蒙古栎腐皮担子菌真菌的鉴定、酶活性及腐烂能力研究Ledeb交货)。

M. H. Nguyen, Dae-Ho Kim, Ji Hyun Park, Y. Park, Moo-Yeul Lee, M. Choi, Dong Ho Lee, J. Lee
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引用次数: 3

摘要

腐烂真菌可以分解植物残骸,在生态系统中循环利用碳。不过,它们也可能是真菌病原体,它们会损害活的树木和/或木材材料,导致大量木材损失。用粘辊夹从蒙古栎腐烂树皮中分离鉴定出担子菌。然后测试了所有真菌分离株的降解酶活性。以不同湿度条件下接种腐烂真菌培养悬浮液后的木盘失重率为指标,对所选菌株的腐烂能力进行了评价。从钟庙(16株)、昌庆宫(7株)、清溪(10株)和郡浦(13株)共分离得到担子菌真菌分离株46株,隶属12种,共10属。在本研究中最具优势的真菌是草裸子菌(Gymnopus luxians),该菌种分布于各调查点,在宗庙有9株,在昌庆宫次之,有3株,清溪和郡浦各有1株。在46株菌株中,44株至少分泌一种酶,25株同时分泌纤维素酶和酚氧化酶,2株不分泌纤维素酶。人工接种腐烂能力评价表明,接种树皮腐烂真菌后,湿度条件对木盘的失重有显著影响。在RH为90 ~ 100%和RH为65 ~ 75%条件下,接种黄芪的失重率分别为4.61%和2.45%。在RH为90 ~ 100%和RH为45 ~ 55%时,双Abortiporus biennis的失重率分别为6.67%和0.46%。采用减湿方法控制树皮腐烂真菌在粘辊捕集器缠绕树干上的生长和传播,值得进一步研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification, Enzymatic Activity, and Decay Ability of Basidiomycetous Fungi Isolated from the Decayed Bark of Mongolian Oak (Quercus mongolica Fisch. ex Ledeb.)
Decay fungi can decompose plant debris to recycle carbon in the ecosystem. Still, they can also be fungal pathogens, which can damage living trees and/or wood material and cause a large amount of timber loss. We isolated and identified basidiomycetous fungi from the decayed bark of Mongolian oak wrapped with sticky roll traps. The degrading enzyme activities were then tested for all fungal isolates. The decay ability of selected isolates was assessed based on the weight loss of wood discs after inoculating with culture suspension of decay fungi under the different humidity levels. A total of 46 basidiomycetous fungal isolates belonged to 12 species, and 10 genera were obtained from Jong Myo (16 isolates), Chang Kyung palace (7 isolates), Cheong Gye (10 isolates), and Gun Po (13 isolates). Gymnopus luxurians was the most dominant fungus in the present study, and this species distributed in all survey sites with 9 isolates in Jong Myo, followed by 3 isolates in Chang Kyung palace, while Cheong Gye and Gun Po had only 1 isolate each. Among 46 isolates, 44 isolates secreted at least one enzyme, while 25 isolates produced both cellulase and phenol oxidase enzymes, and 2 isolates produced neither. The assessment of decay ability by artificial inoculation indicated that the weight loss of wood discs was significantly influenced by humidity conditions when inoculated with bark decay fungi. The percent weight losses by G. luxurians inoculation in RH of 90-100% and RH of 65-75% were 4.61% and 2.45%, respectively. The weight loss caused by Abortiporus biennis were 6.67% and 0.46% in RH of 90-100% and RH of 45-55%, respectively. The humidity reduction approach should be applied for further studies to control the growth and spread of bark decay fungi on the trunks wrapped with sticky roll traps.
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