Micropropagation of Lang Bian ginseng: an endemic medicinal plant

Micropropagation of Lang Bian ginseng (Panax vietnamensis var. langbianensis), an endemic medicinal plant, via somatic embryogenesis (SE) and rhizome formation were investigated. Rhizome explants disinfected with 0.15% AgNPs for 30 min resulted in the most effective surface disinfection (contamina...

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Những tác giả chính: Truong, Thi Lan Anh, Doan, Manh Dung, Hoang, Thanh Tung, Hoang, Dac Khai, Nguyen, Thi Nhu Mai, Vu, Quoc Luan, Do, Manh Cuong, Hoàng, Thị Như Phương, Le, Thi Diem, Nguyen, Quang Vinh, Bui, Van The Vinh, Nguyen, Phuong Thao, Duong, Tan Nhut
Định dạng: Journal article
Ngôn ngữ:English
Được phát hành: Springer Netherlands 2023
Truy cập trực tuyến:https://scholar.dlu.edu.vn/handle/123456789/3172
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institution Thư viện Trường Đại học Đà Lạt
collection Thư viện số
language English
description Micropropagation of Lang Bian ginseng (Panax vietnamensis var. langbianensis), an endemic medicinal plant, via somatic embryogenesis (SE) and rhizome formation were investigated. Rhizome explants disinfected with 0.15% AgNPs for 30 min resulted in the most effective surface disinfection (contamination, necrosis and survival with callus induction of 36.00%, 14.70% and 49.30%, respectively). Moreover, shoot regeneration (45.33%) and the number of shoots (5.2 shoots) from 0.15% AgNPs disinfected- rhizome were significantly higher than those in others after 12 weeks of culture. The leaf was cut transverse thin cell layer (L-tTCL: 1 mm × 5 mm) and petiole cut longitudinally TCL (P-lTCL: 0.5 mm × 10 mm). L-tTCL explant cultured on MS medium supplemented with 7 mg/L NAA gave 100% SE and 32.80 embryos; meanwhile, P-lTCL explants also obtained 100% SE and 51.80 embryos in 1 mg/L 2,4-D treatment. Adventitious root formation and callus induction were also observed in the auxin-supplemented treatments. In addition, 12-week-old secondary somatic embryos, mainly cotyledonary stage, were obtained from the primary somatic embryo cultured on 1/2 MS medium supplemented with 1 mg/L 2,4-D. Plantlets derived from secondary embryos grew well with 63.34% rhizome formation, 1.27 cm in rhizome length and 0.65 cm in rhizome diameter. Meanwhile, plantlets derived from adventitious shoots only induced adventitious roots and callogenesis after 20 weeks of culture. The analysis of saponins by HPLC method showed that twenty-week-old in vitro rhizomes had Rg1, Rd and Rb1.
format Journal article
author Truong, Thi Lan Anh
Doan, Manh Dung
Hoang, Thanh Tung
Hoang, Dac Khai
Nguyen, Thi Nhu Mai
Vu, Quoc Luan
Do, Manh Cuong
Hoàng, Thị Như Phương
Le, Thi Diem
Nguyen, Quang Vinh
Bui, Van The Vinh
Nguyen, Phuong Thao
Duong, Tan Nhut
spellingShingle Truong, Thi Lan Anh
Doan, Manh Dung
Hoang, Thanh Tung
Hoang, Dac Khai
Nguyen, Thi Nhu Mai
Vu, Quoc Luan
Do, Manh Cuong
Hoàng, Thị Như Phương
Le, Thi Diem
Nguyen, Quang Vinh
Bui, Van The Vinh
Nguyen, Phuong Thao
Duong, Tan Nhut
Micropropagation of Lang Bian ginseng: an endemic medicinal plant
author_facet Truong, Thi Lan Anh
Doan, Manh Dung
Hoang, Thanh Tung
Hoang, Dac Khai
Nguyen, Thi Nhu Mai
Vu, Quoc Luan
Do, Manh Cuong
Hoàng, Thị Như Phương
Le, Thi Diem
Nguyen, Quang Vinh
Bui, Van The Vinh
Nguyen, Phuong Thao
Duong, Tan Nhut
author_sort Truong, Thi Lan Anh
title Micropropagation of Lang Bian ginseng: an endemic medicinal plant
title_short Micropropagation of Lang Bian ginseng: an endemic medicinal plant
title_full Micropropagation of Lang Bian ginseng: an endemic medicinal plant
title_fullStr Micropropagation of Lang Bian ginseng: an endemic medicinal plant
title_full_unstemmed Micropropagation of Lang Bian ginseng: an endemic medicinal plant
title_sort micropropagation of lang bian ginseng: an endemic medicinal plant
publisher Springer Netherlands
publishDate 2023
url https://scholar.dlu.edu.vn/handle/123456789/3172
_version_ 1783866428723560448
spelling oai:scholar.dlu.edu.vn:123456789-31722023-11-15T08:47:01Z Micropropagation of Lang Bian ginseng: an endemic medicinal plant Truong, Thi Lan Anh Doan, Manh Dung Hoang, Thanh Tung Hoang, Dac Khai Nguyen, Thi Nhu Mai Vu, Quoc Luan Do, Manh Cuong Hoàng, Thị Như Phương Le, Thi Diem Nguyen, Quang Vinh Bui, Van The Vinh Nguyen, Phuong Thao Duong, Tan Nhut Micropropagation of Lang Bian ginseng (Panax vietnamensis var. langbianensis), an endemic medicinal plant, via somatic embryogenesis (SE) and rhizome formation were investigated. Rhizome explants disinfected with 0.15% AgNPs for 30 min resulted in the most effective surface disinfection (contamination, necrosis and survival with callus induction of 36.00%, 14.70% and 49.30%, respectively). Moreover, shoot regeneration (45.33%) and the number of shoots (5.2 shoots) from 0.15% AgNPs disinfected- rhizome were significantly higher than those in others after 12 weeks of culture. The leaf was cut transverse thin cell layer (L-tTCL: 1 mm × 5 mm) and petiole cut longitudinally TCL (P-lTCL: 0.5 mm × 10 mm). L-tTCL explant cultured on MS medium supplemented with 7 mg/L NAA gave 100% SE and 32.80 embryos; meanwhile, P-lTCL explants also obtained 100% SE and 51.80 embryos in 1 mg/L 2,4-D treatment. Adventitious root formation and callus induction were also observed in the auxin-supplemented treatments. In addition, 12-week-old secondary somatic embryos, mainly cotyledonary stage, were obtained from the primary somatic embryo cultured on 1/2 MS medium supplemented with 1 mg/L 2,4-D. Plantlets derived from secondary embryos grew well with 63.34% rhizome formation, 1.27 cm in rhizome length and 0.65 cm in rhizome diameter. Meanwhile, plantlets derived from adventitious shoots only induced adventitious roots and callogenesis after 20 weeks of culture. The analysis of saponins by HPLC method showed that twenty-week-old in vitro rhizomes had Rg1, Rd and Rb1. 151 3 565-578 2023-11-15T08:46:55Z 2023-11-15T08:46:55Z 2022-12 Journal article Bài báo đăng trên tạp chí thuộc ISI, bao gồm book chapter https://scholar.dlu.edu.vn/handle/123456789/3172 10.1007/s11240-022-02372-8 en Plant Cell, Tissue and Organ Culture (PCTOC) 1573-5044 Abdolinejad R, Shekafandeh A, Jowkar A, Gharaghani A, Alemzadeh A (2020) Indirect regeneration of Ficus carica by the TCL technique and genetic fidelity evaluation of the regenerated plants using flow cytometry and ISSR. Plant Cell Tissue Organ Cult 143(1):131–144. https:// doi. org/ 10. 1007/ s11240- 020- 01903-5 Ahn IO, Van Le B, Gendy C, Van Tran Than K (1996) Direct somatic embryogenesis through thin cell layer culture in Panax ginseng. Plant Cell Tissue Organ Cult 45(3):237–243. https:// doi. org/ 10. 1007/ BF000 43636 Burkhart EP, Nilson SE, Pugh CV, Zuiderveen GH (2021) Neither wild nor cultivated: American Ginseng (Panax quinquefolius L.) Seller surveys provide insights into in situ planting and husbandry. Econ Bot 75(2): 126–143. https:// doi. org/ 10. 1007/ s12231- 021- 09521-8 Chau NH, Le B, Ngo Q, Dung TTN, Ha HT, Quang DV (2008) Some results in manufacturing of nanosilver and investigation of its application for disinfection. Adv Nat Sci 9:241–248 Chen Guang Z, Jing Li Y, Li Kun L, Cheng Nan L, De An X, Cheng Hao L (2011) Research progress in somatic embryogenesis of Siberian ginseng (Eleutherococcus senticosus Maxim.). J Med Plant Res 5(33):7140–7145. https:// doi. org/ 10. 5897/ JMPRx 11. 017 Choi K (1988) Panax ginseng CA Meyer: micropropagation and the in vitro production of saponins. J Med Aromat Plants I. https:// doi. org/ 10. 1007/ 978-3- 642- 73026-9_ 26 Cristian NMP, Anne KTHE (2021) A novel genotype-independent technique for successful induction of somatic embryogenesis of adult plants of Jatropha curcas L using petiole transverse Thin Cell Layer (TCL). Afr J Biotechnol 20(2):85–91. https:// doi. org/ 10. 5897/ AJB20 20. 17232 Cuong DM, Du PC, Tung HT, Ngan HTM, Luan VQ, Phong TH, Khai HD, Phuong TTB, Nhut DT (2021) Silver nanoparticles as an effective stimulant in micropropagation of Panax vietnamensis— a valuable medicinal plant. Plant Cell Tissue Organ Cult 146(3):577–588. https:// doi. org/ 10. 1007/ s11240- 021- 02095-2 de Sousa PCA, Silva ESSS, Nogueira GF, de Araujo Silva-Cardoso IM, Scherwinski-Pereira JE (2022) Indirect somatic embryogenesis of Piper hispidinervum L. and evaluation of the regenerated plants by flow cytometry. J Genet Eng Biotechnol 20(1):40. https:// doi. org/ 10. 1186/ s43141- 022- 00323-6 Duncan DB (1955) Multiple range and multiple F tests. Biometrics 11(1):1–42. https:// doi. org/ 10. 2307/ 30014 78 Duy NV, Trieu LN, Chinh ND, Tran VT (2016) A new variety of Panax (Araliaceae) from Lam Vien Plateau, Vietnam and its molecular evidence. Phytotaxa 277(1): 47. https:// doi. org/ 10. 11646/ phyto taxa. 277.1.4 Fadel D, Kintzios S, Economou AS, Moschopoulou G, Constantinidou H-IA (2010) Effect of different strength of medium on organogenesis, phenolic accumulation and antioxidant activity of spearmint (Mentha spicata L.). Open Hort J. https:// doi. org/ 10. 2174/ 18748 40601 00301 0031 Gamborg OL, Miller RA, Ojima K (1968) Nutrient requirements of suspension cultures of soybean root cells. Exp Cell Res 50(1):151–158. https:// doi. org/ 10. 1016/ 0014- 4827(68) 90403-5 Gui FJ, Yang XW, Li LY, Tian JM (2007) Simultaneous enantiomer determination of 20 (R)-and 20 (S)-ginsenoside-Rg2 in rat plasma after intravenous administration using HPLC method. J Chromatogr B 850(1–2):1–6. https:// doi. org/ 10. 1016/j. jchro mb. 2006. 11. 008 Guillou C, Fillodeau A, Brulard E, Breton D, De Faria MS, Verdier D, Simon M, Ducos J-P (2018) Indirect somatic embryogenesis of Theobroma cacao L. in liquid medium and improvement of embryo-to-plantlet conversion rate. In Vitro Cell Dev Biol Plant 54(4):377–391. https:// doi. org/ 10. 1007/ s11627- 018- 9909-y Hanh NTM, Tung HT, Khai HD, Cuong DM, Luan VQ, Mai NTN, Anh TTL, Le BV, Nhut DT (2022) Efficient somatic embryogenesis and regeneration from leaf main vein and petiole of Actinidia chinensis Planch. via thin cell layer culture technology. Sci Hortic 298:110986. https:// doi. org/ 10. 1016/j. scien ta. 2022. 110986 Hao YJ, An XL, Sun HD, Piao XC, Gao R, Lian ML (2020) Ginsenoside synthesis of adventitious roots in Panax ginseng is promoted by fungal suspension homogenate of Alternaria panax and regulated by several signaling molecules. Ind Crops Prod 150:112414. https:// doi. org/ 10. 1016/j. indcr op. 2020. 112414 Hien VT, Luan VQ, Huy NP, Nam NB, Vinh BVT, Du TX, Nhut DT (2014) Direct somatic embryogenesis from leaf, petiole and rhizome explant of Panax vietnamensis Ha et Grushv. Academia J Biol 36: 277–282. https:// doi. org/ 10. 15625/ 0866- 7160/ v36n1 se. 4408 Hien VT, Huy NP, Chien HX, Tung HT, Nam NB, Luan VQ, Nhut DT (2016) Somatic embryogenesis from leaf transverse thin cell layer derived-callus of Vietnamese ginseng (Panax vietnamensis Ha et Grushv.). Vietnam J Biotechnol 14(1): 63–73. https:// doi. org/ 10. 15625/ 1811- 4989/ 14/1/ 9294 Hieu T, Phong TH, Khai HD, Mai NTN, Cuong DM, Luan VQ, Tung HT, Nam NB, Tan Nhut D (2022) Efficient production of vigorous passion fruit rootstock for in vitro grafting. Plant Cell Tissue Organ Cult 148(3):635–648. https:// doi. org/ 10. 1007/ s11240- 021- 02220-1 Kim YJ, Lee OR, Kim KT, Yang DC (2012) High frequency of plant regeneration through cyclic secondary somatic embryogenesis in Panax ginseng. J Ginseng Res 36(4):442–448. https:// doi. org/ 10. 5142/ jgr. 2012. 36.4. 442 Kim YJ, Zhang D, Yang DC (2015) Biosynthesis and biotechnological production of ginsenosides. Biotechnol Adv 33(6):717–735. https:// doi. org/ 10. 1016/j. biote chadv. 2015. 03. 001 Kim DH, Gopal J, Sivanesan I (2017) Nanomaterials in plant tissue culture: the disclosed and undisclosed. RSC Adv 7:36492–36505. https:// doi. org/ 10. 1039/ C7RA0 7025J Kim JY, Adhikari PB, Ahn CH, Kim DH, Kim YC, Han JY, Kondeti S, Choi YE (2019) High frequency somatic embryogenesis and plant regeneration of interspecific ginseng hybrid between Panax ginseng and Panax quinquefolius. J Ginseng Res 43:38–48. https:// doi. org/ 10. 1016/j. jgr. 2017. 08. 002 Springer Netherlands