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Producing Designer Oils in Industrial Microalgae by Rational Modulation of Co-evolving Type-2 Diacylglycerol Acyltransferases

摘要Microalgal oils,depending on their degree of unsaturation,can be utilized as either nutritional supplements or fuels;thus,a feedstock with genetically designed and tunable degree of unsaturation is desirable to maximize process efficiency and product versatility.Systematic profiling of ex vivo (in yeast),in vitro,and in vivo activities of type-2 diacylglycerol acyltransferases in Nannochloropsis oceanica (NoDGAT2s or NoDGTTs),via reverse genetics,revealed that NoDGAT2A prefers saturated fatty acids (SFAs),NoDGAT2D prefers monounsaturated fatty acids (MUFAs),and NoDGAT2C exhibits the strongest activity toward polyunsaturated fatty acids (PUFAs).As NoDGAT2A,2C,and 2D originated from the green alga,red alga,and eukaryotic host ancestral participants of secondary endosymbiosis,respectively,a mechanistic model of oleaginousness was unveiled,in which the indigenous and adopted NoDGAT2s formulated functional complementarity and specific transcript abundance ratio that underlie a rigid SFA:MUFA:PUFA hierarchy in triacylglycerol (TAG).By rationally modulating the ratio of NoDGAT2A.2C.2D transcripts,a bank of N.oceanica strains optimized for nutritional supplement or fuel production with a wide range of degree of unsaturation were created,in which proportion of SFAs,MUFAs,and PUFAs in TAG varied by 1.3-,3.7-,and 11.2-fold,respectively.This established a novel strategy to simultaneously improve productivity and quality of oils from industrial microalgae.

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作者单位 Single-Cell Center,CAS Key Laboratory of Biofuels and Shandong Laboratory of Energy Genetics,Qingdao Institute of BioEnergy and Bioprocess Technology,Chinese Academy of Sciences,Qingdao,Shandong 266101,China;University of Chinese Academy of Sciences,Beijing 100049,China [1] Institute of Marine and Environmental Technology,University of Maryland Center for Environmental Science and University of Maryland,Baltimore County,Baltimore,MD 21202,USA [2] Core Laboratory,Qingdao Institute of BioEnergy and Bioprocess Technology,Chinese Academy of Sciences,Qingdao,Shandong 266101,China;University of Chinese Academy of Sciences,Beijing 100049,China [3] Diatom Biology Group,Institute of Hydrobiology,Chinese Academy of Sciences,Wuhan,Hubei 430072,China;University of Chinese Academy of Sciences,Beijing 100049,China [4] Center for Microalgal Biotechnology and Biofuels,Institute of Hydrobiology,Chinese Academy of Sciences,Wuhan,Hubei 430072,China;University of Chinese Academy of Sciences,Beijing 100049,China [5] Institute of Marine and Environmental Technology,University of Maryland Center for Environmental Science and University of Maryland,Baltimore County,Baltimore,MD 21202,USA;Institute for Food and Bioresource Engineering and Department of Energy and Resource Engineering,College of Engineering,Peking University,Beijing 100871,China [6]
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发布时间 2018-03-21
基金项目
We are grateful to support from the Natural Science Foundation of China(31425002,31600059,31571807,and 31401116); the Chinese Academy of Sciences(KSZD-EW-Z-017 and ZDRW-ZS-2016-3); the Natural Science Foundation of Shandong(ZR2015CQ003); the U.S.National Science Foundation(CBET-1511939); the U.S.Office of Naval Research(N00014-15-1-2219)
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分子植物(英文版)

分子植物(英文版)

2017年10卷12期

1523-1539页

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