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基于球孢白僵菌的菌虫共生基质在气调包装下贮藏条件对保质期延长的影响。

Effect of storage conditions on the shelf-life extension of fungus-colonized substrates based on Metarhizium anisopliae using modified atmosphere packaging.

机构信息

Eco-Friendly Process Technology Research Group, Technology Innovation Research Division, World Institute of Kimchi, Gwangju, 61755, Republic of Korea.

National Institute of Forest Science, Seoul, 02455, Republic of Korea.

出版信息

Sci Rep. 2022 Jan 10;12(1):423. doi: 10.1038/s41598-021-04232-5.

Abstract

Metarhizium anisopliae is a promising alternative to chemical pesticides against pine wilt disease caused by Bursaphelenchus xylophilus. Herein, we investigated the efficacy of modified atmosphere packaging (MAP) to prolong the shelf-life of the M. anisopliae conidia. The effects of various conditions on its stability were also examined. M. anisopliae-inoculated millet grains were treated in a MAP system with different packaging materials (polypropylene, PP; polyethylene terephthalate, PET; ethylene vinyl alcohol, EVOH), gas compositions (high CO atmosphere, ≈ 90%; high O atmosphere, > 95%; high N atmosphere, > 95%; 30% CO + 70% N; 50% CO + 50% N; 70% CO + 30% N), and storage temperatures (4 and 25 °C). Results revealed EVOH film as the best for the preservation of gases at all concentrations for 28 days. MAP treatment in the high-barrier EVOH film under an atmosphere of 30% CO + 70% N achieved 80.5% viability of dried conidia (7.4% moisture content), with 44.2-64.9% viability recorded with the other treatments. Cold storage for technical concentrates formulation promoted extension of shelf-life of MAP-treated conidia. These results imply that MAP under optimized conditions could enhance the shelf-life of fungus-based biopesticides in fungus-colonized substrates formulations.

摘要

绿僵菌是一种有前途的替代化学农药的方法,可防治松材线虫引起的松材线虫病。本文研究了改良气氛包装(MAP)对延长绿僵菌分生孢子货架寿命的效果。还研究了各种条件对其稳定性的影响。用不同的包装材料(聚丙烯,PP;聚对苯二甲酸乙二醇酯,PET;乙烯-乙烯醇,EVOH)、气体组成(高 CO 气氛,≈90%;高 O 气氛,>95%;高 N 气氛,>95%;30% CO+70% N;50% CO+50% N;70% CO+30% N)和储存温度(4 和 25°C)对绿僵菌接种的小米进行 MAP 处理。结果表明,EVOH 薄膜在所有浓度下均可在 28 天内保持气体,是保存气体的最佳选择。在高阻隔 EVOH 薄膜中,以 30% CO+70% N 的气氛进行 MAP 处理,可使干燥分生孢子的活力达到 80.5%(含水量为 7.4%),而其他处理的活力为 44.2-64.9%。技术浓缩物配方的冷藏可延长 MAP 处理的分生孢子的保质期。这些结果表明,在优化条件下,MAP 可以延长真菌侵染基质配方中真菌生物农药的保质期。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62ec/8748656/ef71fe005ce7/41598_2021_4232_Fig1_HTML.jpg

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