Effect of different Agrobacterium rhizogenes strains on hairy root induction and analysis of metabolites in Physalis peruviana L.

被引:0
作者
Zhong, Yijia [1 ]
Zhou, Zhie [1 ]
Yin, Zhongping [1 ]
Zhang, Lu [2 ]
Zhang, Qingfeng [1 ]
Xie, Yihai [1 ]
Chen, Jiguang [1 ]
机构
[1] Jiangxi Agr Univ, Coll Food Sci & Engn, Jiangxi Key Lab Nat Prod & Funct Food, Nanchang 330045, Peoples R China
[2] Jiangxi Agr Univ, Coll Forestry, Collaborat Innovat Ctr Jiangxi Typ Trees Cultivat, Nanchang 330045, Peoples R China
基金
中国国家自然科学基金;
关键词
Hairy roots; Agrobacterium rhizogenes; Total phenolic contents; Antioxidant capacity; Physalis peruviana L; GENETIC-TRANSFORMATION; ANTIOXIDANT ACTIVITY; PHENOLIC-COMPOUNDS; CULTURES; EFFICIENCY; ESTABLISHMENT; ROLB;
D O I
10.1016/j.jplph.2025.154431
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Physalis peruviana L. (P. peruviana) is an edible medicinal plant rich in bioactive phenolics. This study aimed to establish a hairy root (HR) culture of P. peruviana as a potential source for the synthesis of natural compounds. HRs were induced in P. peruviana using different Agrobacterium rhizogenes strains (R1601, C58C1, A4, and K599). Notably, K599 did not induce HR formation, whereas R1601, C58C1, and A4 yielded transformation frequencies of 57.78, 65.14, and 72.31%, respectively. Secondary metabolite production and antioxidant capacity were further examined in HRs induced using C58C1, R1601, and A4. It was found that A. rhizogenes R1601 induced the greatest increase (44% compared to that observed in the non-transformed culture). The methanolic extract of HRs induced by A. rhizogenes R1601 exhibited strong antioxidant capacity, with IC50 values of 1.41 mg DE/mL and 2.33 mg DE/mL for 2,2-diphenyl-1-picrylhydrazyl and 2,2-azinobis-(3-ethylbenzothiazoline-6-sulfonic acid), respectively. The HR culture showed higher production of phenolic compounds and higher antioxidant capacity than the non-transformed cultures. Ultra-performance liquid chromatography time-of-flight tandem mass spectrometry was used to identify eight alkaloids, phenolics, and glycoside compounds. A. rhizogenes R1601 is emerging as a possible strain for the mass production of HR and bioactive phenolic compounds in P. peruviana.
引用
收藏
页数:11
相关论文
共 64 条
  • [51] Effect of Different Agrobacterium rhizogenes Strains on Hairy Root Induction and Phenylpropanoid Biosynthesis in Tartary Buckwheat (Fagopyrum tataricum Gaertn)
    Thwe, Aye
    Arasu, Mariadhas Valan
    Li, Xiaohua
    Park, Chang Ha
    Kim, Sun Ju
    Al-Dhabi, Naif Abdullah
    Park, Sang Un
    [J]. FRONTIERS IN MICROBIOLOGY, 2016, 7
  • [52] In the interkingdom horizontal gene transfer, the small rolA gene is a big mystery
    Veremeichik, Galina N.
    Bulgakov, Dmitrii V.
    Solomatina, Taisia O.
    Makhazen, Dmitrii S.
    [J]. APPLIED MICROBIOLOGY AND BIOTECHNOLOGY, 2023, 107 (7-8) : 2097 - 2109
  • [53] Differential rubisco content and photosynthetic efficiency of rol gene integrated Vinca minor transgenic plant: Correlating factors associated with morpho-anatomical changes, gene expression and alkaloid productivity
    Verma, Priyanka
    Khan, Shamshad Ahmad
    Masood, Nusrat
    Manika, N.
    Sharma, Abhishek
    Verma, Neha
    Luqman, Suaib
    Mathur, Ajay K.
    [J]. JOURNAL OF PLANT PHYSIOLOGY, 2017, 219 : 12 - 21
  • [54] Comparative Reaction Rates of Various Antioxidants with ABTS Radical Cation
    Walker, Richard B.
    Everette, Jace D.
    [J]. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2009, 57 (04) : 1156 - 1161
  • [55] Genetic transformation of Echinacea purpurea with Agrobacterium rhizogenes and bioactive ingredient analysis in transformed cultures
    Wang, Bochu
    Zhang, Guangqiu
    Zhu, Liancai
    Chen, Lingxi
    Zhang, Yali
    [J]. COLLOIDS AND SURFACES B-BIOINTERFACES, 2006, 53 (01) : 101 - 104
  • [56] Wiwin S.D.Y., 2019, Agric. Rev., V40, P324, DOI [10.18805/ag.R-130, DOI 10.18805/AG.R-130]
  • [57] Supercritical carbon dioxide extract of Physalis peruviana induced cell cycle arrest and apoptosis in human lung cancer H661 cells
    Wu, Shu-Jing
    Chang, Shun-Pang
    Lin, Doung-Liang
    Wang, Shyh-Shyan
    Hou, Fwu-Feuu
    Ng, Lean-Teik
    [J]. FOOD AND CHEMICAL TOXICOLOGY, 2009, 47 (06) : 1132 - 1138
  • [58] Characterization of Polyphenols from Lycium ruthenicum Fruit by UPLC-Q-TOF/MSE and Their Antioxidant Activity in Caco-2 Cells
    Wu, Tao
    Lv, Haiyang
    Wang, Fengzhong
    Wang, Yi
    [J]. JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2016, 64 (11) : 2280 - 2288
  • [59] Studies on the Alkaloids of the Bark of Magnolia officinalis: Isolation and On-line Analysis by HPLC-ESI-MSn
    Yan, Renyi
    Wang, Weihao
    Guo, Jian
    Liu, Hongliang
    Zhang, Jianyong
    Yang, Bin
    [J]. MOLECULES, 2013, 18 (07) : 7739 - 7750
  • [60] Hairy root induction and polysaccharide production of medicinal plant Callerya speciosa Champ.
    Yao, Shao-chang
    Bai, Long-hua
    Lan, Zu-zai
    Tang, Mei-qiong
    Zhai, Yong-jin
    Huang, Hao
    Wei, Rong-chang
    [J]. PLANT CELL TISSUE AND ORGAN CULTURE, 2016, 126 (01) : 177 - 186