. 2003a. 柑橘果实主要类胡萝卜素成分及含量分析. 中国农业科学 36 (10):1202-1208. | |
[65] | Tao Jun, Zhang Shang-long, Zhang Liang-cheng, An Xin-min, Liu Chun-rong. 2003b. Relationship between color formation and change in composition of carotenoids in peel of citrus fruit. Journal of Plant Physiology and Molecular Biology, 29 (2):121-126. (in Chinese) |
陶俊, 张上隆, 张良诚, 安新民, 刘春荣. 2003b. 柑橘果皮颜色的形成与类胡萝卜素组分变化的关系. 植物生理与分子生物学学报, 29 (2):121-126. | |
[66] |
Tejada S, Martorell M, Capo X, Tur J A, Pons A, Sureda A. 2017. Coumarin and derivates as lipid lowering agents. Current Topics in Medicinal Chemistry, 17 (4):391-398.
doi: 10.2174/1568026616666160824102322 URL |
[67] | Tian Ming, Xu Xiao-yun, Fan Xin, Pan Si-yi. 2015. Progress of main categories and biological activity of carotene in citrus. Journal of Huazhong Agricutrual University, 34 (5):138-144. (in Chinese) |
田明, 徐晓云, 范鑫, 潘思轶. 2015. 柑橘中主要类胡萝卜素及其生物活性研究进展. 华中农业大学学报, 34 (5):138-144. | |
[68] |
Valero D, Martinez-Romero D, Serrano M, Riquelme F. 1998. Postharvest gibberellin and heat treatment effects on polyamines,abscisic acid and firmness in lemons. Journal of Food Science, 63 (4):611-615.
doi: 10.1111/j.1365-2621.1998.tb15796.x URL |
[69] |
Wang F, Chen L, Chen H P, Chen S W, Liu Y P. 2019. Analysis of flavonoid metabolites in citrus peels( Citrus reticulata‘Dahongpao’)using UPLC-ESI-MS/MS. Molecules, 24 (15):2680.
doi: 10.3390/molecules24152680 URL |
[70] |
Wang F, Yu X, Liu X, Shen W, Zhu S, Zhao X. 2016. Temporal and spatial variations on accumulation of nomilin and limonin in the pummelos. Plant Physiology and Biochemistry, 106:23-29.
doi: 10.1016/j.plaphy.2016.04.039 URL |
[71] | Wang Wei-jie, Xu Jiang-guo, Xu Chang-jie. 2006. Developmental changes in extermal color,pigment content and composition in Citrus iyo fruit. Acta Horticulturae Sinica, 33 (3):461-465. (in Chinese) |
王伟杰, 徐建国, 徐昌杰. 2006. 宫内伊予柑果实发育期间色泽和色素的变化. 园艺学报, 33 (3):461-465. | |
[72] |
Wang Y C, Chuang Y C, Hsu H W. 2008. The flavonoid,carotenoid and pectin content in peels of citrus cultivated in Taiwan. Food Chem, 106 (1):277-284.
doi: 10.1016/j.foodchem.2007.05.086 URL |
[73] |
Wu C, Liu Y, Yang Y, Zhang P, Zhong W, Wang Y, Wang Q, Xu Y, Li M, Li X, Zheng M, Chen L, Li H. 2020. Analysis of therapeutic targets for SARS-CoV-2 and discovery of potential drugs by computational methods. Acta Pharmaceutica Sinica B, 10 (5):766-788.
doi: 10.1016/j.apsb.2020.02.008 URL |
[74] | Xia Bo, Pang Li, Yang Meng-ling, Liu Yi, Xia Yan-bin. 2012. Research progress of biological activities of limonoids. Academic Periodical of Farm Products Processing,(2):44-47. (in Chinese) |
夏菠, 庞立, 杨梦玲, 刘毅, 夏延斌. 2012. 类柠檬苦素的生物活性研究进展. 农产品加工(学刊),(2):44-47. | |
[75] | Xie Linfeng, Ren Chuanhong, Zhang Bo, Xu Changjie, Li Xian. 2019. Plant UDP-glycosyltransferases in flavonoids biosynthesis. Acta Horticulturae Sinica, 46 (9):1655-1669. (in Chinese) |
解林峰, 任传宏, 张波, 徐昌杰, 李鲜. 2019. 植物类黄酮生物合成相关UDP-糖基转移酶研究进展. 园艺学报, 46 (9):1655-1669. | |
[76] |
Xu W J, Dubos C, Lepiniec L. 2015. Transcriptional control of flavonoid biosynthesis by MYB-bHLH-WDR complexes. Trends in Plant Science, 20 (3):176-185.
doi: 10.1016/j.tplants.2014.12.001 URL |
[77] | Xuan Yi-wei, Liu Ying, Jiang Ping, Dan Jun-feng, Chen Jian-chu. 2008. Literature review of biological activity and research prospects of citrus flavonoid. Bulletin of Science and Technology,(4):54-57,81. (in Chinese) |
宣以巍, 刘英, 江萍, 但俊峰, 陈健初. 2008. 柑橘类黄酮的生理活性及其研究现状. 科技通报,(4):54-57,81. | |
[78] | Zeng Fan-kun, Zou Liang-sheng, Jiao Bi-lin. 2003. Study on the content and distribution of limonoides in citrus fruits. Journal of Chinese Institute of Food Science and Technology, 3 (4):79-81. (in Chinese) |
曾凡坤, 邹连生, 焦必林. 2003. 柑桔中类柠檬苦素含量及分布研究. 中国食品学报, 3 (4):79-81. | |
[79] | Zhang Bei, Feng Wei-hua, Zeng Xiao-fang, Bai Wei-dong, Yu Li-mei. 2017. Advances on properties and biological activities of limonoids. Farm Products Processing, 18 (9):69-71. (in Chinese) |
张贝, 冯卫华, 曾晓房, 白卫东, 于立梅. 2017. 柠檬苦素的性质及其生物活性研究进展. 农产品加工, 18 (9):69-71. | |
[80] |
Zhang J K, Wu Y P, Zhao X Y, Luo F L, Li X, Zhu H, Sun C D, Chen K S. 2014. Chemopreventive effect of flavonoids from Ougan( Citrus reticulata cv. Suavissima)fruit against cancer cell proliferation and migration. Journal of Functional Foods, 10:511-519.
doi: 10.1016/j.jff.2014.08.006 URL |
[81] |
Zhang Peng-long, Chen Fu-sheng, Yang Hong-shun, Li Li-te, Gong Bao-wen, Wang Liu-liu. 2010. Research advances on cell wall disassembly in fruit ripening and softening. Food Science and Technology, 35 (11):62-66. (in Chinese)
doi: 10.1002/fsat.v35.1 URL |
张鹏龙, 陈复生, 杨宏顺, 李里特, 宫保文, 王留留. 2010. 果实成熟软化过程中细胞壁降解研究进展. 食品科技, 35 (11):62-66. | |
[82] | Zhang Qiu-ming, Wei Yue-rong, Zheng Yu-sheng. 2001. Mechanism of puffiness and the methods of control in citrus fruit Ⅱ. Relation between puffiness and senescence of the early-maturing satsuma mandarin. Journal of Hunan Agricultural University(Natural Sciences), 27 (1):32-34. (in Chinese) |
张秋明, 魏岳荣, 郑玉生. 2001. 柑桔果实浮皮发生机理及控制途径研究Ⅱ. 特早熟温州蜜果实浮皮与衰老的关系. 湖南农业大学学报(自然科学版), 27 (1):2-34. | |
[83] | Zhang Shi-yi, Ke Fu-zhi, Zhao Di, Xu Kai, Qin Qiao-ping, Xu Jian-guo, Xiao Jin-ping, Zhang Lan-lan. 2016. Progress in studies on mechanism of puffing disorder and its regulation in citrus fruits. Acta Horticulturae Sinica, 43 (9):1719-1725. (in Chinese) |
张世怡, 柯甫志, 赵迪, 徐凯, 秦巧平, 徐建国, 肖金平, 张岚岚. 2016. 柑橘果实浮皮发生机理的研究进展. 园艺学报 43 (9):1719-1725. | |
[84] | Zhang Yin, Wan Yong, Zhang Ting, Ye Junli, Deng Xiuxin. 2020. RNAi-mediated suppression of CCD1 gene impacts carotenoid accumulation in citrus calli. Acta Horticulturae Sinica, 47 (10):1982-1990. (in Chinese) |
张印, 万勇, 张婷, 叶俊丽, 邓秀新. 2020. 柑橘愈伤组织RNAi沉默 CCD1基因对其类胡萝卜素积累的影响. 园艺学报, 47 (10):1982-1990. | |
[85] |
Zhao C, Wang F, Lian Y, Xiao H, Zheng J. 2020. Biosynthesis of citrus flavonoids and their health effects. Critical Reviews in Food Science and Nutrition, 60 (4):566-583.
doi: 10.1080/10408398.2018.1544885 URL |
[86] |
Zheng X J, Zhu K J, Sun Q, Zhang W Y, Wang X, Cao H B, Tan M L, Xie Z Z, Zeng Y L, Ye J L, Chai L J, Xu Q, Pan Z Y, Xiao S Y, Fraser P D, Deng X X. 2019. Natural variation in CCD 4 promoter underpins species-specific evolution of red coloration in citrus peel. Molecular Plant, 12 (9):1294-1307.
doi: 10.1016/j.molp.2019.04.014 URL |
[87] | Zhu Chun-hua, Li Ju-xiang, Zhou Xian-yan, Shen Zheng-song, Yue Jian-qiang. 2015. Research on activity of limonin and limonoids in citrus fruit. Storage and Process, 15 (6):78-82. (in Chinese) |
朱春华, 李菊湘, 周先艳, 沈正松, 岳建强. 2015. 柑橘果实中柠檬苦素及类似物功能活性研究进展. 保鲜与加工, 15 (6):78-82. | |
[88] |
Zhu K J, Wu Q J, Huang Y, Ye J L, Xu Q, Deng X X. 2020. Genome-wide characterization of cis-acting elements in the promoters of key carotenoid pathway genes from the main species of genus Citrus. Horticultural Plant Journal, 6 (6):385-395.
doi: 10.1016/j.hpj.2020.10.003 URL |
[1] | YE Zimao, SHEN Wanxia, LIU Mengyu, WANG Tong, ZHANG Xiaonan, YU Xin, LIU Xiaofeng, and ZHAO Xiaochun, . Effect of R2R3-MYB Transcription Factor CitMYB21 on Flavonoids Biosynthesis in Citrus [J]. Acta Horticulturae Sinica, 2023, 50(2): 250-264. |
[2] | JIANG Jingdong, WEI Zhuangmin, WANG Nan, ZHU Chenqiao, YE Junli, XIE Zongzhou, DENG Xiuxin, CHAI Lijun. Exploitation and Identification of Tetraploid Resources of Hongkong Kumquat(Fortunella hindsii) [J]. Acta Horticulturae Sinica, 2023, 50(1): 27-35. |
[3] | DU Yuling, YANG Fan, ZHAO Juan, LIU Shuqi, LONG Chaoan. Antifungal Mechanisms of Sodium New Houttuyfonate Against Penicillium digitatum [J]. Acta Horticulturae Sinica, 2023, 50(1): 145-152. |
[4] | LI Zhenxi, PAN Ruixuan, XU Meirong, ZHENG Zheng, DENG Xiaoling. Development of Duplex Real-time PCR Assay of‘Candidatus Liberibacter asiatics’ [J]. Acta Horticulturae Sinica, 2023, 50(1): 188-196. |
[5] | FAN Jing, CHEN Qiliang, ZHANG Jingguo, YANG Xiaoping, DU Wei, TIAN Rui, ZHOU Deping, and HU Hongju, . A New Mid-ripening Red Peel Sand Pear Cultivar‘Jintong’ [J]. Acta Horticulturae Sinica, 2022, 49(S2): 11-12. |
[6] | ZHU Kaijie, ZHANG Zhehui, CAO Lixin, XIANG Shunde, YE Junli, XIE Zongzhou, CHAI Lijun, and DENG Xiuxin, . A New Brown Late-ripening Navel Orange Cultivar‘Zongcheng’ [J]. Acta Horticulturae Sinica, 2022, 49(S1): 41-42. |
[7] | ZHU Shiping, WEN Rongzhong, WANG Yuanyuan, and ZENG Yang. A New Very Late Ripening Citrus Variety‘Jinlegan’ [J]. Acta Horticulturae Sinica, 2022, 49(S1): 43-44. |
[8] | WANG Sha, ZHANG Xinhui, ZHAO Yujie, LI Bianbian, ZHAO Xueqing, SHEN Yu, DONG Jianmei, YUAN Zhaohe. Cloning and Functional Analysis of PgMYB111 Related to Anthocyanin Synthesis in Pomegranate [J]. Acta Horticulturae Sinica, 2022, 49(9): 1883-1894. |
[9] | ZHENG Lin, WANG Shuai, LIU Yunuo, DU Meixia, PENG Aihong, HE Yongrui, CHEN Shanchun, ZOU Xiuping. Gene Cloning and Expression Analysis of NAC Gene in Citrus in Response to Huanglongbing [J]. Acta Horticulturae Sinica, 2022, 49(7): 1441-1457. |
[10] | YANG Haijian, ZHANG Yungui, ZHOU Xinzhi. A New Citrus Cultivar‘Yungui Cui Cheng’ [J]. Acta Horticulturae Sinica, 2022, 49(7): 1611-1612. |
[11] | ZHANG Kai, MA Mingying, WANG Ping, LI Yi, JIN Yan, SHENG Ling, DENG Ziniu, MA Xianfeng. Identification of HSP20 Family Genes in Citrus and Their Expression in Pathogen Infection Responses Citrus Canker [J]. Acta Horticulturae Sinica, 2022, 49(6): 1213-1232. |
[12] | LI Wenting, LI Cuixiao, LIN Xiaoqing, ZHENG Yongqin, ZHENG Zheng, DENG Xiaoling. Population Genetic Structure of Xanthomonas citri pv. citri in Guangdong Province Based on the STR Locus [J]. Acta Horticulturae Sinica, 2022, 49(6): 1233-1246. |
[13] | MA Mingying, HAO Chenxing, ZHANG Kai, XIAO Guihua, SU Hanying, WEN Kang, DENG Ziniu, MA Xianfeng. CsSWEET2a Promotes the Infection of Xanthomonas citri subsp. citri [J]. Acta Horticulturae Sinica, 2022, 49(6): 1247-1260. |
[14] | JIA Yamin, XU Hao, HU Wenlang, WANG Yuwen, YE Xin, CHEN Lisong, LI Yan, GUO Jiuxin. Magnesium Deficiency Altered in Iron Absorption,Subcellular Distribution,and Chemical Forms in Citrus Seedlings [J]. Acta Horticulturae Sinica, 2022, 49(5): 973-983. |
[15] | WEI Zhuangmin, WEI Sijia, CHEN Peng, HU Jianbing, TANG Yuqing, YE Junli, LI Xianxin, DENG Xiuxin, CHAI Lijun. Identification of S-genotypes of 63 Pummelo Germplasm Resources [J]. Acta Horticulturae Sinica, 2022, 49(5): 1111-1120. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||
Copyright © 2012 Acta Horticulturae Sinica 京ICP备10030308号-2 国际联网备案号 11010802023439
Tel: 010-82109523 E-Mail: yuanyixuebao@126.com
Support by: Beijing Magtech Co.Ltd