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1.
【背景】朱鹮是我国国家一级保护动物,属于世界上最濒危的鸟类之一。对朱鹮肠道微生物的多样性和产胞外酶活性进行分析,可为朱鹮种群数量恢复提供思路。【目的】了解朱鹮肠道微生物的多样性,测定其产胞外酶活性。【方法】采用纯培养的方法获得朱鹮肠道微生物,通过革兰氏染色和生理生化鉴定,结合16S rRNA基因扩增和序列分析对细菌进行鉴定。使用水解圈法筛选产淀粉酶、蛋白酶、纤维素酶、脂肪酶的菌株。【结果】从人工喂养的朱鹮新鲜粪便中共分离到296株细菌,共计2个门11个属。变形菌门(Proteobacteria) 236株,占分离总数的79.73%,分别为:埃希氏菌属(Escherichia) 137株,占分离总数的46.28%;哈夫尼亚菌属(Hafnia) 39株,占分离总数的13.18%;变形菌属(Proteus) 28株,占分离总数的9.46%;柠檬酸杆菌属(Citrobacter) 23株,占分离总数的7.77%;气单胞菌属(Aeromonas) 6株,占分离总数的2.03%;肠杆菌属(Enterobacter) 1株,占分离总数的0.34%;志贺菌属(Shigella) 1株,占分离总数的0.34%;克雷伯菌属(Klebsiella) 1株,占分离总数的0.34%。厚壁菌门(Firmicutes) 60株,占分离总数的20.27%,分别为:肠球菌属(Enterococcus) 33株,占分离总数的11.15%;库特氏菌属(Kurthia) 14株,占分离总数的4.73%;芽孢杆菌属(Bacillus) 13株,占分离总数的4.39%。优势菌群为变形菌门(Proteobacteria)中的埃希氏菌属(Escherichia),占细菌总数的46.28%。经过生理生化鉴定,每个菌株生理生化鉴定出的种属与各自的16S rRNA基因鉴定出的种属相一致。产酶活力分析结果显示有238株产蛋白酶、25株产脂肪酶、24株产淀粉酶、15株产纤维素酶,分别占分离总数的80.41%、8.45%、8.11%和5.07%。【结论】朱鹮肠道微生物分离出的细菌可分为2门11属,优势菌群为变形菌门(Proteobacteria)中的埃希氏菌属(Escherichia),占细菌总数的46.28%;产酶活性分析显示,80.41%的菌株具有产蛋白酶能力。  相似文献   

2.
【背景】杜比亚蟑螂(Blaptica dubia)可用于活体饲料、化妆品和医药保健品的生产,其肠道菌的研究对杜比亚蟑螂的饲养和肠道菌资源的开发与利用都十分重要。【目的】揭示杜比亚蟑螂肠道可培养菌的种类,筛选具有产消化酶功能的菌株,为理解肠道菌对宿主的影响机理及功能菌株的利用提供科学依据和研究材料。【方法】采用体外培养法获得杜比亚蟑螂肠道菌,结合形态学和分子生物学方法进行鉴定;用水解圈法分别筛选产纤维素酶、蛋白酶、脂肪酶和淀粉酶菌株。【结果】在杜比亚蟑螂肠道中共分离出4属7种细菌,其中芽孢杆菌属(Bacillus)2种,沙雷氏菌属(Serratia)和柠檬酸杆菌属(Citrobacter)各2种,肠球菌属(Enterococcus)1种。从获得的20个菌株中筛选出10个具有产消化酶功能的菌株。其中,芽孢杆菌属的菌株D6、D12和D20具有产纤维素酶、蛋白酶、淀粉酶及脂肪酶4种消化酶的功能;沙雷氏菌属的菌株D3、D7、D9、D11和D15具有产纤维素酶、蛋白酶和脂肪酶3种消化酶的能力;柠檬酸杆菌属的菌株D5具有产纤维素酶的功能;肠球菌属的菌株D17具有产蛋白酶的能力。【结论】杜比亚蟑螂肠道多种细菌具有产消化酶帮助降解大分子营养物质的功能,可通过协助食物消化影响宿主健康。菌株D12、D7和D11分别具有最强产纤维素酶、蛋白酶和脂肪酶的能力,是可进一步开发利用的肠道功能菌株资源。  相似文献   

3.
【背景】马蜂(Vespa mandarinia Smith)可以防治多种田间害虫,还具有药用价值,其肠道菌群结构和功能还有待研究。【目的】获得马蜂肠道可培养细菌并筛选出具有产消化酶功能的菌株,为理解肠道菌对宿主的影响机理及功能菌株的利用提供科学依据和研究材料。【方法】采用传统细菌分离培养法获得马蜂肠道菌,结合形态学以及16S rRNA基因序列分析进行鉴定;利用水解圈法分别筛选产蛋白酶、脂肪酶、淀粉酶和纤维素酶菌株;通过测量水解圈D与菌落直径d的比值,比较不同细菌的产酶能力。【结果】在马蜂肠道中共分离出6属10种细菌,其中芽孢杆菌属5种,肠球菌属、葡萄球菌属、明串珠菌属、乳球菌属和不动杆菌属各1种。从获得的61个菌株中筛选出6个具有产消化酶功能的菌株。其中,苏云金芽孢杆菌V44具有产蛋白酶、淀粉酶、脂肪酶和纤维素酶4种消化酶的能力;粪肠球菌V6具有产淀粉酶、蛋白酶和脂肪酶3种消化酶的能力;蜡样芽孢杆菌V43具有产蛋白酶、淀粉酶和纤维素酶3种消化酶的能力;粪肠球菌V20、蜡样芽孢杆菌V19和维德曼氏芽孢杆菌V22均具有产蛋白酶的能力。【结论】马蜂肠道细菌资源较丰富,部分有产消化酶的功能,可帮助马蜂消化食物,对宿主健康有一定影响。本研究筛选的6个菌株都能产蛋白酶,其中菌株V43和V44分别具有最强产淀粉酶和脂肪酶的能力,是可进一步开发利用的肠道功能菌株资源。  相似文献   

4.
【背景】花生根际分布着丰富的微生物类群,分离筛选多种功能的高效微生物是研发高效复合菌肥的基础。【目的】从花生根际土壤及根表分离微生物,分析可培养微生物的多样性,筛选高效解有机磷和无机磷、产吲哚乙酸(indole-3-acetic acid, IAA)和铁载体功能的菌株,为研发花生微生物菌肥打下基础。【方法】利用稀释涂布法,从采自山东省栖霞市、平度市、烟台市莱山区 3个样点的花生根际土、根表样品中分离微生物,基于16S rRNA基因序列对其进行系统发育分析,并通过初筛和复筛筛选高效解磷、产IAA和铁载体的菌株。【结果】共分离、纯化、保藏147株菌,其中75株分离自根际土壤,72株分离自根表样品。系统发育分析表明所有的菌分布于放线菌门(Actinomycetota)、芽孢杆菌门(Bacillota)、拟杆菌门(Bacteroidota)和假单胞菌门(Pseudomonadota)这4个门的40个属,优势属为链霉菌属(Streptomyces, 21.77%)、芽孢杆菌属(Bacillus, 16.33%);根表样品微生物的多样性高于根际样品;共筛选到解有机磷菌株62株,短波单胞菌(Brevundimonas) YTU21021解有机磷能力最强为1.12 mg/L;解无机磷菌株31株,不动杆菌(Acinetobacter) YTU21009解无机磷能力最强为7.04 mg/L;产IAA的菌株63株,肠杆菌(Enterobacter) YTU21054产IAA量最高,达184.19 mg/L;产铁载体细菌7株,伯克氏菌(Burkholderia) YTU21051产铁载体能力最强,As/Ar为0.90。【结论】花生根际和根表样品中可培养微生物多样性较为丰富,本研究筛选到的高效功能菌丰富了花生根际功能微生物资源,为后续与高效根瘤菌联合研发花生复合微生物菌肥奠定了基础。  相似文献   

5.
研究了酒色着色菌(Chromatium vinosum DSM185)利用产酸克雷伯氏菌(Klebsiella oxytoca HP1)发酵产氢废液进行光发酵和暗发酵产氢的可行性,以达到对产氢底物的充分利用和对产氢废液的进一步处理。研究结果表明C.vinosum可以利用K.oxytoca的发酵废液进行光发酵产氢和暗发酵产氢。C.vinosum发酵产氢后废液中残余还原糖和主要有机酸(丁酸)的含量明显降低,发酵产氢的最佳pH为6.5,添加0.1%(W/W)NH4Cl能促进产氢。在光照条件下丁酸利用率可达54.38%,产氢量达36.97 mL/mg;在黑暗条件下丁酸利用率可达36.01%,产氢量达37.50mL/mg。  相似文献   

6.
从乌拉尔甘草健康植株的根茎叶中共分离到内生细菌98株,经初步鉴定芽孢杆菌属(Bacillus sp.)为优势种群,约占30%;从不同生长年份甘草的根、茎、叶组织中分离内生细菌种群密度从5.0×104 cfu/g~2.9×107 cfu/g鲜重不等。采用平板对峙方法筛选出6株对植物病原菌有明显体外拮抗活性的菌株,通过菌落、菌体形态观察、生理生化反应及16S rDNA序列分析,同时结合Biolog细菌自动鉴定系统验证,鉴定这6株拮抗菌分属萎缩芽孢杆菌(Bacillus atrophaeus)、多粘类芽孢杆菌(Paenibacillus polymyxa)、枯草芽孢杆菌(Bacillus subtilis)、Paenibacillus ehimensis。  相似文献   

7.
【背景】黏细菌是一类具有多细胞群体行为特征的高等原核生物,其对植物病原真菌和细菌的捕食特性使其在植物病害防治方面具有重要的应用潜力。【目的】探究乌鲁木齐天山大峡谷原始森林可培养黏细菌的多样性并分析其抗菌活性,为发掘黏细菌生防菌株奠定基础。【方法】以天山大峡谷原始森林采集的土样和腐木为分离材料,采用兔粪诱导法和被捕食菌诱导法从中分离纯化黏细菌菌株,结合形态学观察、生理生化测定和16S rRNA基因序列分析确定其分类地位,并以6种植物病原真菌[大丽轮枝菌(Verticillium dahliae)、尖孢镰刀菌萎蔫专化型(Fusarium oxysporum f. sp. vasinfectum)、拟轮枝链孢霉(Fusarium verticillioides)、立枯丝核菌(Rhizoctonia solani)、黄色镰刀菌(Fusarium culmorum)、细极链格孢菌(Alternaria tenuissima)]和1种植物病原细菌[梨火疫病菌(Erwinia amylovora)]为靶标菌,通过平板对峙法和菌苔捕食法测定其抗菌活性。【结果】从采集的样品中分离出70株菌株,经纯化后获得36株黏细菌纯培养物。经鉴定隶属于4个属,黏球菌属(Myxococcus) 30株、孢囊杆菌属(Cystobacter) 3株、珊瑚球菌属(Corallococcus) 2株和原囊菌属(Archangium) 1株。抗菌活性分析显示,本研究获得的36株黏细菌至少对2种植物病原真菌有抗菌活性,表现出广谱的抗真菌活性,初步筛选出一株菌株NSE37-1兼具广谱和高效抗真菌活性;供试的15株黏细菌对梨火疫病菌均具有捕食活性,初步筛选出一株对梨火疫病菌具有较强捕食能力的黏细菌菌株NSE25。【结论】天山大峡谷可培养黏细菌资源比较丰富,黏球菌属是该地区可培养黏细菌菌群中的优势菌。分离纯化出的黏细菌菌株均表现出广谱的抗植物病原菌活性,具有进一步研究和开发的潜在价值。  相似文献   

8.
脂肪酶可以催化甘油三酯水解成脂肪酸和甘油,已广泛应用在工业领域,而获得产酶微生物是研究的基础。采用油脂平板法筛选出1株脂肪酶产生菌。经16S rRNA序列分析可知,该菌株属于柠檬酸杆菌(Citrobacter werkman and Gillen)。单因素试验对其进行产酶条件优化,优化后产酶条件(g/L):淀粉2.0,KH2PO4 1.0,K2HPO4·3H2O 2.2,(NH4)2SO4 1.0,MgSO4·7H2O 0.1,牛肉膏2.0,橄榄油10.0 mL,pH 7.5,接种量1.5%(v/v),37 ℃培养43 h。获得最大酶活为384 U/mL,是优化前的13倍。可以利用该菌制备脂肪酶。  相似文献   

9.
[背景] 细菌可通过脂肪酸代谢途径耦合聚羟基脂肪酸酯(Polyhydroxyalkanoate,PHA)合成途径实现合成中长链PHA;其拉伸强度、玻璃化温度等加工特性均优于短链PHA,是未来工业化PHA材料的发展方向。[目标] 为了获得新的可代谢油类的产PHA细菌,使用3种分离策略从海洋沉积物中分离和鉴定细菌,并评估菌株产PHA的能力。[方法] 采集深圳大鹏湾近海沉积物样品;样品通过直接分离,5周连续培养分离,或10周连续提高盐度(3.5%-12.5%)和含油量(1%-10%)富集培养分离,纯化得到菌株;通过16S rRNA基因相似性及系统进化分析鉴定细菌分类地位,利用PHA聚合酶(PhaC)基因鉴定细菌合成PHA的能力;通过测定基因组框架图,分析细菌的PhaC类型、代谢通路及系统进化关系;通过气相色谱分析细菌产PHA的含量及组成。[结果] 从深圳大鹏湾近海底泥样品中分离得到96株细菌,phaC基因阳性率达38%,其中包含9个此前未通过产物证实可产PHA的属,包括尖球菌属(Acuticoccus)、海洋源菌属(Idiomarina)、盐芽孢杆菌属(Halobacillus)、微泡菌属(Microbulbifer)、海棍状菌属(Maritimibacter)、硝酸盐还原菌属(Nitratireductor)、公海橄榄菌属(Pelagibaca)、假海栖菌属(Pseudooceanicola)和海旋菌属(Thalassospira)。除了微泡菌属,其他8个属的细菌通过含油富集法分离获得,说明含油富集方法有利于发现新的产PHA细菌资源。此外,获得2株胞内PHA含量高的菌株。Nitratireductor aquimarinus SY-2-4在营养肉汤中培养可累积细胞干重35.0%的PHA;Roseibium aggregate SN13-21以丙酮酸盐为碳源,可累积细胞干重19.9%的PHA。[结论] 大鹏海域蕴藏着丰富的产PHA细菌资源,值得进一步挖掘研究。梯度增加含油量和盐度的富集方法有利于分离区系不同的产PHA细菌,适用于分离PHA资源。获得2株潜在PHA高产菌,未来将对菌株进行发酵优化研究。  相似文献   

10.
产氢产乙酸菌ZR-1 的分离鉴定及产酸特性   总被引:4,自引:0,他引:4  
采用改良的亨盖特厌氧操作技术, 从有机废水污泥中分离到一株耐低温高效产氢产乙酸菌ZR-1。经过对其形态学观察、生理生化特征研究及16S rRNA 序列比对, 初步鉴定为梭状芽胞杆菌属的乙二醇梭菌(Clostridium glycolicum)。通过单因子实验, 在厌氧条件下对该菌株的培养温度、pH、最适底物、金属离子的影响等产酸条件进行了优化。结果表明该菌株最适生长温度37 °C,最佳培养基初始pH 值8.5, 最适发酵底物丁酸盐, Mn2+对其产酸有一定的激活作用。最适培养条件下丁酸盐降解率达到12.7%, H2 含量达到了28.73%。  相似文献   

11.
亚热带4种森林凋落物量及其动态特征   总被引:6,自引:0,他引:6  
徐旺明  闫文德  李洁冰  赵晶  王光军 《生态学报》2013,33(23):7570-7575
通过对枫香林、樟树林、马尾松林、樟树—马尾松混交林4种森林生态系统的凋落物数量及组成进行为期1a的定位研究。结果表明,樟树—马尾松混交林的年凋落总量(4.30 t.hm-2)>枫香林(3.66 t.hm-2)>马尾松林(3.41 t.hm-2)>樟树林(3.26 t.hm-2)。各组分凋落物中,凋落叶占绝对优势(70%以上),表现为樟树—马尾松混交林(3.09 t.hm-2)>枫香林(2.78 t.hm-2)>马尾松林(2.46 t.hm-2)>樟树林(2.32 t.hm-2);凋落枝表现为樟树—马尾松混交林(0.73 t.hm-2)>樟树林(0.53 t.hm-2)>马尾松林(0.30 t.hm-2)>枫香林(0.22 t.hm-2);凋落果表现为马尾松林(0.37 t.hm-2)>樟树—马尾松混交林(0.17 t.hm-2)>枫香林(0.12 t.hm-2)>樟树林(0.09 t.hm-2);碎屑表现为枫香林(0.55 t.hm-2)>樟树林(0.33 t.hm-2)>樟树—马尾松混交林(0.31 t.hm-2)>马尾松林(0.27 t.hm-2)。枫香和樟树林年凋落量的最大值分别在10月(1.22 t.hm-2)和8月(0.58 t.hm-2),而马尾松林和混交林年凋落量的最大值都在11月(分别为0.77 t.hm-2和1.23 t.hm-2)。  相似文献   

12.
大亚湾基础生物生产力及潜在渔业生产量评估   总被引:3,自引:0,他引:3  
通过对大亚湾海域初级生产力及浮游动物次级生产力的现场调查数据,对该海域潜在渔业生产量及最大可持续渔获量进行了评估。结果表明,大亚湾春季及秋季初级生产力平均值分别为765.23 mgC.m-2.d-1和1786.33 mgC.m-2.d-1,浮游动物次级生产力春季及秋季平均值分别为175 mgC.m-2.d-1和679 mgC.m-2.d-1。采用Tait模式和Cushing模式估算的大亚湾潜在渔业产量分别为3.30万吨和4.78万吨。数据分析结果表明,基于基础生物生产力的评估方法很可能高估了该海区的实际渔业产量,这与基础生物群落结构的改变密切相关;高生物多样性及生态系统结构与功能的健康性是维持渔业资源产量与质量的重要基础。  相似文献   

13.
嗜碱性细菌在酶制剂生产中的应用   总被引:1,自引:1,他引:0  
嗜碱性菌是一类生长于碱性环境中的特殊微生物。自发现以来引起人们广泛重视,并在许多方面得到了应用。阐述了嗜碱性菌在酶制剂方面的应用和发展。  相似文献   

14.
The ability of a killer yeast (Pichia anomala, UCSC 25F) to produce toxin in vivo was demonstrated, for the first time, in tissues of normal and immunosuppressed experimentally infected mice by means of a fluorescent antibody technique and a killer toxin specific monoclonal antibody. The possible significance of the findings is discussed.  相似文献   

15.
Almeida  M.A.  Cunha  M.A.  Alcântara  F. 《Hydrobiologia》2002,(1):251-262
We intended to evaluate the relative contribution of primary production versus allochthonous carbon in the production of bacterial biomass in a mesotrophic estuary. Different spatial and temporal ranges were observed in the values of bacterioplankton biomass (31–273 g C l–1) and production (0.1–16.0 g C l–1 h–1, 1.5–36.8 mg C m–2 h–1) as well as in phytoplankton abundance (50–1700 g C l–1) and primary production (0.1–512.9 g C l–1 h–1, 1.5–512.9 mg C m–2 h–1). Bacterial specific growth rate (0.10–1.68 d–1) during the year did not fluctuate as much as phytoplankton specific growth rate (0.02–0.74 d–1). Along the salinity gradient and towards the inner estuary, bacterio- and phytoplankton biomass and production increased steadily both in the warm and cold seasons. The maximum geographical increase observed in these variables was 12 times more for the bacterial community and 8 times more for the phytoplankton community. The warm to cold season ratios of the biological variables varied geographically and according to these variables. The increase at the warm season achieved its maximum in the biomass production, particularly in the marine zone and at high tide (20 and 112 times higher in bacterial and phytoplankton production, respectively). The seasonal variation in specific growth rate was most noticeable in phytoplankton, with seasonal ratios of 3–26. The bacterial community of the marine zone responded positively – generating seasonal ratios of 1–13 in bacterial specific growth rate – to the strong warm season increment in phytoplankton growth rate in this zone. In the brackish water zone where even during the warm season allochthonous carbon accounted for 41% (on average) of the bacterial carbon demand, the seasonal ratio of bacterial specific growth rate varied from about 1 to 2. During the warm season, an average of 21% of the primary production was potentially sufficient to support the whole bacterial production. During the cold months, however, the total primary production would be either required or even insufficient to support bacterial production. The estuary turned then into a mostly heterotrophic system. However, the calculated annual production of biomass by bacterio- and phytoplankton in the whole ecosystem showed that auto- and heterotrophic production was balanced in this estuary.  相似文献   

16.
Consumption of NO by methanotrophic bacteria in pure culture and in soil   总被引:2,自引:0,他引:2  
Abstract The methanotrophs Methylomonas angile (type I) and Methylosinus trichosporium (type II) produced nitrite, nitrate and N2O during growth on methane, apparently by heterotrophic nitrification of ammonium. The methanotrophs were also able to consume NO but did not produce it. After incubation of soil from a drained paddy field in the presence of CH4 the numbers of methanotrophs increased from 105 to 107 per gram dry weigth. The thus enriched soil showed increased rates of NO consumption while rates of NO production did not change.  相似文献   

17.
Binkley D  Stape JL  Takahashi EN  Ryan MG 《Oecologia》2006,148(3):447-454
The release of carbon as CO2 from belowground processes accounts for about 70% of total ecosystem respiration. Insights about factors controlling soil CO2 efflux are constrained by the challenge of apportioning sources of CO2 between autotrophic tree roots (and mycorrhizal fungi) and heterotrophic microorganisms. In some temperate conifer forests, the reduction in soil CO2 efflux after girdling (phloem removal) has been used to separate these sources. Girdling stops the flow of carbohydrates to the belowground portion of the ecosystem, which should slow respiration by roots and mycorrhizae while heterotrophic respiration should remain constant or be enhanced by the decomposition of newly dead roots. Therefore, the reduction in CO2 efflux after girdling should be a conservative estimate of the belowground flux of C from trees. We tested this approach in two tropical Eucalyptus plantations. Tree canopies remained intact for more than 3 months after girdling, showing no reduction in light interception. The reduction in soil CO2 efflux averaged 16–24% for the 3-month period after girdling. The reduction in CO2 efflux was similar for plots with one half of the trees girdled and those with all of the trees girdled. Girdling did not reduce live fine root biomass for at least 5 months after treatment, indicating that large reserves of carbohydrates in the root systems of Eucalyptus trees maintained the roots and root respiration. Our results suggest that the girdling approach is unlikely to provide useful insights into the contribution of tree roots and heterotrophs to soil CO2 efflux in this type of forest ecosystem.  相似文献   

18.
The role of photosynthetic sulphur bacteria as primary producers in monomictic Lake Vechten (The Netherlands) is described. Lake Vechten has a surface area of 4.7 ha, a maximum depth of 11.9 m and a mean depth of 6 m.Bacterial populations, appearing at the boundary layer of the oxidative and reductive zone from early June till late October, were composed of cyanobacteria, Chromatiaceae and green and brown coloured Chlorobiaceae. Predominating genera were Synechococcus, Chloronema, Chromatium and Thiopedia. The photosynthetic sulphur bacteria accounted for a primary production rate of 13.6–106.1 mg C.m–2 day–1, which corresponded to 3.9–17.5% of total daily productivity in the pelagial zone. The percentage of photosynthetic bacterial production of total annual planktonic primary production calculated for the entire pelagial zone, taking into account compensation for decreasing volume of lower strata, was 3.6% (i.e. 127 against a total production of 3 510 kg C.lake–1yr–1).  相似文献   

19.
The gastrointestinal nematode Ostertagia gruehneri is a parasite of reindeer that can have a significant impact on host population dynamics. To gain a better understanding of the population dynamics of O. gruehneri, we parameterise a model for its fecundity that describes the observed seasonal and intensity dependent pattern of faecal egg counts well. The faecal egg count model is combined with a model for the seasonal faecal production rate of Svalbard reindeer to obtain quantitative estimates of the fecundity of O. gruehneri. The model is used to evaluate the relative contribution to pasture contamination of variation in the abundance of O. gruehneri and variation in reindeer densities. It is concluded that due to the intensity dependence in nematode fecundity, variation in reindeer population densities is likely to be the most important of these factors for pasture contamination.  相似文献   

20.
张山  胡萌  何永志  董志扬 《微生物学报》2021,61(8):2250-2263
极端环境微生物定义了生命的边界。为了适应各种极端环境,极端环境微生物通过合成许多独特的活性化合物来保护自己。四氢嘧啶就是其中一种代表性的保护性物质。它最早是从极端嗜盐菌中发现的,作为调节细胞渗透压的一类相容性溶质,可以帮助微生物适应高盐等恶劣环境。研究发现四氢嘧啶不仅是一种重要的渗透压调节剂,还是一种高效的生物保护剂,可以帮助蛋白、核酸、生物膜乃至整个细胞对抗高温、干燥、冷冻和辐射等多种逆境。因此,四氢嘧啶在生物保护、生物医药和生物科技等众多领域展现出广阔的商业化应用前景。随着合成生物学和代谢工程技术的快速发展,传统的嗜盐菌四氢嘧啶生产方法已逐步被产率更高、环境更友好的生物工程菌及技术所取代。本文围绕四氢嘧啶的微生物合成及其应用研究进行综述,为后续四氢嘧啶的开发和应用提供重要参考。  相似文献   

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