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酿酒酵母产脂肪酸乙酯代谢途径改造 被引量:1
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作者 姜慧 张利华 +1 位作者 夏媛媛 陈献忠 《食品与生物技术学报》 CAS CSCD 北大核心 2022年第2期94-105,共12页
脂肪酸乙酯(fatty acid ethyl ester,FAEE)是目前最具有潜力的新型能源,微生物细胞工厂生产FAEE比目前普遍的化学合成方法具有诸多优势,例如对环境污染小、生产成本低等。酿酒酵母具备良好的产乙醇和脂肪酰辅酶A的能力,我们试图通过改... 脂肪酸乙酯(fatty acid ethyl ester,FAEE)是目前最具有潜力的新型能源,微生物细胞工厂生产FAEE比目前普遍的化学合成方法具有诸多优势,例如对环境污染小、生产成本低等。酿酒酵母具备良好的产乙醇和脂肪酰辅酶A的能力,我们试图通过改造酿酒酵母代谢途径来提高FAEE的前体——脂肪酰辅酶A的产量。通过引入根据酿酒酵母密码子优化的外源基因WS2(蜡酯合成酶基因)构建一条可以利用葡萄糖为底物、经过一系列反应生成FAEE的代谢通路。富集脂肪酰辅酶A需要进一步改造分支途径,例如阻断甾醇酯途径(ΔARE1、ΔARE2),三酰基甘油途径(ΔDGA1,ΔLRO1)和β氧化途径(ΔPXA2)来减少脂肪酰辅酶A的分流,从而相应的富集脂肪酰辅酶A。结果表明:3个途径的敲除大大增加了FAEE的产量,相较于在原始出发菌株BY4741中表达WS2即菌株BYW2增加了9倍,摇瓶产量达到11.72 mg/L。由于目的产物FAEE产量较低,在摇瓶发酵阶段进行了发酵优化,对是否添加乙醇和菜籽油、发酵时间以及乙醇添加模式这3个因素进行优化。结果表明:添加乙醇和菜籽油明显提升了FAEE产量,最佳发酵时间为60 h,乙醇添加模式为从20 h开始每间隔6 h补加发酵体积的2%,此时FAEE产量达到最高,为144.4 mg/L,是未优化前FAEE产量的12.3倍,是出发菌株BY4741中FAEE产量的480倍。为进一步提升FAEE产量,采用发酵罐发酵并对比了尿嘧啶缺陷菌株BYD5W2和尿嘧啶未缺陷菌株BYD5W2*的FAEE产量的差异,结果显示尿嘧啶缺陷菌株BYD5W2的FAEE最高产量为0.618 g/L,尿嘧啶未缺陷菌株BYD5W2*的FAEE最高产量为1.35 g/L,是目前报道的利用酿酒酵母产FAEE产量中较高的。 展开更多
关键词 酿酒酵母 脂肪酸乙酯 ARE1 are2 DGA1 LRO1 PXA2 蜡酯合成酶基因WS2 基因敲除 基因整合
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Regulation of nitrogen starvation responses by the alarmone(p)ppGpp in rice 被引量:1
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作者 Hanwen Li Jinqiang Nian +16 位作者 Shuang Fang Meng Guo Xiahe Huang Fengxia Zhang Qing Wang Jian Zhang Jiaoteng Bai Guojun Dong Peiyong Xin Xianzhi Xie Fan Chen Guodong Wang Yingchun Wang Qian Qian Jianru Zuo Jinfang Chu Xiaohui Ma 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2022年第5期469-480,共12页
Nitrogen is an essential macronutrient for all living organisms and is critical for crop productivity and quality.In higher plants,inorganic nitrogen is absorbed through roots and then assimilated into amino acids by ... Nitrogen is an essential macronutrient for all living organisms and is critical for crop productivity and quality.In higher plants,inorganic nitrogen is absorbed through roots and then assimilated into amino acids by the highly conserved glutamine synthetase/glutamine:2-oxoglutarate aminotransferase(GS/GOGAT)cycle.How nitrogen metabolism and nitrogen starvation responses of plants are regulated remains largely unknown.Previous studies revealed that mutations in the rice ABNORMAL CYTOKININ RESPONSE1(ABC1)gene encoding Fd-GOGAT cause a typical nitrogen deficiency syndrome.Here,we show that ARE2(for ABC1 REPRESSOR2)is a key regulator of nitrogen starvation responses in rice.The are2 mutations partially rescue the nitrogen-deficient phenotype of abc1 and the are2 mutants show enhanced tolerance to nitrogen deficiency,suggesting that ARE2 genetically interacts with ABC1/Fd-GOGAT.ARE2 encodes a chloroplast-localized Rel A/Spo T homolog protein that catalyzes the hydrolysis of guanosine pentaphosphate or tetraphosphate(p)pp Gpp,an alarmone regulating the stringent response in bacteria under nutritional stress conditions.The are2 mutants accumulate excessive amounts of(p)pp Gpp,which correlate with lower levels of photosynthetic proteins and higher amino acid levels.Collectively,these observations suggest that the alarmone(p)pp Gpp mediates nitrogen stress responses and may constitute a highly conserved mechanism from bacteria to plants. 展开更多
关键词 RICE Stringent response Nitrogen starvation response (p)ppGpp are2
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