Journal of Radiation Research and Radiation Processing, Volume. 43, Issue 1, 010404(2025)

Mutagenic effects of 60Co-γ-ray irradiation on the spikes of four Lyciumspecies

Jiadong WANG1,2, Kai FENG1,2, Songbo YANG1,2, Bo ZHANG3, Linyuan DUAN3, Dandan ZHANG4, Zicheng ZHANG4, and Xiang LI1,2、*
Author Affiliations
  • 1College of Forestry and Grassland, Ningxia University, Yinchuan 750021, China
  • 2National Key Laboratory of Efficient Production of Forest Tree Resources, Yinchuan 750021, China
  • 3Research Institute of Lycium Science, Ningxia Academy of Agriculture and Forestry, Yinchuan 750002, China
  • 4Heilongjiang Research Institute of Atomic Energy, Harbin 150081, China
  • show less
    References(31)

    [1] G P Gong, Q Liu, Y N Deng et al. Arabinogalactan derived from Lycium barbarum fruit inhibits cancer cell growth via cell cycle arrest and apoptosis. International Journal of Biological Macromolecules, 149, 639-650(2020).

    [2] Guanjie LI, Qiaowei MIAO. Progress of research on extraction, bioactivity and application of polysaccharides of Lycium barbarum in beverages. Beverage Industry, 27, 76-79(2024).

    [3] J J Liang, S Yang, Y Y Liu et al. Characterization and stability assessment of polyphenols bound to Lycium barbarum polysaccharide: insights from gastrointestinal digestion and colon fermentation. Food Research International, 179, 114036(2024).

    [4] M Jeszka-Skowron, A Zgoła-Grześkowiak, E Stanisz et al. Potential health benefits and quality of dried fruits: Goji fruits, cranberries and raisins. Food Chemistry, 221, 228-236(2017).

    [5] T Y Xin, H Yao, H H Gao et al. Super food Lycium barbarum (Solanaceae) traceability via an internal transcribed spacer 2 barcode. Food Research International, 54, 1699-1704(2013).

    [6] Xiang CHENG, Xianxi LI, Guilin MEI et al. Classification of different producing areas of Lycium barbarum based on appearance traits and index components. Journal of Liaoning University of Traditional Chinese Medicine, 26, 27-31(2024).

    [7] Ling QU, Wei AN, Yanlong LI et al. Study on the influencing factors of hydroponic rooting of different germplasm cuttings of lycium. Journal of Anhui Agricultural Sciences, 51, 128-132(2023).

    [8] Menglin LIU, Ping ZHANG, Shenghai YE et al. Advances in radiation mutagenesis to create new rice germplasms and establishment of zhejing 99 mutant library. Journal of Plant Genetic Resources, 22, 16-27(2021).

    [9] Chi WANG, Wei HUANG, Ling GONG et al. Genetic identification and variety characteristics in early maturing Bingtang sweet orange mutant obtained by radiation mutagenesis. Journal of Nuclear Agricultural Sciences, 37, 2117-2125(2023).

    [10] Dongqin PENG, Luxiang LIU, Huijun GUO et al. Research progress on radiation breeding of Chinese medicinal materials. Chinese Traditional and Herbal Drugs, 54, 4367-4376(2023).

    [11] Zhihua CAO, Zhongneng WU, Feng WANG et al. Comprehensive evaluation of growth characteristics of superior Phyllostachys pubescens seedlings with radiation-treated mutagenesis. Journal of Central South University of Forestry & Technology, 39, 34-40, 58(2019).

    [12] Jiao ZHU, Lin ZHOU. Effects of different 60Co-γ absorbed doses on the growth and flowering of moonflower Wonderland, Beijing Red and Golden Phoenix. Journal of Nuclear Agriculture, 38, 11-17(2024).

    [13] Xiulian YANG, Yingting ZHANG, Ling HE et al. Mutagenic effects of 60Co-γ ray irradiation on Clerodendrum trichotomum. Journal of Central South University of Forestry & Technology, 39, 10-15(2019).

    [14] Ruimin NIU, Zehua XU, Xiaojing HUANG et al. Effects of rootstocks on growth and fruit quality of 'Cabernet Sauvignon' grape. Journal of Northwest Forestry University, 35, 124-129(2020).

    [15] Junfeng GAO. Laboratory instruction of plant physiology, 76(2006).

    [16] Zongwen ZHU, Shoubo TIAN, Xuedong YANG et al. Effects of electron beam on seed germination and physiological and biochemical properties of tomato seedling. Journal of Nuclear Agricultural Sciences, 34, 691-697(2020).

    [17] Xiwen ZHOU, Liqun MA, Hongliang ZHU. Transcriptome sequencing-based analysis of the effect of silencing the RNA-binding protein gene SlRBP1 on photosynthesis in tomato. Journal of Bioengineering, 40, 150-162(2024).

    [18] Fuqi YAO, Zhenhua ZHANG, Runya YANG et al. Application of ANFIS in in situ measured hyperspectral data for vegetation chlorophyll content estimation. Spectroscopy and Spectral Analysis, 30, 1834-1838(2010).

    [19] P D Fraser, P M Bramley. The biosynthesis and nutritional uses of carotenoids. Progress in Lipid Research, 43, 228-265(2004).

    [20] Xiaojing WANG. Problems, challenges and countermeasures for the development of wolfberry industry in Ningxia. Ningxia Journal of Agriculture and Forestry Science and Technology, 64, 32-35(2023).

    [21] Fang ZHANG, Sheng GUO, Dawei QIAN et al. Research progress on extraction, purification, and molecular structural elucidation of active polysaccharide from Lycii Fructus and analysis on its industrial development status and prospect. Chinese Traditional and Herbal Drugs, 48, 424-432(2017).

    [22] L L Gao, Y X Li, J M Ma et al. Correction to: effect of Lycium barbarum polysaccharide supplementation in non-alcoholic fatty liver disease patients: study protocol for a randomized controlled trial. Trials, 22, 672(2021).

    [23] C H Yang, Q Zhao, S L Li et al. Effects of lycium barbarum L. polysaccharides on vascular retinopathy: an insight review. Molecules, 27, 5628(2022).

    [24] Mengshan JI, Wenjun WEI, Kaixiao ZHANG et al. Research progress of carotenoids in Lycium barbarum L. West China Journal of Pharmaceutical Sciences, 39, 99-102(2024).

    [25] Zhigang SHI. Advances and prospects in wolfberry breeding and cultivation research. Ningxia Agriculture and Forestry Science and Technology, 65, 85-93(2024).

    [26] Man WANG, Xiao LIU, Yan DU et al. Effects of heavy ion irradiation breeding on growth and physiological characteristics of broccoli seedlings. Journal of Radiation Research and Radiation Processing, 42, 010402(2024).

    [27] Xiaoyu MA, Yongbin WANG, Jinbo ZHANG et al. Research progress of mutation breeding technology in soybean. Soybean Science, 42, 245-252(2023).

    [28] Fengluan LIU, Mi QIN, Sheng YU et al. Effects of 60co-γ irradiation on lotus seeds and morphological analysis of a mutant with narrow tepals. Journal of Nuclear Agricultural Sciences, 35, 2681-2687(2021).

    [29] Xiaojie QIN, Yuanyuan WANG, Jiaqi FAN et al. A preliminary study on the radiation effects of 60Co-γ rays on the polypody plant white peony. Modern Horticulture, 44, 47-48(2021).

    [30] Yumiao SU, Xiaohan LIU, Qin DU et al. 60Co-γ radiation-induced population variation and cluster analysis of M1 generation of andrographis paniculata. China Pharmacy, 30, 3399-3404(2019).

    [31] Yao HU, Yuelong ZHANG, Honggao LI et al. Effect of 60co-γ irradiation on physiological properties of heuchera micrantha. Journal of Nuclear Agricultural Sciences, 34, 453-459(2020).

    Tools

    Get Citation

    Copy Citation Text

    Jiadong WANG, Kai FENG, Songbo YANG, Bo ZHANG, Linyuan DUAN, Dandan ZHANG, Zicheng ZHANG, Xiang LI. Mutagenic effects of 60Co-γ-ray irradiation on the spikes of four Lyciumspecies[J]. Journal of Radiation Research and Radiation Processing, 2025, 43(1): 010404

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: RADIATION TECHNOLOGY APPLICATION

    Received: Jun. 15, 2024

    Accepted: Sep. 3, 2024

    Published Online: Mar. 13, 2025

    The Author Email: LI Xiang (李翔)

    DOI:10.11889/j.1000-3436.2024-0053

    Topics