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Recombinant-protein production in plants is a more effective system than the mammalian cell system because it can be more easily scaled up, has a low production cost, and is animal pathogen free. In this study, we established a brazzein production system using an air-lift bioreactor and transgenic carrot cells. The system included the introduction of the brazzein gene by Agrobacterium-mediated transformation. First, transgenic carrot callus (TC12) was cultured in a liquid medium. The brazzein content was analyzed during entire culture period. Next, the bioreactor type, volume, and culture period were compared to establish a bioreactor culture system. In addition, abscisic acid (ABA) was treated as an elicitor to increase brazzein bio- synthesis. During the suspension culture, cell proliferation increased rapidly beginning at day 12. At that time, total soluble protein (TSP) and brazzein were 9.0 mg·g FW−1 and 1.2 mg·g FW−1, respectively. Brazzein content was 0.5 µg·g FW−1 (TSP 5.3 mg·g FW−1) in the balloon bioreactor. Cone and column bioreactors produced 1.1 µg·g FW−1 (TSP 5.7 mg·g FW−1) and 1.2 µg·g FW−1 (TSP 7.8 mg·g FW−1), respectively. The cone bioreactor was the most suitable for brazzein cell proliferation (6.1 g brazzein per bioreactor). After 8 h of 50 μM ABA treatment, the brazzein content had increased by 3.3-fold compared to that in the non-treated bioreactor. Overall, the results show that brazzein can be produced from carrot cell culture and an air-lift bioreactor system can be used for industrial mass production.

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권호기사 목록 테이블로 기사명, 저자명, 페이지, 원문, 기사목차 순으로 되어있습니다.
기사명 저자명 페이지 원문 목차
Brazzein protein production in transgenic carrot cells using air-lift bioreactor culture Jong-Eun Han, Hyoshin Lee, Thanh-Tam Ho, So-Young Park p. 161-171
(The) effect of gamma-irradiation on the changes of photosynthetic efficiency in Kanpei (Citrus unshiu × C. sinensis) Seong Heo, Jung Min Choi, Anh Tuan Le, Chang-Ho Eun, In-Jung Kim, Yong Suk Chung p. 251-255
Establishment of bioreactor cultures for the production of chlorogenic acid and ferulic acid from adventitious roots by optimization of culture conditions in Angelica acutiloba (Siebold & Zucc.) Kitag Ho-Dong Hwang, Jong-Eun Han, Hosakatte Niranjana Murthy, Hyuk Joon Kwon, Gun-Myung Lee, Jae-Hyuk Shin, So-Young Park p. 173-182
Co-ordinated responses to endogenous and environmental triggers allow a well-timed floral transition in plants Chetan Kaur, Yong Pyo Lim, Geung-Joo Lee p. 145-159
Epigenetic repression and resetting of a floral repressor, FLC, in the life cycle of winter-annual Arabidopsis Dong-Hwan Kim p. 133-143
Image analysis as a potential tool for marker-assisted selection Yun Seok Kim, Yong Suk Chung, Seong Heo p. 243-249
Simple methods for selection of T-DNA-free segregants from offspring of gene-edited Solanum nigrum Min Ji Kim, Hong Kwan Beak, Ji Eun Choi, Eun Song Lee, Keunhwa Kim, Chul Min Kim, Soon Ju Park p. 257-264
Differential expression of ginsenoside biosynthesis-related genes at an early developmental stage of Panax vietnamensis Ly H. Luu, Hang L.B. Pham, Hue T.T. Huynh, Linh N. Nguyen, Trinh T. Vu, Hien T.T. Le p. 215-228
(The) genetic engineering of glycine betaine synthesis in tobacco improves the resistance of the photosynthetic apparatus to drought stress Gui-Ping Wang, Xiao-Min Xue, Xing-hong Yang, Ru Chen, Xue-Ping Han p. 229-242
Abscisic acid synthesis and root water uptake contribute to exogenous methyl jasmonate-induced improved tomato drought resistance Jiakun Yan, Haipeng Li, Yu Li, Nan Zhang, Suiqi Zhang p. 183-193
Peroxidase gene markers revealed genetic diversity and population structure in okra germplasm Mehtap Yildiz, Mehmet Alp Furan, Metin Koçak, Gökhan Sadık, Cansu Kuzğun, Mahdi Al-Khafaji, Noor Maiwan Bahjat p. 195-204
Insights into the evolutionary origin and expansion of the BBX gene family Liyang Yu, Zhongrui Lyu, Hong Liu, Guoyun Zhang, Caiyun He, Jianguo Zhang p. 205-214

참고문헌 (45건) : 자료제공( 네이버학술정보 )

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번호 참고문헌 국회도서관 소장유무
1 Adil M, Jeong BR (2018) In vitro cultivation of Panax ginseng C.A. Meyer. Ind Crop Prod 122:239–251. https:// doi. org/ 10. 1016/j.indcr op. 2018. 05. 076 미소장
2 Assadi-Porter FM, Aceti DJ, Markley JL (2000) Sweetness determinant sites of brazzein, a small, heat-stable, sweet-tasting protein. Arch Biochem Biophys 376:259–265. https:// doi. org/ 10. 1006/abbi. 2000. 1726 미소장
3 Baek D, Jin Y, Jeong JC, Lee HJ, Moon H, Lee J, Shin D, Kang CH, Kim DH, Nam J, Lee SY, Yun DJ (2008) Suppression of reactive oxygen species by glyceraldehyde-3-phosphate dehydrogenase. Phytochemistry 69:333–338. https:// doi. org/ 10. 1016/j. phyto chem.2007. 07. 027 미소장
4 Berlec A, Jevnikar Z, Majhenič AČ, Rogelj I, Štrukelj B (2006) Expression of the sweet-tasting plant protein brazzein in Escherichia coli and Lactococcus lactis: a path toward sweet lactic acid bacteria. Appl Microbiol Biot 73:158–165. https:// doi. org/ 10. 1007/s00253- 006- 0438-y 미소장
5 Bradford MM (1976) A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 72:248–254. https:// doi. org/ 10. 1016/ 0003- 2697(76) 90527-3 미소장
6 Chattopadhyay S, Raychaudhuri U, Chakraborty R (2014) Artificial sweeteners – a review. J Food Sci Technol 51:611–621. https://doi. org/ 10. 1007/ s13197- 011- 0571-1 미소장
7 Choi SM, Son HH, Yun RS, Kwon WO, Seon JH, Paek KY (2000) Pilot-scale culture of adventitious roots of ginseng in a bioreactor system. Plant Cell Tiss Organ Cult 62:187–193. https:// doi. org/10. 1023/a: 10064 12203 197 미소장
8 Chou CP (2007) Engineering cell physiology to enhance recombinant protein production in Escherichia coli. Appl Microbiol Biot 76:521–532. https:// doi. org/ 10. 1007/ s00253- 007- 1039-0 미소장
9 Eibl R, Eibl D (2008) Design of bioreactors suitable for plant cell and tissue cultures. Phytochem Rev 7:593–598. https:// doi. org/10. 1007/ s11101- 007- 9083-z 미소장
10 Eltayeb AE, Kawano N, Badawi GH, Kaminaka H, Sanekata T, Shibahara T, Inanaga S, Tanaka K (2007) Overexpression of monodehydroascorbate reductase in transgenic tobacco confers enhanced tolerance to ozone, salt and polyethylene glycol stresses. Planta 225:1255–1264. https:// doi. org/ 10. 1007/ s00425- 006- 0417-7 미소장
11 Habibi P, Prado GS, Pelegrini PB, Hefferon KL, Soccol CR, Grosside-Sa MF (2017) Optimization of inside and outside factors to improve recombinant protein yield in plant. Plant Cell Tiss Organ Cult 130:449–467. https:// doi. org/ 10. 1007/ s11240- 017- 1240-5 미소장
12 Han JE, Park YJ, Lee H, Jeong YJ, Park SY (2020) Increased brazzein expression by abiotic stress and bioreactor culture system for the production of sweet protein, brazzein. Plant Biotech Rep 14:459–466. https:// doi. org/ 10. 1007/ s11816- 020- 00625-6 미소장
13 Henry E, Fung N, Liu J, Drakakaki G, Coaker G (2015) Beyond glycolysis: GAPDHs are multi-functional enzymes involved in regulation of ROS, autophagy, and plant immune responses. PLoS Genet 11:e1005199. https:// doi. org/ 10. 1371/ journ al. pgen. 10051 99 미소장
14 Huang TK, McDonald KA (2012) Bioreactor systems for in vitro production of foreign proteins using plant cell cultures. Biotechnol Adv 30:398–409. https:// doi. org/ 10. 1016/j. biote chadv. 2011. 07.016 미소장
15 Jelenska J, Kang Y, Greenberg JT (2014) Plant pathogenic bacteria target the actin microfilament network involved in the trafficking of disease defense components. BioArchitecture 4:149–153. https://doi. org/ 10. 4161/ 19490 992. 2014. 980662 미소장
16 Joseph JA, Akkermans S, Nimmegeers P, Van Impe JF (2019) Bioproduction of the recombinant sweet protein thaumatin: current state of the art and perspectives. Front Microbiol 10:695. https:// doi.org/ 10. 3389/ fmicb. 2019. 00695 미소장
17 Jung YJ, Kang KK (2018) Stable expression and characterization of brazzein, thaumatin and miraculin genes related to sweet protein in transgenic lettuce. J Plant Biotechnol 45:257–265. https:// doi.org/ 10. 5010/ jpb. 2018. 45.3. 257 미소장
18 Karimzadegan V, Javaran VJ, Bakhsh MS, Javaran MJ (2019) The Effect of methyl jasmonate and temperature on the transient expression of recombinant proteins in Cucurbita pepo L. Mol Biotechnol 61:84–92. https:// doi. org/ 10. 1007/s12033- 018- 0138-8 미소장
19 Kim MY, Yang MS, Kim TG (2012) Expression of a consensus dengue virus envelope protein domain III in transgenic callus of rice. Plant Cell Tiss Organ Cult 109:509–515. https:// doi. org/ 10. 1007/s11240- 012- 0116-y 미소장
20 Kim KY, Kwon SY, Lee HS, Hur Y, Bang JW, Kwak SS (2003) A novel oxidative stress-inducible peroxidase promoter from sweetpotato: molecular cloning and characterization in transgenic tobacco plants and cultured cells. Plant Mol Biol 51:831–838. https:// doi.org/ 10. 1023/A: 10230 45218 815 미소장
21 Kitamura S, Morisseau C, Inceoglu B, Kamita SG, De Nicola GR, Nyegue M, Hammock BD (2015) Potent natural soluble epoxide hydrolase inhibitors from Pentadiplandra brazzeana Baillon: synthesis, quantification, and measurement of biological activities in vitro and in vivo. PLoS ONE 10:e0117438. https:// doi. org/ 10.1371/ journ al. pone. 01174 38 미소장
22 Lamphear BJ, Barker DK, Brooks CA, Delaney DE, Lane JR, Beifuss K, Love R, Thompson K, Mayor J, Clough R, Harkey R, Poage M, Drees C, Horn ME, Streatfield SJ, Nikolov Z, Woodard SL, Hood EE, Jilka JM, Howard JA (2005) Expression of the sweet protein brazzein in maize for production of a new commercial sweetener. Plant Biotechnol J 3:103–114. https:// doi. org/ 10. 1111/j. 1467-7652. 2004. 00105.x 미소장
23 Lee SH, Ahsan N, Lee KW, Kim DH, Lee DG, Kwak SS, Kwon SY, Kim TH, Lee BH (2007) Simultaneous overexpression of both CuZn superoxide dismutase and ascorbate peroxidase in transgenic tall fescue plants confers increased tolerance to a wide range of abiotic stresses. J Plant Physiol 164:1626–1638. https:// doi. org/10. 1016/j. jplph. 2007. 01. 003 미소장
24 Lee YR, Akter S, Lee IH, Jung YJ, Park SY, Cho YG, Kang KK, Jung YJ (2018) Stable expression of brazzein protein, a new type of alternative sweetener in transgenic rice. J Plant Biotech 45:63–70. https:// doi. org/ 10. 5010/ jpb. 2018. 45.1. 063 미소장
25 Massa S, Paolini F, Marino C, Franconi R, Venuti A (2019) Bioproduction of a therapeutic vaccine against human papillomavirus in tomato hairy root cultures. Front Plant Sci 10:452. https:// doi. org/10. 3389/ fpls. 2019. 00452 미소장
26 Ming D, Hellekant G (1994) Brazzein, a new high-potency thermostable sweet protein from Pentadiplandra brazzeana B. FEBS Letter 355:106–108. https:// doi. org/ 10. 1016/ 0014- 5793(94) 01184-2 미소장
27 Mooradian AD, Smith M, Tokuda M (2017) The role of artificial and natural sweeteners in reducing the consumption of table sugar: a narrative review. Clin Nutr ESPEN 18:1–8. https:// doi. org/ 10.1016/j. clnesp. 2017. 01. 004 미소장
28 Neiers F, Naumer C, Krohn M, Briand L (2016) The recent development of a sweet-tasting brazzein and its potential industrial applications. Sweeteners. Springer, Berlin Heidelberg, pp 1–20. https:// doi. org/ 10. 1007/ 978-3- 319- 26478-3_ 2-1 미소장
29 Nölke G, Fischer R, Schillberg S (2003) Production of therapeutic antibodies in plants. Expert Opin Biol Ther 3:1153–1162. https://doi. org/ 10. 1517/ 14712 598.3. 7. 1153 미소장
30 Oakley BR, Kirsch DR, Morris NR (1980) A simplified ultrasensitive silver stain for detecting proteins in polyacrylamide gels. Anal Biochem 105:361–363. https:// doi. org/ 10. 1016/ 0003- 2697(80) 90470-4 미소장
31 Poirier N, Roudnitzky N, Brockhoff A, Belloir C, Maison M, Thomas-Danguin T, Meyerhof W, Briand L (2012) Efficient production and characterization of the sweet-tasting brazzein secreted by the yeast Pichia pastoris. J Agr Food Chem 60:9807–9814. https://doi. org/ 10. 1021/ jf301 600m 미소장
32 Rage E, Marusic C, Lico C, Baschieri S, Donini M (2020) Current state-of-the-art in the use of plants for the production of recombinant vaccines against infectious bursal disease virus. Appl Microbiol Biot 104:2287–2296. https:// doi. org/ 10. 1007/s00253- 020- 10397-2 미소장
33 Raven N, Rasche S, Kuehn C, Anderlei T, Klockner W, Schuster F, Henquet M, Bosch D, Buchs J, Fischer R, Schillberg S (2015) Scaled-up manufacturing of recombinant antibodies produced by plant cells in a 200-L orbitally-shaken disposable bioreactor. Biotechnol Bioeng 112:308–321. https:// doi. org/ 10. 1002/ bit. 25352 미소장
34 Rogers SO, Bendich AJ (1985) Extraction of DNA from milligram amounts of fresh herbarium and mummified plant tissues. Plant Mol Biol 5:69–76. https:// doi. org/ 10. 1007/ BF000 20088 미소장
35 Russell C, Grimes C, Baker P, Sievert K, Lawrence MA (2020) The drivers, trends and dietary impacts of non-nutritive sweeteners in the food supply: a narrative review. Nutr Res Rev. https:// doi. org/10. 1017/ s0954 42242 00002 68 미소장
36 Saxena I, Srikanth S, Chen Z (2016) Cross talk between H2O2 and interacting signal molecules under plant stress response. Front Plant Sci 7:570. https:// doi. org/ 10. 3389/ fpls. 2016. 00570 미소장
37 Schillberg S, Raven N, Spiegel H, Rasche S, Buntru M (2019) Critical analysis of the commercial potential of plants for the production of recombinant proteins. Front Plant Sci 10:720. https:// doi. org/10. 3389/ fpls. 2019. 00720 미소장
38 Twyman RM, Schillberg S, Fischer R (2013) Optimizing the yield of recombinant pharmaceutical proteins in plants. Curr Pharm Des 19:5486–5494. https:// doi. org/ 10. 2174/ 13816 12811 31931 0004 미소장
39 Terrier B, Courtois D, Hénault N, Cuvier A, Bastin M, Aknin A, Dubreuil J, Pétiard V (2007) Two new disposable bioreactors for plant cell culture: the wave and undertow bioreactor and the slug bubble bioreactor. Biotechnol Bioeng 96:914–923. https:// doi. org/10. 1002/ bit. 21187 미소장
40 Toews I, Lohner S, Küllenberg DG, Sommer H, Meerpohl JJ (2019) Association between intake of non-sugar sweeteners and health outcomes: systematic review and meta-analyses of randomized and non-randomized controlled trials and observational studies. BMJ 364:k4718. https:// doi. org/ 10. 1136/ bmj. k4718 미소장
41 Wang DM, Zhu JB, Peng M, Zhou P (2008) Induction of a protective antibody response to FMDV in mice following oral immunization with transgenic Stylosanthes spp. as a feedstuff additive. Transgenic Res 17:1163–1170. https:// doi. org/ 10. 1007/s11248- 008- 9188-1 미소장
42 Wolfson W (2013) Grow your own: Protalix BioTherapeutics produces drugs in carrot cells. Chem Biol 20:969–970. https:// doi. org/ 10.1016/j. chemb iol. 2013. 08. 003 미소장
43 Yan S, Song H, Pang D, Zou Q, Li L, Yan Q, Fan N, Zhao X, Yu H, Li Z (2013) Expression of plant sweet protein brazzein in the milk of transgenic mice. PLoS ONE 8:e76769. https:// doi. org/ 10. 1371/journ al. pone. 00767 69 미소장
44 Yun CR, Kong JN, Chung JH, Kim MC, Kong KH (2016) Improved secretory production of the sweet-tasting protein, brazzein, in Kluyveromyces lactis. J Agr Resour Chem 64:6312–6316. https://doi. org/ 10. 1021/ acs. jafc. 6b024 46 미소장
45 Zhang JY, Huang SN, Wang G, Xuan JP, Guo ZR (2016) Overexpression of Actinidia deliciosa pyruvate decarboxylase 1 gene enhances waterlogging stress in transgenic Arabidopsis thaliana. Plant Physiol Biochem 106:244–252. https:// doi. org/ 10. 1016/j.plaphy. 2016. 05. 009 미소장