Synthetic Biology Journal ›› 2023, Vol. 4 ›› Issue (6): 1051-1054.DOI: 10.12211/2096-8280.2023-076
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Received:
2023-11-06
Revised:
2023-11-09
Online:
2024-01-19
Published:
2023-12-31
吕雪峰1,2,3, 宋浩4,5
作者简介:
CLC Number:
吕雪峰, 宋浩. 从生物能源到能源合成生物学——创新合成生物技术,助力能源安全体系建设[J]. 合成生物学, 2023, 4(6): 1051-1054.
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URL: https://synbioj.cip.com.cn/EN/10.12211/2096-8280.2023-076
1 | 国际能源署. 2050年净零排放:全球能源行业路线图[R/OL]. [2023-11-01]. . |
International Energy Agency. Net zero by 2050: a roadmap for the global energy sector[R/OL]. [2023-11-01]. . | |
2 | 能源转型委员会. 中国2050:一个全面实现现代化国家的零碳图景[R/OL]. [2023-11-01]. . |
Energy Transitions Commission. China 2050: a zero-carbon picture of a fully modernised country[R/OL]. [2023-11-01]. . | |
3 | SI T, ZHAO H M. A brief overview of synthetic biology research programs and roadmap studies in the United States[J]. Synthetic and Systems Biotechnology, 2016, 1(4): 258-264. |
4 | PERALTA-YAHYA P P, ZHANG F Z, DEL CARDAYRE S B, et al. Microbial engineering for the production of advanced biofuels[J]. Nature, 2012, 488(7411): 320-328. |
5 | RAGAUSKAS A J, WILLIAMS C K, DAVISON B H, et al. The path forward for biofuels and biomaterials[J]. Science, 2006, 311(5760): 484-489. |
6 | 肖艳, 刘亚君, 冯银刚, 等. 热纤梭菌在生物质能源开发中的合成生物学研究进展[J]. 合成生物学, 2023, 4(6):1055-1081. |
XIAO Y, LIU Y J, FENG Y G, et al. Progress in synthetic biology research of Clostridium thermocellum for biomass energy application[J]. Synthetic Biology Journal, 2023, 4(6):1055-1081. | |
7 | 晏雄鹰, 王振, 娄吉芸, 等. 生物燃料高效生产微生物细胞工厂构建研究进展[J]. 合成生物学, 2023, 4(6):1082-1121. |
YAN X Y, WANG Z, LOU J Y, et al. Progress in the construction of microbial cell factories for efficient biofuel production[J]. Synthetic Biology Journal, 2023, 4(6):1082-1121. | |
8 | 刘庠诗, 吴奕禄, 詹鹏, 等. 醇脱氢酶的研究进展及其催化增值生物基呋喃化合物前景展望[J]. 合成生物学, 2023, 4(6):1122-1139. |
LIU X S, WU Y L, ZHAN P, et al. State-of-the-art for alcohol dehydrogenase development and the prospect of its applications in bio-based furan compounds valorization[J]. Synthetic Biology Journal, 2023, 4(6):1122-1139. | |
9 | LIU Z H, WANG K, CHEN Y, et al. Third-generation biorefineries as the means to produce fuels and chemicals from CO2 [J]. Nature Catalysis, 2020, 3(3): 274-288. |
10 | 孙翰, 刘进. 真核微藻脂质代谢工程的研究进展和展望[J]. 合成生物学, 2023, 4(6):1140-1160. |
SUN H, LIU J. Research progress and prospects in lipid metabolic engineering of eukaryotic microalgae[J]. Synthetic Biology Journal, 2023, 4(6):1140-1160. | |
11 | 孙绘梨, 崔金玉, 栾国栋, 等. 面向高效光驱固碳产醇的蓝细菌合成生物技术研究进展[J]. 合成生物学, 2023, 4(6):1161-1177. |
SUN H L, CUI J Y, LUAN G D, et al. Progress of cyanobacterial synthetic biotechnology for efficient light-driven carbon fixation and ethanol production[J]. Synthetic Biology Journal, 2023, 4(6):1161-1177. | |
12 | 文志琼, 李煜真, 张金刚, 等. 化能驱动的产乙酸菌转化利用CO2研究进展[J]. 合成生物学, 2023, 4(6):1178-1190. |
WEN Z Q, LI Y Z, ZHANG J G, et al. Progress on bio-fixation and utilization of CO2 in acetogens driven by chemical energy[J]. Synthetic Biology Journal, 2023, 4(6):1178-1190. | |
13 | 刘伟松, 张坤城, 崔会娟, 等. 电能辅助二氧化碳生物转化[J]. 合成生物学, 2023, 4(6):1191-1222. |
LIU W S, ZHANG K C, CUI H J, et al. Electro-assisted carbon dioxide biotransformation[J]. Synthetic Biology Journal, 2023, 4(6):1191-1222. | |
14 | 叶伟, 李芮, 姜卫红, 等. 二氧化碳微生物转化与体外酶催化体系研究进展[J]. 合成生物学, 2023, 4(6):1223-1245. |
YE W, LI R, JIANG W H, et al. Microbial conversion and in vitro enzymatic catalysis for carbon dioxide utilization: a review[J]. Synthetic Biology Journal, 2023, 4(6):1223-1245. | |
15 | 张晨悦, 马英群, 王兴, 等. 全碳素生物转化沼气制备生物航煤制造路线研究进展[J]. 合成生物学, 2023, 4(6):1246-1258. |
ZHANG C Y, MA Y Q, WANG X, et al. Progress in the bioconversion of biogas into sustainable aviation fuel[J]. Synthetic Biology Journal, 2023, 4(6):1246-1258. | |
16 | MCCORMICK A J, BOMBELLI P, BRADLEY R W, et al. Biophotovoltaics: oxygenic photosynthetic organisms in the world of bioelectrochemical systems[J]. Energy & Environmental Science, 2015, 8(5): 1627. |
17 | 朱华伟, 李寅. 生物光伏:环境友好的新型太阳能利用技术[J]. 合成生物学, 2023, 4(6):1259-1280. |
ZHU H W, LI Y. Biophotovoltaics: an environmentally friendly technology for solar energy utilization[J]. Synthetic Biology Journal, 2023, 4(6):1259-1280. | |
18 | 陈雅如, 曹英秀, 宋浩. 电活性微生物基因编辑与转录调控技术进展与应用[J]. 合成生物学, 2023, 4(6):1281-1299. |
CHEN Y R, CAO Y X, SONG H. Advances and applications of gene editing and transcriptional regulation in electroactive microorganisms[J]. Synthetic Biology Journal, 2023, 4(6):1281-1299. | |
19 | 郑庆祥. 希瓦氏菌Shewanella sp. MR-4在不同末端电子受体条件下的代谢通量分析[J]. 合成生物学, 2023, 4(6):1300-1320. |
ZHENG Q X. Metabolic flux analysis of Shewanella sp. MR-4 with different terminal electron receptors[J]. Synthetic Biology Journal, 2023, 4(6):1300-1320. |
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