Key Laboratory of Forest Plant Ecology, Ministry of Education, Northeast Forestry University, Harbin, China.
Life Science and Biotechnique Research Center, Northeast Agricultural University, Harbin, China.
J Appl Microbiol. 2018 Oct;125(4):1054-1065. doi: 10.1111/jam.13928. Epub 2018 Jul 17.
The aim of this study was to characterize a fungal endophyte Y3 from pigeon pea (Cajanus cajan [L.] Millsp), as a novel producer of vitexin, and its culture medium optimization and antioxidant activity.
The endophyte from the leaves of pigeon pea was identified as Dichotomopilus funicola by the morphological and molecular characteristics. The most important medium variables affecting vitexin production in liquid culture of D. funicola Y3 were screened by Plackett-Burman design, and three culture medium constituents (i.e. l-phenylalanine, salicylic acid and CuSO ·5H O) were identified to play significant roles in vitexin production. The most significant factors were further optimized using by central composite design with response surface methodology. The DPPH radical-scavenging assay indicated that fungal vitexin exhibited notable antioxidant activity with an EC value of 164 μg l .
First, a novel endophyte vitexin-producing Dichotomopilus funicola Y3 was isolated from pigeon pea (Cajanus cajan[L.] Millsp.). The maximum vitexin yield was obtained as 78·86 mg l under the optimum culture medium constituents: 0·06 g l l-phenylalanine, 0·21 g l salicylic acid, and 0·19 g l CuSO ·5H O in medium, which is 4·59-fold higher than that in the unoptimized medium. Also, fungal vitexin clearly demonstrated its antioxidant potential.
These findings provide an alternative source for large-scale production of vitexin by endophytic fungal fermentation and have a promising prospect in food and pharmaceutical industry.
本研究旨在从兵豆(Cajanus cajan [L.] Millsp)中鉴定一种真菌内生菌 Y3,作为牡荆素的新型产生菌,并对其培养基进行优化和抗氧化活性研究。
通过形态学和分子特征,从兵豆叶片中鉴定出内生真菌为二歧隔孢伏革菌(Dichotomopilus funicola)。采用 Plackett-Burman 设计筛选出影响 D. funicola Y3 液体培养中牡荆素产生的最重要培养基变量,并确定三种培养基成分(即 L-苯丙氨酸、水杨酸和 CuSO 5H O)对牡荆素产生有重要作用。进一步采用响应面法的中心复合设计对最显著因素进行优化。DPPH 自由基清除试验表明,真菌牡荆素具有显著的抗氧化活性,EC 值为 164μg l 。
首次从兵豆(Cajanus cajan [L.] Millsp)中分离出一种新型内生菌牡荆素产生菌二歧隔孢伏革菌(Dichotomopilus funicola)Y3。在最佳培养基成分(0.06 g l L-苯丙氨酸、0.21 g l 水杨酸和 0.19 g l CuSO 5H O)下,牡荆素的最大产量为 78.86 mg l ,比未优化培养基提高了 4.59 倍。此外,真菌牡荆素表现出明显的抗氧化潜力。
这些发现为内生真菌发酵大规模生产牡荆素提供了一种替代来源,在食品和制药工业中有广阔的应用前景。