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One-Carbon Feedstocks for Sustainable Bioproduction
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
One-Carbon Feedstocks for Sustainable Bioproduction/ edited by An-Ping Zeng, Nico J. Claassens.
其他作者:
Claassens, Nico J.
面頁冊數:
XII, 407 p.online resource. :
Contained By:
Springer Nature eBook
標題:
Green Chemistry. -
電子資源:
https://doi.org/10.1007/978-3-031-06854-6
ISBN:
9783031068546
One-Carbon Feedstocks for Sustainable Bioproduction
One-Carbon Feedstocks for Sustainable Bioproduction
[electronic resource] /edited by An-Ping Zeng, Nico J. Claassens. - 1st ed. 2022. - XII, 407 p.online resource. - Advances in Biochemical Engineering/Biotechnology,1801616-8542 ;. - Advances in Biochemical Engineering/Biotechnology,149.
Obituary: In memory of Dr. Arren Bar-Even -- Introduction: The future belongs to the one-carbons -- Exploiting aerobic carboxydotrophic bacteria for industrial biotechnology -- Process engineering aspects of C1-conversion -- Systems biology on acetogenic bacteria for utilizing C1 feedstocks -- Systems metabolic engineering of methanotrophic bacteria for biological conversion of methane to value-added compounds -- Engineering synthetic methylotrophs by harnessing the power of metabolic engineering-guided adaptive laboratory evolution -- Bioconversion of methanol by synthetic methylotrophy -- Aerobic growth on methanol using the RuMP cycle -- Empower C1 – Combination of electrochemistry and biology to convert C1 compounds -- Extracellular electron powered microbial CO2 upgrading -- Understanding and engineering glycine cleavage system and its reversion for C1 biosynthesis -- Engineering the reductive glycine pathway - A promising synthetic metabolism approach for C1-assimilation -- Biosynthesis based on one-carbon mixotrophy -- Conversion of carbon monoxide to chemicals by mixed culture approaches.
This book offers a comprehensive review of the latest developments, challenges and trends in C1-based (one-carbon based) bioproduction, and it presents an authoritative account of one-carbon compounds as promising alternative microbial feedstocks. The book starts with a perspective on the future of C1 compounds as alternative feedstocks for microbial growth, and their vital role in the establishment of a sustainable circular carbon economy, followed by several chapters in which expert contributors discuss about the recent strategies and address key challenges regarding one or more C1 feedstocks. The book covers topics such as acetogenic production from C1 feedstocks, aerobic carboxydotrophic bacteria potential in industrial biotechnology, bioconversion of methane to value-added compounds, combination of electrochemistry and biology to convert C1 compounds, and bioprocesses based on C1-mixotrophy. Particular attention is given to the current metabolic engineering, systems biology, and synthetic biology strategies applied in this field. .
ISBN: 9783031068546
Standard No.: 10.1007/978-3-031-06854-6doiSubjects--Topical Terms:
1142255
Green Chemistry.
LC Class. No.: TP248.13-.65
Dewey Class. No.: 660.63
One-Carbon Feedstocks for Sustainable Bioproduction
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Obituary: In memory of Dr. Arren Bar-Even -- Introduction: The future belongs to the one-carbons -- Exploiting aerobic carboxydotrophic bacteria for industrial biotechnology -- Process engineering aspects of C1-conversion -- Systems biology on acetogenic bacteria for utilizing C1 feedstocks -- Systems metabolic engineering of methanotrophic bacteria for biological conversion of methane to value-added compounds -- Engineering synthetic methylotrophs by harnessing the power of metabolic engineering-guided adaptive laboratory evolution -- Bioconversion of methanol by synthetic methylotrophy -- Aerobic growth on methanol using the RuMP cycle -- Empower C1 – Combination of electrochemistry and biology to convert C1 compounds -- Extracellular electron powered microbial CO2 upgrading -- Understanding and engineering glycine cleavage system and its reversion for C1 biosynthesis -- Engineering the reductive glycine pathway - A promising synthetic metabolism approach for C1-assimilation -- Biosynthesis based on one-carbon mixotrophy -- Conversion of carbon monoxide to chemicals by mixed culture approaches.
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