High-quality RNA extraction and the regulation of genes encoding cellulosomes are correlated with growth stage in anaerobic fungi.

IF 2.1 Q3 MYCOLOGY
Frontiers in fungal biology Pub Date : 2023-07-17 eCollection Date: 2023-01-01 DOI:10.3389/ffunb.2023.1171100
Jennifer L Brown, Taylor Gierke, Lazarina V Butkovich, Candice L Swift, Vasanth Singan, Christopher Daum, Kerrie Barry, Igor V Grigoriev, Michelle A O'Malley
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引用次数: 0

Abstract

Anaerobic fungi produce biomass-degrading enzymes and natural products that are important to harness for several biotechnology applications. Although progress has been made in the development of methods for extracting nucleic acids for genomic and transcriptomic sequencing of these fungi, most studies are limited in that they do not sample multiple fungal growth phases in batch culture. In this study, we establish a method to harvest RNA from fungal monocultures and fungal-methanogen co-cultures, and also determine an optimal time frame for high-quality RNA extraction from anaerobic fungi. Based on RNA quality and quantity targets, the optimal time frame in which to harvest anaerobic fungal monocultures and fungal-methanogen co-cultures for RNA extraction was 2-5 days of growth post-inoculation. When grown on cellulose, the fungal strain Anaeromyces robustus cocultivated with the methanogen Methanobacterium bryantii upregulated genes encoding fungal carbohydrate-active enzymes and other cellulosome components relative to fungal monocultures during this time frame, but expression patterns changed at 24-hour intervals throughout the fungal growth phase. These results demonstrate the importance of establishing methods to extract high-quality RNA from anaerobic fungi at multiple time points during batch cultivation.

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Abstract Image

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高质量的RNA提取和编码纤维体的基因的调节与厌氧真菌的生长阶段有关。
厌氧真菌产生生物量降解酶和天然产物,这些酶和天然产品对多种生物技术应用很重要。尽管在开发用于这些真菌的基因组和转录组测序的核酸提取方法方面取得了进展,但大多数研究都是有限的,因为它们没有在分批培养中对多个真菌生长阶段进行采样。在这项研究中,我们建立了一种从真菌单培养物和真菌产甲烷菌共培养物中提取RNA的方法,并确定了从厌氧真菌中提取高质量RNA的最佳时间框架。基于RNA的质量和数量目标,收获厌氧真菌单培养物和真菌产甲烷菌共培养物进行RNA提取的最佳时间范围是接种后2-5天的生长。当在纤维素上生长时,与产甲烷菌苔藓甲烷杆菌共培养的真菌菌株Anaeromyces robustus在这一时间段内上调了编码真菌碳水化合物活性酶和其他纤维素组分的基因,但在整个真菌生长期,表达模式每隔24小时就会发生变化。这些结果证明了在分批培养的多个时间点建立从厌氧真菌中提取高质量RNA的方法的重要性。
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来源期刊
CiteScore
2.70
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审稿时长
13 weeks
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