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环境胁迫对人脑发育的影响及其机制 被引量:1
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作者 刘芳妤 赵江华 +1 位作者 王银山 黄乾生 《科学通报》 EI CAS CSCD 北大核心 2024年第24期3532-3546,共15页
遗传和环境因素共同调节人脑发育过程.环境包括社会环境和自然环境,对人脑发育的影响是多层次、多方面的.近年来,科学家对环境与人脑发育关系的探讨逐渐深入.社会环境中社会经济地位、社会接触和社会文化背景等对人脑发育的作用逐渐被重... 遗传和环境因素共同调节人脑发育过程.环境包括社会环境和自然环境,对人脑发育的影响是多层次、多方面的.近年来,科学家对环境与人脑发育关系的探讨逐渐深入.社会环境中社会经济地位、社会接触和社会文化背景等对人脑发育的作用逐渐被重视;自然环境中大气颗粒物、重金属及各类新污染物等对人脑发育的胁迫也日益受到关注.社会环境和自然环境共同定义了不同地区的特征环境,故不同地区儿童脑发育所受到的环境影响有所不同.本综述归集流行病学和毒理学数据,提供不同环境因子在分子水平、器官水平以及个体水平上对人脑发育过程产生干扰的多层次证据,总结不同环境因素对人脑发育的作用机制和效应,将目光集中在环境神经科学视角下多重环境因素对人脑发育的综合影响.截至目前,相关研究大多聚焦于单一环境因素暴露对人脑发育的效应,这与现实暴露环境中多重因素复合效应有所差距.今后,需要进一步厘清人脑发育与环境间复杂的互作关系,突破多重环境胁迫对人脑发育的研究体系;在厘清单一污染物对人脑发育作用效果的前提下,利用大数据分析和叠加因子修正等方法构建综合模型,量化复杂环境体系对人脑发育的综合影响,为环保政策的制定和公共健康干预提供科学支撑. 展开更多
关键词 人脑发育 社会环境 自然环境 环境暴露 作用机制
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Multivariate modular metabolic engineering and medium optimization for vitamin B_(12)production by Escherichia coli
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作者 Feitao Chen Huan Fang +6 位作者 jianghua zhao Pingtao Jiang Huina Dong Ying zhao Huiying Wang Tongcun Zhang Dawei Zhang 《Synthetic and Systems Biotechnology》 SCIE CSCD 2024年第3期453-461,共9页
Vitamin B_(12)is a complex compound synthesized by microorganisms.The industrial production of vitamin B_(12)relies on specific microbial fermentation processes.E.coli has been utilized as a host for the de novo biosy... Vitamin B_(12)is a complex compound synthesized by microorganisms.The industrial production of vitamin B_(12)relies on specific microbial fermentation processes.E.coli has been utilized as a host for the de novo biosynthesis of vitamin B_(12),incorporating approximately 30 heterologous genes.However,a metabolic imbalance in the intricate pathway significantly limits vitamin B_(12)production.In this study,we employed multivariate modular metabolic engineering to enhance vitamin B_(12)production in E.coli by manipulating two modules comprising a total of 10 genes within the vitamin B_(12)biosynthetic pathway.These two modules were integrated into the chromosome of a chassis cell,regulated by T7,J23119,and J23106 promoters to achieve combinatorial pathway optimization.The highest vitamin B_(12)titer was attained by engineering the two modules controlled by J23119 and T7 promoters.The inclusion of yeast powder to the fermentation medium increased the vitamin B_(12)titer to 1.52 mg/L.This enhancement was attributed to the effect of yeast powder on elevating the oxygen transfer rate and augmenting the strain’s isopropyl-β-D-1-thiogalactopyranoside(IPTG)tolerance.Ultimately,vitamin B_(12)titer of 2.89 mg/L was achieved through scaled-up fermentation in a 5-liter fermenter.The strategies reported herein will expedite the development of industry-scale vitamin B_(12)production utilizing E.coli. 展开更多
关键词 Vitamin B_(12) Multivariate modular metabolic engineering E.COLI Organic nitrogen sources Fed-batch fermentation
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