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1.
It was found that the marine yeast strain YF07b could secrete a large amount of killer toxin against a pathogenic yeast strain WCY which could cause milky disease in Portunus trituberculatus.The marine yeast strain YF07b was identified to be Pichia anomala according to the results of routine yeast identification and 18S rDNA and ITS sequences.The gene encoding killer toxin in the marine yeast strain YF07b was amplified by PCR technology.After sequencing,the results show that an open reading frame,consisting of 1 281 bp,encoded a presumed protein of 427 amino acids.The sequence of the cloned gene was found to have 99% match with that of the gene encoding killer toxin in Pichia anomalas strain K.A signal peptide including 17 amino acids appeared in the N-terminal domain of the killer toxin.Therefore,the mature protein consisted of 410 amino acids,its molecular mass was estimated to be 47.4 ku and its isoelctronic point was 4.5.  相似文献   

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An agarase gene containing 1 302 bp was cloned from Microbulbifer sp. AG1. It encoded a mature protein of 413 amino acids plus a 20-residue signal peptide. The recombinant enzyme without the signal peptide was expressed and purified from Escherichia coli BL21(DE3). When agarose was used as a substrate, the optimal temperature and pH for the enzyme were 60℃ and 7.5, respectively. The recombinant agarase showed excellent thermostability with 67% and 19% of residual activities after incubation at 50℃ and 60℃ for 1 h, respectively.Except SDS, the recombinant agarase had a relatively good resistance against the detected inhibitors, detergents and urea denaturant. Thin layer chromatography analysis and enzyme assay using p-nitrophenyl-α/β-Dgalactopyranoside revealed that the recombinant agarase was a β-agarase that degraded agarose into neoagarotetraose as the main end product. The enzymatic hydrolysis products with different degree of polymerization exhibited the antioxidant activities.  相似文献   

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The authors have isolated and characterized a novel serine palmitoyltransferase(SPT)-like gene in marine Emiliania huxleyi virus(EhV-99B1).The open-reading frame(ORF) of EhV99B1-SPT encoded a protein of 496 amino acids with a calculated molecular mass of 96 kDa and Ip 6.01.The results of sequence analysis showed that there was about 31%-45% identity in amino acid sequence with other organisms.The maximum likelihood phylogenetic tree suggested that the EhV99B1-SPT gene possibly horizontally transferred from the eukaryote.Hydrophobic profiles of deduced amino acid sequences suggested a hydrophobic,globular and membrane-associated protein with five transmembrane domains(TMDs) motifs.Several potential N-linked glycosylation sites were presented in SPT.These results suggested that EhV99B1-SPT was an integral endoplasmic reticulum membrane protein.Despite lower sequence identity,the secondary and three-dimensional structures predicted showed that the "pocket" structure element composed of 2α-helices and 4βsheets was the catalytic center of this enzyme,with a typical conserved "TFTKSFG" active site in the N-terminal region and was very close to those of prokaryotic organisms.However,the N-terminal domain of EhV99B1-SPT most closely resembled the LCB2 catalysis subunit and the C-terminal domain most closely resembled the LCB1 regulatory subunit of other organisms which together formed a spherical molecule.This "chimera" was highly similar to the prokaryotic homologous SPT.For a functional identification,the EhV99B1-LCB2 subunit gene was expressed in Escherichia coli,which resulted in significant accumulation of new sphingolipid in E.coli cells.  相似文献   

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A high quality cDNA library was constructed from the brown alga Laminaria japonica,with the titer of 1.2×10 5 pfu/ml.The average insert size of the cDNA library is about 1.6 kb.From the cDNA library,591 cDNA clones were randomly selected and sequenced.As a result,574 EST(expressed sequence tag) sequences were generated.All of the 574 ESTs were submitted to the dbEST database section of GenBank with the accession numbers from CX942625 to CX943198.The cDNA library was screened with a α-32 p labeled 453 bp T P S gene probe,which is a partial sequence yielded from Porphyra yezoensis.Four positive cDNA clones were screened and the sequencing data showed that these four cDNA clones covered majority of L.japonica TPS cDNA sequence.After PCR amplification,sequencing and assembling,the entire ORF(open reading frame) sequence of the T P S gene was obtained,which was named LjTPS.LjTPS encodes a protein containing 908 amino acids with a calculated molecular mass of 101 674 Daltons.The LjTPS gene was successfully expressed in E.coli and rice.The LjTPS gene has potential application both in plant breeding to stress tolerance and in deciphering the T P S gene function and mechanism to stress tolerance.  相似文献   

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Fructose-1,6-bisphosphatase(FBPase) is one of the key enzymes in Calvin circle and starch biosynthesis. In this study, the full-length of cpFBPase gene from Pyropia haitanensis was cloned by using rapid amplification of cDNA ends(RACE) technology. The nucleotide sequence of PhcpFBPase consists of 1 400 bp, including a 5′ untranslated region(UTR) of 92 bp, a 3′?UTR of 69 bp, and an open reading frame(ORF) of 1 236 bp, which can be translated into a 412-amino-acid putative peptides with a molecular weight of 44.3 kDa and a theoretical pI of 5.23. Multiple sequence alignment indicated that the protein belonged to the chloroplast FBPase enzyme. Phylogenetic analysis showed that the protein assembled with the cpFBPase of a thermal tolerant unicellular red micro-algae Galdieria sulphuraria. Expression patterns analyzed by qRT-PCR revealed that the expression of PhcpFBPase gene in the thallus phage was 7-fold higher than in the conchocelis phage, which suggested the different mechanisms of inorganic carbon utilization among the different life phages of P. haitanensis. And the different response modes of PhcpFBPase mRNA levels to high temperature and desiccation stress indicated that PhcpFBPase played an important role in responsing to abiotic stress.  相似文献   

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通过已构建的泥蚶血液cDNA文库,克隆得到泥蚶Tg-HbIIA基因全长cDNA序列,对其进行生物信息学、组织表达及免疫相关分析。结果表明,泥蚶Tg-HbIIA cDNA全长731bp,包含63bp5′非编码区(5′-UTR),246bp3′非编码区(3′-UTR),开放阅读框450bp,编码150个氨基酸;其氨基酸序列与毛蚶(Scapharca kagoshimensis)和不等壳毛蚶(Scapharca inaequivalvis)的序列有较高的同源性,分别达到89%和88%;对其结构预测显示该蛋白具有血红蛋白功能域,含有10个潜在血红素结合位点。qRT-PCR检测结果显示:泥蚶不同组织部位中,Tg-HbIIA mRNA在血液表达量最大,其次为外套膜和鳃,表达量最低的是肝胰脏;在副溶血弧菌(Vibrio parahaemolyticu)、脂多糖、肽聚糖刺激后,泥蚶血液Tg-HbIIA mRNA表达量显著上调,表明Tg-HbIIA在贝类抗菌免疫防御中可能起重要作用,而Tg-HbIIA对不同致病因子免疫反应的灵敏度和表达时序存在一定差异。  相似文献   

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胰岛素样生长因子-I(Insulin-like growth factor-I,IGF-I)是影响脊椎动物生长、发育及代谢的重要调控因子。本研究采用RT-PCR和RACE技术,克隆了银鲳(Pampus argenteus)肝脏IGF-IcDNA序列,应用半定量RT-PCR、Real-time q PCR和原位杂交的方法检测了IGF-I的组织表达特性、在肝脏中的生长表达特性和IGF-I基因在肝脏中的定位。序列分析表明,IGF-I cDNA序列全长836bp,其5′非编码区128bp、3′非编码区92bp,开放阅读框(open reading frame,ORF)605bp,由此推导IGF-I前体蛋白由201个氨基酸组成;前体肽由信号肽、成熟肽、E肽三部分组成,其中信号肽59个氨基酸,成熟肽68个氨基酸,E肽74个氨基酸;成熟肽由B、C、A、D四个区域组成,E肽分析表明,银鲳IGF-I属Ea-4型。同源性比较结果表明,银鲳与同目鲈形目鱼类的IGF-I编码序列同源性较高,为83.52%—91.40%;与哺乳类、鸟类和爬行类的同源性较低。半定量RT-PCR和Real-time q PCR组织特异性表达结果显示,IGF-I m RNA在肝脏组织中的表达量最高,显著高于其它组织,肾脏、心脏、肌肉、脑、鳃、小肠、卵巢次之,嗅球、脾脏和胃中表达较低;半定量RT-PCR和Real-time q PCR不同生长阶段表达结果显示,IGF-I m RNA在30—50g肝脏组织中表达量最高(P0.05);IGF-I m RNA在肝脏中的原位杂交定位结果显示,在肝脏细胞中均有表达,阳性信号主要位于细胞质中,靠近细胞边缘处信号较强。  相似文献   

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从微泡菌属AG1(Microbulbifer sp. AG1)克隆得到1302 bp大小的琼胶酶基因,该基因编码产物为一个成熟蛋白(413个氨基酸残基)外加一个信号肽(20个残基)。将不含信号肽片段的琼胶酶在E. coli BL21 (DE3)中进行了异源表达和纯化。使用琼脂糖作为底物,该重组琼胶酶的最适反应温度和pH分别为60℃和7.5。该重组酶表现出优良的热稳定性,在50℃和60℃下处理1 h,重组琼胶酶仍能分别保持67%和19%的残余酶活力。除了SDS,重组琼胶酶对于其他测试的抑制剂、去垢剂和尿素变性剂有着较好的抗性。利用薄层色谱和以对硝基苯-α/β-D-吡喃半乳糖苷为底物的酶活力分析结果表明,该重组琼胶酶为β型琼胶酶,它水解琼脂糖的主要终产物为新琼四糖,而且不同聚合度的酶解产物具有抗氧化活性。  相似文献   

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张美  刘萍  李吉涛  李健 《海洋与湖沼》2015,46(4):764-775
为研究脊尾白虾蜕皮抑制激素基因(MIH)在环境适应中的作用,本文采用RACE技术从蜕皮间期脊尾白虾眼柄中克隆获得MIH-like基因全长c DNA序列,命名为Ec MIH。该基因全长1218bp,包括360bp的开放阅读框,420bp的5'端非编码区和394bp的3'端非编码区;开放阅读框编码120个氨基酸,包括41个氨基酸组成的信号肽和79个氨基酸组成的成熟肽,预测蛋白分子量为13.71k Da,理论等电点p I为8.02。同源性比较分析发现,脊尾白虾MIH-like基因与日本沼虾和罗氏沼虾同源性最高,分别为87%和86%。荧光定量PCR分析结果表明,脊尾白虾MIH-like基因在眼柄中的表达量最高,在卵巢中的表达量最少,而在肝脏、肌肉、鳃和血细胞中不表达。环境胁迫后该基因具有明显的时序性。p H6.5胁迫后24h和48h,眼柄和腹神经节中MIH-like基因的表达量较对照组均显著增加(P0.05);4mg/L氨氮浓度组胁迫后12h和24h,眼柄和腹神经节中MIH-like基因的表达量较对照组均显著增加(P0.05);盐度39胁迫后12h和24h,眼柄和腹神经节中MIH-like基因的表达量较对照组均显著增加(P0.05)。本研究结果表明脊尾白虾mih基因参与了环境胁迫后的机体应激反应。  相似文献   

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白细胞介素10(Interleukin 10,IL-10)是一种抗炎细胞因子,可以抑制机体免疫反应。本研究经过分析大黄鱼基因组数据库发现了IL-10同源基因,并对其cDNA编码区序列和基因组DNA序列进行了克隆分析。大黄鱼IL-10(LycIL-10)基因由5个外显子和4个内含子构成,其序列全长1 869bp,其开放阅读框(ORF)长555bp,编码184个氨基酸,其N端的22个氨基酸残基为预测的信号肽,成熟肽由162个氨基酸残基组成,包含了脊椎动物IL-10标志性保守序列。LycIL-10的氨基酸序列同其他已知物种的IL-10氨基酸序列的一致性为26.49%~77.01%。Real-time PCR分析发现LycIL-10在检测的组织中为组成型表达,在脾脏和肌肉中转录水平相对较高。三联灭活细菌疫苗和聚肌苷酸胞苷酸(poly(I∶C))刺激后,大黄鱼头肾和脾脏中LycIL-10mRNA的转录水平会显著升高,表明LycIL-10可能参与抑制大黄鱼由细菌和病毒引起的炎症反应。  相似文献   

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采用RT-PCR和RACE技术克隆了大黄鱼胰岛素样生长因子-Ⅰ(IGF-Ⅰ)cDNA的全序列,序列全长2027bp,由57bp的5’非翻译区、1409bp的3’非翻译区和561bp的开放阅读框组成。序列分析表明,大黄鱼IGF-Ⅰ编码区包括信号肽、成熟肽(B、C、A、D)和E等6个区域的186个氨基酸,形成成熟肽时,信号肽和E区被切除,成熟肽分子量7.5kDa,等电点(pI)为7.76,成熟肽的B区和A区有6个保守的半胱氨酸残基,形成3对二硫键,起到了稳定IGF-Ⅰ三维结构的作用。与其它物种的IGF-Ⅰ比对后发现A、B区域比较保守,C、D区域保守性较差;E区域的分析结果表明,大黄鱼IGF-ⅠcDNA序列为Ea-4亚型。核苷酸同源性分析发现,大黄鱼IGF-ⅠcDNA与美国红鱼同源性最高,为99.47%;与斜带石斑鱼、金头鲷和褐牙鲆的同源性依次降低,分别为97.68%、97.50%和95.90%。  相似文献   

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本文测定了大黄鱼C3(L.c-C3)和C4(L.c-C4)基因的c DNA全序列。结果表明,L.c-C3和L.cC4序列全长分别为4962bp和5088bp,分别编码1653和1695个氨基酸,N端信号肽序列分别为23和19个氨基酸。推导的氨基酸序列结构分析表明大黄鱼C3和C4与已报道的补体C3、C4同样都具有在功能上比较重要的残基以及保守的硫酯区。分子进化分析表明,L.c-C3和L.c-C4分别与鮸鱼C3、C4的氨基酸同源性最高。实时荧光定量PCR结果显示,L.c-C3和L.c-C4在健康大黄鱼的肝脏、脾脏、肠、鳃、心脏、脑、肌肉和胃这8种组织中都有表达,其中肝脏的表达量最高。在大黄鱼胚胎不同发育时期(从2细胞期到初生仔鱼)中,L.c-C3在各个阶段没有明显的变化,而L.c-C4的表达量有明显升高。溶藻弧菌(Vibrio alginolyticus)侵染的大黄鱼肝脏和脾脏中,L.c-C3和L.c-C4的m RNA表达量均明显上调。该结果表明,大黄鱼肝组织C3和C4基因表达变化与溶藻弧菌的侵染密切相关,揭示了C3和C4在大黄鱼抗细菌免疫反应中具有重要的作用。  相似文献   

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文蛤(Meretrix meretrix)是我国重要的滩涂养殖贝类,病害严重影响文蛤增养殖业,研究文蛤的免疫机制有助于解决文蛤的病害问题。C型凝集素(C-type lectin)参与先天免疫,在识别病原相关分子模式和激活体液免疫因子等方面发挥重要作用。本研究检索已构建的文蛤全长cDNA 文库,经过Blast比对得到了文蛤C型凝集素1(Mm-Lec1)基因的全长cDNA序列。Mm-Lec1序列全长586 bp,5'和3'非翻译区(UTR)的长度分别为21 bp和79 bp,开放阅读框长度为486 bp,编码161个氨基酸,分子量为18.65 kD,理论等电点为4.98。预测的氨基酸序列中含有信号肽(Met1-Ser19)、糖识别结构域(CRD)和糖结合位点(QPN)。Mm-Lec1的三级结构是紧凑型,含有β片层结构。同源性分析结果表明,Mm-Lec1与其他物种C型凝集素相似度在20%~32%;邻接法(Neighbor-Joining, NJ)进化树分析结果表明,Mm-Lec1与紫贻贝CTL 6和栉孔扇贝CTL A聚为一支。实时荧光定量分析结果显示,Mm-Lec1在文蛤鳃、肝胰腺、闭壳肌、外套膜、性腺和血细胞中均表达,其中鳃表达量最高,血细胞次之,性腺中表达量最少;在鳗弧菌(Vibrio anguillarum)刺激实验中,6 h时Mm-Lec1在血细胞中的表达量最低,48 h表达量最高,暗示Mm-Lec1参与文蛤抵御细菌入侵的免疫过程。  相似文献   

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泛素结合酶(UbcE2)是蛋白泛素化过程中所必需的酶,在泛素转移和底物的特异性识别方面发挥着重要的作用。本实验利用RACE技术克隆获得了全长为993bp的松江鲈泛素结合酶E2-D2基因cDNA序列(命名为TfUbcE2-D2),其开放阅读框为444bp,编码147个氨基酸。通过SMART预测得知,TfUbcE2-D2含有一个UBCc结构域。同源比对结果表明该基因与其他物种的同源性为92.31%。实时荧光定量PCR显示,TfUbcE2-D2广泛表达于松江鲈各组织,在肾脏中的相对表达量最高,其次为鳃。鳗弧菌(Vibrio anguillarum)刺激后,TfUbcE2-D2在血液、脾脏、肝脏和鳃中表达均上调,其中,脾脏和鳃中的表达量上调约40倍。由以上实验结果推测,TfUbcE2-D2可能参与松江鲈的先天免疫防御。  相似文献   

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