简介:以便获得米饭幼仔圆锥花序proteome的高分辨率的electrophorogram,我们评估了通常使用在的各种各样的协议二维(2D)蛋白质的polyacrylamide胶化电气泳动(页)包括染色协议的胶化,使不能调动的pH坡度(IPG)的pH范围脱衣并且样品装载数量。结果证明染色协议使用的银敏化包含冰川的醋酸,钠醋酸盐和钠thiosulfate的答案(在1988由Heukeshoven和Dernick报导了)并且染色方法使用答案包含的Coomassie灿烂的蓝色G-250,铵硫酸盐和磷的酸(在2010由粉红色的等报导了)表明了优异染色效果。另外,当有5-8的pH范围的IPG胶化长带被使用时,我们也与4-7的pH范围证明更高的分辨率被完成,与那相比。最后,最佳的装载数量作为与染色协议的银硝酸盐在联合与pH5-8使用17厘米长的非线性的IPG长带的130g被决定。评估结果将在年轻米饭颖果的proteome分析是有用的。
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简介:【背景】2,4-D二甲胺盐是一种选择内吸性除草剂,用于清除果园、牧场、水域等环境中的藜、苋等阔叶杂草。本文明确了2,4-D二甲胺盐在防除鱼塘杂草过程中对淡水鱼类的毒性。【方法】采用半静态法测试了2,4-D二甲胺盐对草鱼、鲢鱼和鲫鱼的急性毒性,并明确了2,4-D二甲胺盐对草鱼、鲢鱼和鲫鱼的安全浓度。【结果】随着供试鱼苗在药液中暴露时间的延长,LC50。值逐渐减小。2,4-D二甲胺盐对草鱼、鲢鱼和鲫鱼的96hLC50值分别为369.27、339.20和438.47mg·L^-1。2,4-D二甲胺盐对草鱼、鲢鱼和鲫鱼的安全浓度分别为36.93、33.92和43.85mg·L^-1。【结论与意义】2,4-D二甲胺盐对草鱼、鲢鱼和鲫鱼表现低毒。本研究为合理使用2,4一D二甲胺盐防除水生杂草提供了依据。
简介:Circulargenomes,beingthelargestproportionofsequencedgenomes,playanimportantroleingenomeanalysis.However,traditional2Dcircularmaponlyprovidesanoverviewandannotationsofgenomebutdoesnotofferfeature-basedcomparison.Forremedyingtheseshortcomings,wedeveloped3DGenomeTuner,ahybridofcircularmapandcomparativemaptools.Itscapabilityofviewingcomparisonsbetweenmultiplecircularmapsina3Dspaceoffersgreatbenefitstothestudyofcomparativegenomics.Theprogramisfreelyavailable(underanLGPLlicence)athttp://sourceforge.net/projects/dgenometuner.
简介:Amurinemacrophage-likecelllineJ774,acquired,inresponsetoLPS,anabilitytokilltumornecrosisfactor(TNF)-insensitivetargetP815mastocytomacellswhereasanothercellline,P388D1didnot,LPStriggeredsignalingmechanismsbetweenthetwocelllineswerecomparedwithanaimtoinquireaboutthepossiblenatureoftheabove-mentioneddifference,TheresultswhowedthattwocelllinesrespondtoLPS-treatmentbyparallelactivationofbothphospholipasesCandA2(PLCandPLA2)toapproximatelythesameextent.ThemaximumresponseoftothenzymesofJ774cellswasnotedwithin10minthetreatmentwhereasthatofP388D1cellsrequiredmorethan20min,TheotherpropertiesofLPS-responsiveenzymesstudiedweresimilarbetweentwocelllines,includingActivationofPLCandPLA2andPKCinmacrophagesbyLPS.Ca2+augmentationofenzymeactivation,participationofguaninenucleotidebinding(G)proteinsintheinitialactivationpreocesses,andinhibitionofenzymeactivationbythepriortreatmentofcellswithcholeraorpertussistoxinsetc.Moreover,LPS-triggeredactivationofPLCandPLA2wasfoundtobefollowedbytheincreaseofPKCactivitiesinbothcelllines.Inspiteofthesesimilarities.J774cellspossessedbothbasicandacidicformsofPKCactivities,whileP388D1cellsownedonlyPKCofbasicform,Nevertheless,thequestionwhyJ774cellsbutnotP388D1cells,canacquirethetumoricidalactivity,aganistP815,cellsfollowingLPStreatmentrematinstobeanswered.
简介:Amurinemacrophage-likecellline,J774,acquried,inresponsetoLPS,anabilitytokilltumornecrosisfactor(TNF)-insensitivetargetP815mastocytomacells,whereasanothercellline,P388D1,didnot.LPS-triggeredsignalingmechanismsbetweenthetwocelllineswerecomparedwithanaimtoinquireaboutthepossiblenatureoftheabove-mentioneddifference.TheresultsshowedthattwocelllinesrespondtoLPS-treatmentbyparallelactivationofbothphospholipasesCandA2(PLCandPLA2)toapproximatelythesameextent.ThemaximumresponseofbothenzymesofJ774cellswasnotedwithin10minofthetreatment,whereasthatofP388D1cellsrequiredmorethan20min.TheotherpropertiesofLPS-responsiveenzymesstudiedweresimilarbetweentwocelllines,ineludingActivationofPLCandPLA2andPKCinmacrophagesbyLPSCa2+augmentationofenzymeactivation,participationofguaninenucleotidebinding(G)proteinsintheinitialactivationprocesses,andinhibitionofenzymeactivationbythepriortreatmentofcellswithcholeraorpartussistoxinsetc.Moreover,LPS-triggeredactivationofPLCandPLA2wasfoundtobefollowedbytheincreaseofPKCactivitiesinbothcelllines.Inspiteofthesesimilarities,J774cellspossessedbothbasicandacidicformsofPKCactivities,whileP388D1cellsownedonlyPKCofbasicform.Nevertheless,thequestionwhyJ774cells,butnotP388D1cells,canacquirethetumoricidalactiyity,aganistP815cellsfollowingLPS-treatmentremainstobeanswered.
简介:Ithasbeenshownthattheprogressinthedeterminationofmembraneproteinstructuregrowsexponentially,withapproximatelythesamegrowthrateasthatofthewater-solubleproteins.Inordertoinvestigatetheeffectofthis,ontheperformanceofpredictionalgorithmsforbothα-helicalandβ-barrelmembraneproteins,weconductedaprospectivestudybasedonhistoricalrecords.WetrainedseparatehiddenMarkovmodelswithdifferentsizedtrainingsetsandevaluatedtheirperformanceontopologypredictionforthetwoclassesoftransmembraneproteins.Weshowthattheexistingtop-scoringalgorithmsforpredictingthetransmembranesegmentsofα-helicalmembraneproteinsperformslightlybetterthanthatofβ-barreloutermembraneproteinsinallmeasuresofaccuracy.Withthesamerationale,ameta-analysisoftheperformanceofthesecondarystructurepredictionalgorithmsindicatesthatexistingalgorithmictechniquescannotbefurtherimprovedbyjustaddingmorenon-homologoussequencestothetrainingsets.Theupperlimitforsecondarystructurepredictionisestimatedtobenomorethan70%and80%ofcorrectlypredictedresiduesforsinglesequencebasedmethodsandmultiplesequencebasedones,respectively.Therefore,weshouldconcentrateoureffortsonutilizingnewtechniquesforthedevelopmentofevenbetterscoringpredictors.
简介:在植物昆虫相互作用的偏爱表演关系是在进化生态学的一个中央主题。在许多昆虫之中,鸡蛋是脆弱的,幼虫限制了活动性,使一个适当oviposition地点的选择成为为女性的最重要的决定之一。我们由人工地为2个自然资源,葡萄和植物的一种为偏爱选择在果蝇melanogasterMeigen和果蝇simulansSturtevant调查了oviposition偏爱的进化。我们的学习的主要发现是D的微分回答。melanogaster和D。simulans。尽管偏爱在D的试验性的人口演变。melanogaster,回答不与政体使用了的选择一致。相反,在D的回答。simulans与期望一致,证明这种有为特点的可选的基因变化。而且,在D之间交叉。simulans分叉的线证明涉及葡萄偏爱的基因因素看起来大部分后退。在摘要,我们的人工的选择学习建议那D。melanogaster和D。simulans为这个特点拥有不同基因体系结构。
简介:CellsregulatephospholipaseD(PLD)activityinresponsetonumerousextracellularsignals.Here,weinvestigatedtheinvolvementofPLDactivityintransforminggrowthfactor-β(TGF-β1)-mediatedgrowthinhibitionofepithelialcells.TGF-β1)-mediatedgrowthinhibitionofepithelialcells.TGF-β1inhibitsthegrowthofMDCK,Mv1Lu,andA-549cells.Inthepresenceof0.4%butanol,TGF-β1inducesanincreaseintheformationofphosphatidylbutanol,auniqueproductcatalyzedbyPLD.TGF-β1alsoinducesanincreaseinphosphatidicacid(PA)levelinA-549andMDCKcells.TGF-β1inducesanincreaseinthelevelsofDAGlabeledwith[^3H]-myristicacidinA-549andMDCKcellsbutnotinMv1Lucells.NoincreaseofDAGwasobservedincellsprelabeledwith[^3H]-arachidonicacid.ThedatapresentedsuggestthatPLDactivationisinvolvedintheTGF-β1-inducedcellgrowthinhibition.
简介:目的:观察外源给予H2O2对C2C12细胞中UII/UT系统表达的影响。方法:培养小鼠肌原细胞系C2C12细胞株,应用胎盘蓝染色和测定细胞培养液中LDH的含量检测H2O2对细胞损伤的影响,应用放射免疫的方法检测细胞培养液和裂解液中UII的含量,应用RT-PCR法测定C2C12中UTmRNA的表达,应用WesternBlot检测不同浓度H2O2对肌原细胞系C2C12中UT蛋白表达的影响。结果:外源给予不同浓度的H2O2,C2C12细胞裂解液中UII的含量各组间无明显差异,但增加了细胞孵育液中UII的含量,10-4M和10-3M时分别增加了83.1%(p〈0.01)和94.5%(P〈0.01)。低浓度H2O2(0.5×10-6M,10-6M,10-5M,10-4M)刺激明显增加了UTmRNA的表达,而高浓度的H2O2(10-3M)刺激反而使UTmRNA的表达降低。高浓度的H2O2(10-6M,10-5M,10-4M,10-3M)刺激使UT蛋白表达分别增加了200.1%、255.6%、111.1%和100.1%(均p〈0.05)。结论:H2O2作为T2DM发病因素之一的活性氧族,可能是T2DM时骨骼肌组织中UII/UT系统表达增加的一个因素。
简介:TRAF2isacriticaladaptormoleculeforTNFreceptorsininflammatoryandimmunesignaling.Uponreceptorengagement,TRAF2isrecruitedtoCD40andtranslocatestolipidraftsinaRINGfinger-dependentprocess,whichenablestheactivationofdownstreamkinases.TRAF1candisplaceTRAF2andCD40fromraftfractions,anditpromotestheabilityofTRAF2tosustainsignalactivation.ReplacementoftheRINGfingerofTRAF2witharaft-targetingsignalrestoresJNKactivationandassociationwiththecytoskeletalproteinFilamin,butnotNF-KBactivation.TRAF1-/-dendriticcellsshowattenuatedresponses
简介:水稻在抽穗开花期对高温胁迫非常敏感,通过挖掘耐热资源,培育耐热水稻品种是应对高温热害最有效的方式。前期研究发现,地方稻资源D43在花期连续高温条件下能保持较高的结实率。本研究在大田和人工气候室不同高温处理下,分析了D43的开花时间与耐热性之间的相互关系。结果表明,高温能够使水稻的开花时间提前,D43表现出稳定的早花时特性,高温胁迫下的开花时间集中在8∶30~10∶00;在开花时间段恒定高温胁迫下,D43的结实率较低;但在大田高温和人工气候室模拟高温胁迫下,D43的开花时间避开了日高温段,从而表现出较高的结实率;花器官形态性状包括花药开裂率、柱头上的花粉附着数、花粉萌发数与结实率之间呈显著正相关,因此可用于评价水稻的花期耐热性。
简介:目的探讨血浆(1—3)-β-D-葡聚糖对早期诊断深部真菌感染的临床价值。方法收集2009年3月-11月间在北京友谊医院感染科住院患者174例,根据侵袭性真菌感染诊断标准,将患者分为排除深部真菌组、确诊组、临床诊断组、拟诊组。应用MB-80微生物动态快速检测系统,检测各组患者血浆(1—3)-β—D-葡聚糖水平,分析比较深部真菌感染组和非深部真菌感染组血浆(1-3)-β-D-葡聚糖的水平。结果深部真菌感染组血清(1-3)-β-D-葡聚糖含量为(153.4±37.0)pg/mL,排除深部真菌感染组血清(1-3)-β—D-葡聚糖含量为(54.6±8.6)pg/mL,两组间有统计学差异(t=3.4,P〈0.01);分析血浆(1-3)-β-D-葡聚糖诊断深部真菌感染,以20pg/mL为诊断阈值,其准确率、敏感性、特异性、阳性预测值、阴性预测值分别为70.1%、87.5%、61.9%、52.1%、91.2%。确诊病例、临床诊断病例、拟诊病例,3组间血清(1—3)-β-D-葡聚糖含量无统计学差异(P〉0.05)。结论深部真菌感染组的葡聚糖水平明显高于排除深部真菌感染组的葡聚糖水平,具有统计学意义。以20pg/mL为诊断阈值,其准确率、敏感性、特异性、阳性预测值、阴性预测值分别为70.1%、87.5%、61.9%、52.1%、91.2%,可作为深部真菌感染的最佳诊断阈值。