学科分类
/ 1
3 个结果
  • 简介:结合低温纯培养手段、核糖体DNA扩增片段限制性内切酶分析技术和克隆测序,研究了若尔盖高原泥炭沼泽土中可培养菌的多样性、系统发育和产低温酶特性。从3块采样地的土样中分离到47株表型各不相同的菌株。16SrRNA测序和系统发育分析结果表明,若尔盖高原泥炭沼泽土的可培养低温菌高度相似于分离自极地、高山冻土和冰川等低温环境的嗜冷菌。47株菌分属于4个不同的群,包括高GC含量群、低GC含量群、Beta和Gama变形菌纲等。革兰氏阳性菌以节杆菌属(Arthrobacter)为主,而革兰氏阴性菌以假单胞菌属(Pseudomonas)为主。其他的细菌分属于微小杆菌属(Exiguobacterium)、芽孢八叠球菌属(Sporosarcina)、贪噬菌属(Variovorax)、紫色杆菌属(Janthinobacterium)和寡养单胞菌属(Stenotrophomonas)等不同的类群。产低温酶分析结果表明,在分离到的47株菌中,大多数菌株都能分泌纤维素降解酶,50%以上的菌株具有蛋白酶活性,而以节杆菌的胞外酶产生能力最强。若尔盖高原泥炭沼泽土中存在丰富的低温菌类群,在酶学生物技术上具有潜在应用价值。

  • 标签: 泥炭沼泽土 可培养嗜冷菌 16S RRNA基因 多样性 若尔盖高原
  • 简介:Tamarixnabkhaisoneofthemostwidespreadnabkhas,distributinginthearidregionofChina.Basedontheobservationsoutdoorsandthesimulationexperimentsinlaboratories,analysisinthispaperreferstothebiologicalgeomorphologicfeaturesandgrowthprocessofTamarixnabkhasinthemiddleandlowerreachesoftheHotanRiver,Xin-jiang.AndtheresultsindicatethattheecologicaltypeofTamarixinthestudyareaisakindofTugaicsoilhabitatbasedonthedeepsoilofthePopulusDiversifoliaforestsandshrubs.Thistypeofhabitatcanbedividedintothreekindsofsub-habitatswhichdemonstratethefeaturesofecologicalenvironmentofTamarixnabkhasduringthedifferentialdevelopedphases.Meanwhile,theTamarixnabkhacanexertintensifieddisturbancecurrentonwind-sandflowontheground,anditsrootandstemsnotonlyhavestrongpotentialofsproutingbutarecharacteristicofwinderosion-tolerance,resistancetobeburiedbysandandrespectivelytoughrigidofthelignifiedbranches,forithasaratherlongerlife-time.Thus,thewindspeedprofileinfluencedbytheTamarixnabkhaisdifferentfromthePhragmitesnabkhaandAlhaginabkha.Andthestructureofthewindflowisbeneficialtoaeoliansandaccumulatingin/aroundTamarixshrub,whichcancreateuniqueTamarixnabkhaswithhigheraveragegradientandlongerperiodicityoflife.Tamarixnabkhaevolutionintheareaexperiencedthreestages:growthstage,matureandsteadystageandwitheringstage.Ineachstage,morpho-logicalfeaturesandgeomorphicprocessofTamarixnabkhaaredifferentduetothediscrepantinteractionbetweenthenabkhaandaeoliansandflow.

  • 标签: TAMARIX Nabkha BIOLOGICAL GEOMORPHOLOGY development mechanism
  • 简介:Thegoalofthisstudyistoprovideinformationontheprocessofpotholegrowthonagorgestreambed.PotholegeometriesweremeasuredinareachoftheDaburiverbedattheheadofagorgemorethan200mdeeplyincisingintoa650-750mhighplanationsurfaceformedinthemiddleMioceneinnorthernGuangdong,China.Geometricandderivativedataofthepotholesobtainedfromfieldworkwereinterpretedusingstandardstatisticalmethodologies.Ourstudyshowsthattheformationanddevelopmentofastreampotholewereonlyrelatedtolocalconditionsofastreamreachwherethepotholeoccurs;theweaknesses,whichareusuallyintersectfractures,typicallyinterconnectedverticaljoints,ortriangularpitsgeneratedbyhittingofrockfragmentsduringfloods,initiatethepotholedevelopmentonastreambed;thegeometricaldimensionsofthepotholesarecontrolledbytectonicjointsdevelopedinbedrockofthestreamreach;theradiusandthedepthofpotholesarestrongly(log)positivecorrelated;thepotholeshapesandtheflowpatternsareinconstantduringpotholegrowth;apotholecanbeformedwithinashortperiod,butcannotbefullydevelopedandmaintainedforalongtimeinastrongincisionstreambed.ThefindinginourstudycanimprovetheunderstandingofQuaternaryenvironmentinGuangdong.

  • 标签: GUANGDONG GORGE STREAM pothole MORPHOLOGICAL FEATURE