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选择内生真菌以促进姜黄根茎生长、增加姜黄素含量、发挥生物防治潜力并提高抗氧化活性。

Selecting Endophytes for Rhizome Production, Curcumin Content, Biocontrol Potential, and Antioxidant Activities of Turmeric (Curcuma longa).

机构信息

Soil Microbiology Laboratory, Biotechnology Centre, Faculty of Sciences, University of Yaoundé I, BP. 17673 Yaoundé, Cameroon.

Department of Economic and Environmental Studies, National Education Centre, Ministry of Scientific Research and Innovation, BP. 6331 Yaoundé, Cameroon.

出版信息

Biomed Res Int. 2022 Aug 23;2022:8321734. doi: 10.1155/2022/8321734. eCollection 2022.

Abstract

Beneficial endophytes may enhance plant growth and stress tolerance. Yet, the plant health benefits of endophytes can be altered by biotic and abiotic factors and, thus, favour the inhibition of turmeric growth and curcumin production. The double petri dish method and greenhouse pot experiments were conducted to assess the biocontrol potential and impact of endophytes on the output, curcumin levels, and antioxidant activities of turmeric ( L.). The results showed that endophytes could control some disease-causing plant pathogens: 52% of all isolates have an antagonistic action against , 43% against , 35% against , and 56% against . Eight months after sowing, most endophyte isolates can increase the yield of turmeric rhizomes on a sterile substrate after inoculation, with yields ranging from 42 to 105% higher than the control and 3 to 50% higher than the urea treatment. In addition, 52% endophytes isolate significantly raised curcumin levels after 8 months of culture (from 2.1 to 3.1%) compared to control (1.7%) and urea treatment (1.8%). These endophytes promote an increase in the levels of reduced glutathione (22%), total thiols (26%), and carotenoids (91%) in turmeric. The study concludes that, in general, the endophytes-turmeric association can stimulate turmeric rhizome production, curcumin, and the antioxidant activities of the plant. They can also be used as biocontrol agents for plant pathogens.

摘要

有益内生菌可以促进植物生长和增强抗逆性。然而,内生菌对植物健康的益处可能会受到生物和非生物因素的影响,从而抑制 turmeric 的生长和姜黄素的产生。本研究采用双层培养皿法和温室盆栽试验,评估内生菌对 turmeric(L.)的生物防治潜力及其对产量、姜黄素含量和抗氧化活性的影响。结果表明,内生菌可以控制一些致病植物病原菌:所有分离物中有 52%对具有拮抗作用,43%对具有拮抗作用,35%对具有拮抗作用,56%对具有拮抗作用。播种 8 个月后,大多数内生菌分离物在无菌基质上接种后可以增加 turmeric 根茎的产量,与对照相比,产量提高了 42%至 105%,与尿素处理相比,产量提高了 3%至 50%。此外,与对照(1.7%)和尿素处理(1.8%)相比,52%的内生菌分离物在 8 个月的培养后显著提高了姜黄素的含量(从 2.1%增加到 3.1%)。这些内生菌促进了 turmeric 中还原型谷胱甘肽(22%)、总巯基(26%)和类胡萝卜素(91%)水平的增加。综上所述,内生菌与 turmeric 的共生关系可以刺激 turmeric 根茎的产生、增加姜黄素含量和提高植物的抗氧化活性。它们还可以作为植物病原菌的生物防治剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/677a/9427320/92533c56c404/BMRI2022-8321734.001.jpg

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