私密直播全婐app免费大渔直播,国产av成人无码免费视频,男女同房做爰全过程高潮,国产精品自产拍在线观看

相關鏈接
聯系方式
  • 通信地址:福建省福州市倉山區上三路32號
  • 郵編:350117
  • 電話:0591-22868205
  • 傳真:
  • Email:yhhan@fjnu.edu.cn
當前位置:> 首頁 > 論文著作 > 正文
Insights into bacterial cellulose biosynthesis from different carbon sources and the associated biochemical transformation pathways in Komagataeibacter sp. W1
作者:Shan-Shan Wang, Yong-He Han, Jia-Lian Chen, Da-Chun Zhang, Xiao-Xia Shi, Yu-Xuan Ye, Deng-Long Chen, Min Li
關鍵字:Bacterial cellulose; Komagataeibacter; carbon sources; genome sequencing; metabolic pathway
論文來源:期刊
具體來源:Polymers
發表時間:2018年
Cellulose is the most abundant and widely used biopolymer on earth and can be produced by both plants and micro-organisms. Among bacterial cellulose (BC)-producing bacteria, the strains in genus Komagataeibacterhave attracted wide attention due to their particular ability in furthering BC production. Our previous study reported a new strain of genus Komagataeibacter from a vinegar factory. To evaluate its capacity for BC production from different carbon sources, the present study subjected the strain to media spiked with 2% acetate, ethanol, fructose, glucose, lactose, mannitol or sucrose. Then the BC productivity, BC characteristics and biochemical transformation pathways of various carbon sources were fully investigated. After 14 days of incubation, strain W1 produced 0.040–1.529 g L?1 BC, the highest yield being observed in fructose. Unlike BC yields, the morphology and microfibrils of BCs from different carbon sources were similar, with an average diameter of 35–50 nm. X-ray diffraction analysis showed that all membranes produced from various carbon sources had 1–3 typical diffraction peaks, and the highest crystallinity (i.e., 90%) was found for BC produced from mannitol. Similarly, several typical spectra bands obtained by Fourier transform infrared spectroscopy were similar for the BCs produced from different carbon sources, as was the Iα fraction. The genome annotation and Kyoto Encyclopedia of Genes and Genomes analysis revealed that the biochemical transformation pathways associated with the utilization of and BC production from fructose, glucose, glycerol, and mannitol were found in strain W1, but this was not the case for other carbon sources. Our data provides suggestions for further investigations of strain W1 to produce BC by using low molecular weight sugars and gives clues to understand how this strain produces BC based on metabolic pathway analysis.
主站蜘蛛池模板: 深圳市| 布尔津县| 汶上县| 天津市| 广安市| 商都县| 安溪县| 巴南区| 昌都县| 马边| 柏乡县| 科技| 仙桃市| 阿图什市| 石景山区| 轮台县| 前郭尔| 富蕴县| 青河县| 乐业县| 韶关市| 淮南市| 辽宁省| 五指山市| 恩平市| 衡南县| 高唐县| 聂拉木县| 拉孜县| 宁南县| 宁乡县| 大庆市| 买车| 江门市| 天镇县| 汉中市| 隆安县| 三门县| 花莲县| 西林县| 沧源|