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生物诱导子对改良无刺龙葵生长、抗氧化防御和代谢物的影响。

Biotic elicitor-induced changes in growth, antioxidative defense, and metabolites in an improved prickleless Solanum viarum.

机构信息

Molecular Biology and Biotechnology Division, Council of Scientific & Industrial Research- National Botanical Research Institute, Lucknow, 226001, U.P., India.

Department of Botany, University of Lucknow, Lucknow, 226007, U.P., India.

出版信息

Appl Microbiol Biotechnol. 2022 Oct;106(19-20):6455-6469. doi: 10.1007/s00253-022-12159-8. Epub 2022 Sep 7.

Abstract

Solanum viarum serves as a raw material for the steroidal drug industry due to its alkaloid and glycoalkaloid content. Elicitation is well-known for measuring the increase in the yield of bioactive compounds in in vitro cultures. The current study was performed for the accumulation of metabolites viz. solasodine, solanidine, and α-solanine in S. viarum culture using microbial-based elicitors added in 1%, 3%, 5%, and 7% on 25 and 35 day of culture period and harvested on 45 and 50 days of culture cycle. The treatment of 3% Trichoderma reesei and Bacillus tequilensis culture filtrate (CF) significantly increased biomass, alkaloids/glycoalkaloid content, and yield in S. viarum. T. reesei was found to be the best treatment for enhanced growth (GI = 11.65) and glycoalkaloid yield (2.54 mg DW plant) after the 50 day of the culture cycle when added on the 25 day. The abundance of gene transcripts involved in the biosynthesis of alkaloids/glycoalkaloids, revealed by quantitative real-time PCR expression analysis correlates with the accumulation of their respective metabolites in elicited plants. Biochemical analysis shows that elicited plants inhibited oxidative damage caused by reactive oxygen species by activating enzymes (superoxide dismutase and ascorbate peroxidase) as well as non-enzymatic antioxidant mechanisms (alkaloids, total phenols, total flavonoids, carotenoids, and proline). The findings of this study clearly demonstrate that the application of T. reesei and B. tequilensis CF at a specific dose and time significantly improve biomass as well as upregulates the metabolite biosynthetic pathway in an important medicinal plant- S. viarum. KEY POINTS: • Biotic elicitors stimulated the alkaloids/glycoalkaloid content in S. viarum plant cultures. • T. reesei was found to be most efficient for enhancing the growth and alkaloids content. • Elicited plants activate ROS based-defense mechanism to overcome oxidative damage.

摘要

茄属植物由于其生物碱和糖苷生物碱的含量,可用作甾体药物工业的原料。诱导是一种众所周知的方法,用于测量体外培养物中生物活性化合物产量的增加。本研究是为了在茄属植物培养物中积累代谢产物,如茄碱、茄啶和α-茄碱,在培养的第 25 和 35 天添加 1%、3%、5%和 7%的微生物诱导剂,并在培养周期的第 45 和 50 天收获。在 50 天的培养周期中,在第 25 天添加 3%的里氏木霉和拜氏梭菌培养液(CF)时,生物量、生物碱/糖苷生物碱含量和茄属植物产量显著增加。里氏木霉被发现是增强生长(GI=11.65)和糖苷生物碱产量(2.54 mg DW 植物)的最佳处理方法,当在 25 天添加时。通过定量实时 PCR 表达分析揭示的生物碱/糖苷生物碱生物合成相关基因的转录物丰度与诱导植物中各自代谢物的积累相关。生化分析表明,诱导植物通过激活超氧化物歧化酶和抗坏血酸过氧化物酶等酶以及非酶抗氧化机制(生物碱、总酚、总类黄酮、类胡萝卜素和脯氨酸)来抑制由活性氧引起的氧化损伤。这项研究的结果清楚地表明,在特定剂量和时间下应用里氏木霉和拜氏梭菌 CF 可显著提高生物量,并上调重要药用植物茄属植物中的代谢物生物合成途径。关键点:•生物诱导剂刺激茄属植物培养物中的生物碱/糖苷生物碱含量。•里氏木霉被发现是增强生长和生物碱含量最有效的方法。•诱导植物激活基于 ROS 的防御机制以克服氧化损伤。

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