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用于传代培养的反复组织分离所造成的氧化损伤会导致……退化。

Oxidative damage from repeated tissue isolation for subculturing causes degeneration in .

作者信息

Zhao Fengyun, Wang Qiaoli, An XueMing, Tan Qiangfei, Yun Jianmin, Zhang Yubin

机构信息

College of Food Science and Engineering, Gansu Agricultural University, Lanzhou, China.

Kangle County Special Agricultural Development Center, Linxia, Gansu, China.

出版信息

Front Microbiol. 2023 Jul 20;14:1210496. doi: 10.3389/fmicb.2023.1210496. eCollection 2023.

Abstract

The fungal fruiting body is the organized mycelium. Tissue isolation and mycelium succession are common methods of fungal species purification and rejuvenation in the production of edible mushrooms. However, repeated succession increases strain degeneration. In this study, we examined the effect of repeated tissue isolation from fruitbodies on the occurrence of degeneration. The results showed that less than four times in succession improved production capacity, however, after 12 successions, the traits indicating strain degeneration were apparent. For instance, the density of aerophytic hyphae, hyphal growth rate and hyphal biomass were gradually reduced, while the hyphae branching was increased. Also, other degenerative traits such as prolonged production cycles and decreased biological efficiency became evident. In particular, after 19 successions, the strain degeneration became so severe no fruiting bodies were produces anymore. Meanwhile, with the increase in successions, the antioxidant enzyme activity decreased, reactive oxygen species (ROS) increased, the number of nuclei decreased, and the mitochondrial membrane potential decreased along with morphological changes in the mitochondria. This study showed that repeated tissue isolation increased oxidative damage in the succession strain due to the accumulation of ROS, causing cellular senescence, in turn, degeneration in strain.

摘要

真菌子实体是有组织的菌丝体。组织分离和菌丝体继代是食用菌生产中真菌物种纯化和复壮的常用方法。然而,重复继代增加了菌株退化。在本研究中,我们研究了从子实体重复进行组织分离对退化发生的影响。结果表明,连续少于4次继代提高了生产能力,然而,12次继代后,表明菌株退化的性状明显。例如,气生菌丝密度、菌丝生长速率和菌丝生物量逐渐降低,而菌丝分支增加。此外,其他退化性状如生产周期延长和生物学效率降低也变得明显。特别是,19次继代后,菌株退化变得非常严重,不再产生子实体。同时,随着继代次数的增加,抗氧化酶活性降低,活性氧(ROS)增加,细胞核数量减少,线粒体膜电位降低,同时线粒体形态发生变化。本研究表明,重复组织分离由于ROS的积累增加了继代菌株中的氧化损伤,导致细胞衰老,进而导致菌株退化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1c4a/10397519/0f2cc1c878a1/fmicb-14-1210496-g001.jpg

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