Penicillium janthinellum NCIM1366 shows improved biomass hydrolysis and a larger number of CAZymes with higher induction levels over Trichoderma reesei RUT-C30
Abstract Background Major cost of bioethanol is attributed to enzymes employed in biomass hydrolysis. Biomass hydrolyzing enzymes are predominantly produced from the hyper-cellulolytic mutant filamentous fungus Trichoderma reesei RUT-C30. Several decades of research have failed to provide an industr...
| Published in: | Biotechnology for Biofuels |
|---|---|
| Main Authors: | AthiraRaj Sreeja-Raju, Meera Christopher, Prajeesh Kooloth-Valappil, Rajasree Kuni-Parambil, Digambar Vittal Gokhale, Meena Sankar, Amith Abraham, Ashok Pandey, Rajeev K. Sukumaran |
| Format: | Article |
| Language: | English |
| Published: |
BMC
2020-12-01
|
| Subjects: | |
| Online Access: | https://doi.org/10.1186/s13068-020-01830-9 |
Similar Items
Early cellular events and potential regulators of cellulase induction in Penicillium janthinellum NCIM 1366
by: Meera Christopher, et al.
Published: (2023-03-01)
by: Meera Christopher, et al.
Published: (2023-03-01)
Penicillium janthinellum Pneumonia in an SLE Patient: A Case Study
by: Li X, et al.
Published: (2020-08-01)
by: Li X, et al.
Published: (2020-08-01)
Production, purification and characterization of an exo-polygalacturonase from Penicillium janthinellum sw09
by: YUPING MA, et al.
Published: (2016-01-01)
by: YUPING MA, et al.
Published: (2016-01-01)
<i>Penicillium janthinellum</i>: A Potential Producer of Natural Products
by: Han Wang, et al.
Published: (2024-03-01)
by: Han Wang, et al.
Published: (2024-03-01)
Simultaneous production of animal feed enzymes (endoxylanase and endoglucanase) by Penicillium janthinellum from waste jute caddies
by: Aditi Kundu, et al.
Published: (2024-02-01)
by: Aditi Kundu, et al.
Published: (2024-02-01)
Optimization Studies for Enhancing Cellulase Production by Penicillium janthinellum Mutant EU2D-21 Using Response Surface Methodology
by: Anil Kumar Nagraj, et al.
Published: (2014-02-01)
by: Anil Kumar Nagraj, et al.
Published: (2014-02-01)
Production of β-Glucosidase in Mixed Culture of Aspergillus niger BKMF 1305 and Trichoderma reesei RUT C30
by: Krisztina Kozma, et al.
Published: (2003-01-01)
by: Krisztina Kozma, et al.
Published: (2003-01-01)
Enhanced cellulase production in Trichoderma reesei RUT C30 via constitution of minimal transcriptional activators
by: Jiajia Zhang, et al.
Published: (2018-05-01)
by: Jiajia Zhang, et al.
Published: (2018-05-01)
Transgressive phenotypes from outbreeding between the Trichoderma reesei hyper producer RutC30 and a natural isolate
by: Laetitia Chan Ho Tong, et al.
Published: (2024-10-01)
by: Laetitia Chan Ho Tong, et al.
Published: (2024-10-01)
Evaluation of Scopoletin from <i>Penicillium janthinellum</i> Snef1650 for the Control of <i>Heterodera glycines</i> in Soybean
by: Jichen Yan, et al.
Published: (2021-10-01)
by: Jichen Yan, et al.
Published: (2021-10-01)
Mechanism of Zn2+ regulation of cellulase production in Trichoderma reesei Rut-C30
by: Ni Li, et al.
Published: (2023-04-01)
by: Ni Li, et al.
Published: (2023-04-01)
Enhancement of cellulase production in Trichoderma reesei RUT-C30 by comparative genomic screening
by: Pei Liu, et al.
Published: (2019-05-01)
by: Pei Liu, et al.
Published: (2019-05-01)
Enhance of Cellulase Production and Biomass Degradation by Transformation of the Trichoderma reesei RUT-C30∆zface1 Strain
by: Débora Nakadomari Dudek, et al.
by: Débora Nakadomari Dudek, et al.
Construction of enhanced transcriptional activators for improving cellulase production in Trichoderma reesei RUT C30
by: Jiajia Zhang, et al.
Published: (2018-08-01)
by: Jiajia Zhang, et al.
Published: (2018-08-01)
Effect of the res2 transcription factor gene deletion on protein secretion and stress response in the hyperproducer strain Trichoderma reesei Rut-C30
by: Jawad Alharake, et al.
Published: (2023-11-01)
by: Jawad Alharake, et al.
Published: (2023-11-01)
Deletion of either the regulatory gene ara1 or metabolic gene xki1 in Trichoderma reesei leads to increased CAZyme gene expression on crude plant biomass
by: Tiziano Benocci, et al.
Published: (2019-04-01)
by: Tiziano Benocci, et al.
Published: (2019-04-01)
Truncation of the transcriptional repressor protein Cre1 in Trichoderma reesei Rut-C30 turns it into an activator
by: Alice Rassinger, et al.
Published: (2018-08-01)
by: Alice Rassinger, et al.
Published: (2018-08-01)
Peningkatan Kadar Protein Putak melalui Fermentasi oleh Kapang Trichoderma reesei (THE INCREASE OF PROTEIN LEVEL FROM PUTAK THROUGH FERMENTATION OF FUNGI TRICHODERMA REESEI)
by: Maritje Aleonor Hilakore, et al.
Published: (2013-09-01)
by: Maritje Aleonor Hilakore, et al.
Published: (2013-09-01)
Anti-Neuroinflammatory Agent, Restricticin B, from the Marine-Derived Fungus <i>Penicillium janthinellum</i> and Its Inhibitory Activity on the NO Production in BV-2 Microglia Cells
by: Byeoung-Kyu Choi, et al.
Published: (2020-09-01)
by: Byeoung-Kyu Choi, et al.
Published: (2020-09-01)
Exploration of anti-chromium mechanism of marine Penicillium janthinellum P1 through combinatorial transcriptomic analysis and WGCNA
by: Shengnan Bao, et al.
Published: (2022-03-01)
by: Shengnan Bao, et al.
Published: (2022-03-01)
Exploration of Trichoderma reesei as an alternative host for erythritol production
by: Audrey Masi, et al.
Published: (2024-06-01)
by: Audrey Masi, et al.
Published: (2024-06-01)
Increased Production and Activity of Cellulase Enzyme of Trichoderma reesei by Using Gibberellin Hormone
by: B. Laamerad, et al.
Published: (2015-12-01)
by: B. Laamerad, et al.
Published: (2015-12-01)
Enhanced cellulase production by decreasing intercellular pH through H+-ATPase gene deletion in Trichoderma reesei RUT-C30
by: Pei Liu, et al.
Published: (2019-08-01)
by: Pei Liu, et al.
Published: (2019-08-01)
Multi-omics analysis of Trichoderma reesei mutant with high glucanase activity
by: Na Wang, et al.
Published: (2025-07-01)
by: Na Wang, et al.
Published: (2025-07-01)
Transcriptomic Analysis Reveals Opposing Roles of CEL1B in Sophorose- and Lactose-Induced Cellulase Expression in <i>Trichoderma reesei</i> Rut C30
by: Lu Wang, et al.
Published: (2025-07-01)
by: Lu Wang, et al.
Published: (2025-07-01)
Extracellular vesicles carry cellulases in the industrial fungus Trichoderma reesei
by: Renato Graciano de Paula, et al.
Published: (2019-06-01)
by: Renato Graciano de Paula, et al.
Published: (2019-06-01)
Comparative Secretomics Analysis Reveals the Major Components of <i>Penicillium oxalicum</i> 16 and <i>Trichoderma reesei</i> RUT-C30
by: Kexin Wang, et al.
Published: (2021-09-01)
by: Kexin Wang, et al.
Published: (2021-09-01)
Cellulase production and morphology of “Trichoderma reesei” in different experimental conditions
by: Rahela CARPA, et al.
Published: (2018-12-01)
by: Rahela CARPA, et al.
Published: (2018-12-01)
Effect of temperature on the production of cellulases, xylanases and lytic enzymes by selected Trichoderma reesei mutants
by: Piotr Janas, et al.
Published: (2014-08-01)
by: Piotr Janas, et al.
Published: (2014-08-01)
Lignocellulosic Bioethanol Production of Napier Grass Using Trichoderma reesei and Saccharomyces cerevisiae Co-Culture Fermentation
by: Thirawat Mueansichai, et al.
Published: (2022-05-01)
by: Thirawat Mueansichai, et al.
Published: (2022-05-01)
Assessing the intracellular primary metabolic profile of Trichoderma reesei and Aspergillus niger grown on different carbon sources
by: Gustavo Pagotto Borin, et al.
Published: (2022-09-01)
by: Gustavo Pagotto Borin, et al.
Published: (2022-09-01)
Metformin regulates cellulase production in Trichoderma reesei via calcium signaling and mitochondrial function
by: Jiajia Wang, et al.
Published: (2024-11-01)
by: Jiajia Wang, et al.
Published: (2024-11-01)
Functional characterization of a highly specific l-arabinose transporter from Trichoderma reesei
by: Sami Havukainen, et al.
Published: (2021-09-01)
by: Sami Havukainen, et al.
Published: (2021-09-01)
Purification and Characterization of β-1,3-Glucanase from the Antagonistic Fungus Trichoderma reesei
by: SRI WAHYUNI BUDIARTI, et al.
Published: (2009-09-01)
by: SRI WAHYUNI BUDIARTI, et al.
Published: (2009-09-01)
Transcriptomic and metabolic changes in Trichoderma reesei caused by mutation in xylanase regulator 1 (xyr1)
by: Emmi Sveholm, et al.
Published: (2024-07-01)
by: Emmi Sveholm, et al.
Published: (2024-07-01)
Role of cellulose response transporter-like protein CRT2 in cellulase induction in Trichoderma reesei
by: Su Yan, et al.
Published: (2023-07-01)
by: Su Yan, et al.
Published: (2023-07-01)
A copper-controlled RNA interference system for reversible silencing of target genes in Trichoderma reesei
by: Lei Wang, et al.
Published: (2018-02-01)
by: Lei Wang, et al.
Published: (2018-02-01)
Increasing the Performance of Enzymatic Hydrolysis of Rice Straw Using Mixed Crude Cellulases from Trichoderma reesei and Aspergillus niger.
by: Sugeng Winardi, et al.
Published: (2010-11-01)
by: Sugeng Winardi, et al.
Published: (2010-11-01)
Simultaneous enhancement of the beta–exo synergism and exo–exo synergism in Trichoderma reesei cellulase to increase the cellulose degrading capability
by: Hao Fang, et al.
Published: (2019-01-01)
by: Hao Fang, et al.
Published: (2019-01-01)
A Putative Lignin Copper Oxidase from <i>Trichoderma reesei</i>
by: Mariane Daou, et al.
Published: (2021-08-01)
by: Mariane Daou, et al.
Published: (2021-08-01)
Similar Items
-
Early cellular events and potential regulators of cellulase induction in Penicillium janthinellum NCIM 1366
by: Meera Christopher, et al.
Published: (2023-03-01) -
Penicillium janthinellum Pneumonia in an SLE Patient: A Case Study
by: Li X, et al.
Published: (2020-08-01) -
Production, purification and characterization of an exo-polygalacturonase from Penicillium janthinellum sw09
by: YUPING MA, et al.
Published: (2016-01-01) -
<i>Penicillium janthinellum</i>: A Potential Producer of Natural Products
by: Han Wang, et al.
Published: (2024-03-01) -
Simultaneous production of animal feed enzymes (endoxylanase and endoglucanase) by Penicillium janthinellum from waste jute caddies
by: Aditi Kundu, et al.
Published: (2024-02-01)
