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  5. Growth, Enzymatic, and Transcriptomic Analysis of xyr1 Deletion Reveals a Major Regulator of Plant Biomass-Degrading Enzymes in Trichoderma harzianum.

Growth, Enzymatic, and Transcriptomic Analysis of xyr1 Deletion Reveals a Major Regulator of Plant Biomass-Degrading Enzymes in Trichoderma harzianum.

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Resource type
Journal article
Creator (person)
Wang, Lunji
ORCIDORCID logo
Zhao, Yishen
Chen, Siqiao
Wen, Xian
Anjago, Wilfred Mabeche
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Date published
January 24, 2024
Abstract

The regulation of plant biomass degradation by fungi is critical to the carbon cycle, and applications in bioproducts and biocontrol. Trichoderma harzianum is an important plant biomass degrader, enzyme producer, and biocontrol agent, but few putative major transcriptional regulators have been deleted in this species. The T. harzianum ortholog of the transcriptional activator XYR1/XlnR/XLR-1 was deleted, and the mutant strains were analyzed through growth profiling, enzymatic activities, and transcriptomics on cellulose. From plate cultures, the Δxyr1 mutant had reduced growth on D-xylose, xylan, and cellulose, and from shake-flask cultures with cellulose, the Δxyr1 mutant had ~90% lower β-glucosidase activity, and no detectable β-xylosidase or cellulase activity. The comparison of the transcriptomes from 18 h shake-flask cultures on D-fructose, without a carbon source, and cellulose, showed major effects of XYR1 deletion whereby the Δxyr1 mutant on cellulose was transcriptionally most similar to the cultures without a carbon source. The cellulose induced 43 plant biomass-degrading CAZymes including xylanases as well as cellulases, and most of these had massively lower expression in the Δxyr1 mutant. The expression of a subset of carbon catabolic enzymes, other transcription factors, and sugar transporters was also lower in the Δxyr1 mutant on cellulose. In summary, T. harzianum XYR1 is the master regulator of cellulases and xylanases, as well as regulating carbon catabolic enzymes.

Organisational unit
Science
Project(s)
Priority 2: Trait Diversity and Function
Funder
Funder nameISNIAwards
Agriculture Research System of China, China
(CARS-24-C-01)
Jiangsu Coast Land Resources Development Co., Ltd.’s Co., Ltd., China
2022 Saline-alkali Land Management and Soil Fertility Enhancement Science and Technology “Open Competition Mechanism to Select the Best Candidates” Project (2022YHTDJB03)
Journal title
Biomolecules
Volume
14
Issue
2
Article number
148
Publisher
MDPI AG
Place of publication
Basel, Switzerland
eISSN
2218-273X
Date accepted
January 9, 2024
Official URL
https://doi.org/10.3390/biom14020148
Related URL
https://www.mdpi.com/2218-273X/14/2/148
Rights statement
In Copyright
Licence
CC BY 4.0
DOI
10.3390/biom14020148
Keywords
Cellulose
Trichoderma harzianum
CAZymes
XYR1/XlnR/XLR-1
Transcriptional regulation
Additional information
6.064 (2023-2024)
Managed by the British Library and supported by the AHRC

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