Enhanced production of novel bioactive metabolites in mung bean (Vigna radiata (L.) R. Wilczek) plants induced by signal molecule ethylene in a vertical farm

IF 5.6 1区 农林科学 Q1 AGRICULTURAL ENGINEERING
Du Yong Cho , Se Hyeon Jeon , Mu Yeun Jang , Eun Jeong Ko , Hee Yul Lee , Jong Bin Jeong , Ga Yong Lee , Ki-Ho Son , Md. Azizul Haque , Jin Hwan Lee , Kye Man Cho
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Abstract

In the biofunctional material industry, enhancing bioactive metabolites in plants using signal stimulants is an emerging strategy. This study investigated the changes in bioactive metabolite content in different organs of mung bean plants treated with ethylene (ETL) in a closed chamber. In addition, we also examined its biomass, novel compounds, biological activities, and DNA protection. Through this approach, a practical method for producing mung bean plants with enhanced bioactive metabolites was proposed. ETL treatments led to a notable reduction in biomass, particularly in the leaves and roots, without affecting plant height. ETL treated leaves exhibited significant increases in the total phenolic, flavonoid, isoflavone, and flavone contents. Four compounds were identified in the mung bean organs following ETL treatment: 2′-hydroxydaidzein-4′,7-O-diglucoside, daidzein-4′,7-O-diglucoside, 2′-hydroxydaidzin, and 2′-hydroxydaidzein. Among these isoflavones, 2′-hydroxydaidzin and daidzin showed the highest significant accumulation levels in ETL treated leaves. In particular, the contents of 2′-hydroxydaidzin, daidzin, and genistin in the ETL treated leaves was increased by 77.4-fold (273.24–21,159.88 μg/g), 74.2-fold (429.67–31,845.13 μg/g), and 12.0-fold (268.35–3209.12 μg/g) respectively, compared with their contents in untreated leaves. Furthermore, the total phenolic and flavonoid contents increased from 13.87–24.59 and from 9.89 to 12.87 mg/g, respectively. These enhanced active metabolites in ETL treated mung bean organs significantly improved the antioxidant capacity, including radical scavenging, digestive enzyme-inhibition, and DNA protection activities. These findings underscore the potential of ETL as an effective elicitor and enhancer of bioactive metabolite production, supporting its application in high value functional bioresources.

Abstract Image

促进绿豆(Vigna radiata (L.))新型生物活性代谢物的产生R. Wilczek)垂直农场中信号分子乙烯诱导的植物
在生物功能材料工业中,利用信号刺激物增强植物的生物活性代谢物是一种新兴的策略。研究了密闭环境下乙烯处理对绿豆植株各器官生物活性代谢物含量的影响。此外,我们还研究了其生物量、新化合物、生物活性和DNA保护。通过该方法,提出了一种生产具有增强生物活性代谢产物的绿豆植物的实用方法。ETL处理导致生物量显著减少,尤其是叶片和根,但不影响株高。经ETL处理的叶片总酚、类黄酮、异黄酮和黄酮类含量显著增加。经ETL处理后,在绿豆脏器中鉴定出4种化合物:2 ‘ -羟基大豆苷-4 ’、7- o -二葡糖苷、大豆苷-4 ‘、7- o -二葡糖苷、2 ’ -羟基大豆苷和2 ' -羟基大豆苷。在这些异黄酮中,2′-羟基大豆苷元和大豆苷元在ETL处理的叶片中积累量最高。其中,2′-羟基大豆苷元、大豆苷元和龙木苷元的含量分别比未处理叶片提高77.4倍(273.24 ~ 21,159.88 μg)、74.2倍(429.67 ~ 31,845.13 μg)和12.0倍(268.35 ~ 3209.12 μg)。总酚和总黄酮含量分别从13.87 ~ 24.59和9.89 ~ 12.87 mg/g增加。这些活性代谢物在ETL处理下显著提高了绿豆器官的抗氧化能力,包括自由基清除、消化酶抑制和DNA保护活性。这些发现强调了ETL作为生物活性代谢物生产的有效激发子和增强剂的潜力,支持其在高价值功能性生物资源中的应用。
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来源期刊
Industrial Crops and Products
Industrial Crops and Products 农林科学-农业工程
CiteScore
9.50
自引率
8.50%
发文量
1518
审稿时长
43 days
期刊介绍: Industrial Crops and Products is an International Journal publishing academic and industrial research on industrial (defined as non-food/non-feed) crops and products. Papers concern both crop-oriented and bio-based materials from crops-oriented research, and should be of interest to an international audience, hypothesis driven, and where comparisons are made statistics performed.
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