0000000000117170

AUTHOR

Ji Zhang

0000-0003-2582-2978

showing 9 related works from this author

Association of colony morphotypes with virulence, growth and resistance against protozoan predation in the fish pathogen Flavobacterium columnare.

2014

Many opportunistic pathogens can alternate between inside- and outside-host environments during their life cycle. The opportunistic fish pathogen Flavobacterium columnare is an inhabitant of the natural microbial community and causes significant yearly losses in aquaculture worldwide. The bacterium grows in varying colony morphotypes that are associated with either virulence (rhizoid type) or resistance to starvation and phages (rough type). Rough type strains can arise spontaneously or can be induced by phage infection. To identify the determinants of morphotype fitness, we measured virulence, growth parameters, biofilm-forming ability and resistance to amoeba and ciliate predation of both…

PopulationVirulenceApplied Microbiology and BiotechnologyMicrobiologyFlavobacteriumMicrobiologyTetrahymena thermophila03 medical and health sciencesFish DiseasesAnimalsBacteriophages14. Life underwatereducationPathogenZebrafish030304 developmental biologyCiliate0303 health scienceseducation.field_of_studyAcanthamoeba castellaniiEcologybiologyVirulence030306 microbiologyfungiBiofilmbiology.organism_classificationRhizoidFlavobacterium columnareFlavobacteriumFEMS microbiology ecology
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FLUCTUATING TEMPERATURE LEADS TO EVOLUTION OF THERMAL GENERALISM AND PREADAPTATION TO NOVEL ENVIRONMENTS

2013

Environmental fluctuations can select for generalism, which is also hypothesized to increase organisms' ability to invade novel environments. Here, we show that across a range of temperatures, opportunistic bacterial pathogen Serratia marcescens that evolved in fluctuating temperature (daily variation between 24°C and 38°C, mean 31°C) outperforms the strains that evolved in constant temperature (31°C). The growth advantage was also evident in novel environments in the presence of parasitic viruses and predatory protozoans, but less clear in the presence of stressful chemicals. Adaptation to fluctuating temperature also led to reduced virulence in Drosophila melanogaster host, which suggests…

0106 biological sciencesEcologyRange (biology)Host (biology)fungiVirulenceThermal fluctuationsBiology010603 evolutionary biology01 natural sciences010601 ecologyEnvironmental temperature13. Climate actionGeneticsAdaptationGeneral Agricultural and Biological SciencesEcology Evolution Behavior and SystematicsEvolution
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Protist predation can select for bacteria with lowered susceptibility to infection by lytic phages

2015

Background: Consumer-resource interactions constitute one of the most common types of interspecific antagonistic interaction. In natural communities, complex species interactions are likely to affect the outcomes of reciprocal co-evolution between consumers and their resource species. Individuals face multiple enemies simultaneously, and consequently they need to adapt to several different types of enemy pressures. In this study, we assessed how protist predation affects the susceptibility of bacterial populations to infection by viral parasites, and whether there is an associated cost of defence on the competitive ability of the bacteria. As a study system we used Serratia marcescens and i…

0106 biological sciencesDYNAMICSMultiple species interactionalkueliötPhage resistancePREYTrade-offmedicine.disease_cause01 natural sciencesBacteriophageDECREASED VIRULENCEBacteriophagesHETEROGENEITYPhage-host interactionSerratia marcescens2. Zero hungerGenetics0303 health scienceseducation.field_of_studybiologyTetrahymenaProtistProtistsBiological Evolution010601 ecologyLytic cycle1181 Ecology evolutionary biologyResearch ArticleAntagonistic co-evolutionVIRUSESPopulationRESISTANT MUTANTSPseudomonas fluorescensSerratiabakteriofagitMicrobiologyTetrahymena thermophilaMECHANISMS03 medical and health sciencesmedicineHost-parasite interactioneducationEcosystemEcology Evolution Behavior and Systematics030304 developmental biologyCOEVOLUTION15. Life on landbiology.organism_classificationEVOLUTIONMODELPseudomonas fluorescens SBW25Serratia marcescensBacteria
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Coincidental loss of bacterial virulence in multi-enemy microbial communities.

2014

The coincidental virulence evolution hypothesis suggests that outside-host selection, such as predation, parasitism and resource competition can indirectly affect the virulence of environmentally-growing bacterial pathogens. While there are some examples of coincidental environmental selection for virulence, it is also possible that the resource acquisition and enemy defence is selecting against it. To test these ideas we conducted an evolutionary experiment by exposing the opportunistic pathogen bacterium Serratia marcescens to the particle-feeding ciliate Tetrahymena thermophila, the surfacefeeding amoeba Acanthamoeba castellanii, and the lytic bacteriophage Semad11, in all possible combi…

Ecological selectionBacteriophageNatural SelectionBacteriophagesANTAGONISTIC COEVOLUTIONLISTERIA-MONOCYTOGENESSerratia marcescens1183 Plant biology microbiology virologyGeneticsSERRATIA-MARCESCENSAcanthamoeba castellanii0303 health sciencesMultidisciplinaryEcologybiologyQTetrahymenaRAcanthamoeba castellaniiMedicineResearch ArticleEvolutionary ProcessesVirulence FactorsAntagonistic CoevolutionScienceMicrobial ConsortiaeducationVirulenceMicrobiologyMicrobial EcologyMicrobiologyEvolution Molecular03 medical and health sciencesmulti-enemy microbial communitiesWater environment030304 developmental biologySTAPHYLOCOCCUS-AUREUSEvolutionary BiologyPSEUDOMONAS-AERUGINOSA VIRULENCE030306 microbiologybacterial virulenceDICTYOSTELIUM-DISCOIDEUMBiology and Life SciencesBacteriologybiology.organism_classificationOrganismal EvolutionArtificial SelectionTETRAHYMENA-THERMOPHILAEvolutionary EcologyMicrobial Evolutionta1181AMEBA ACANTHAMOEBA-CASTELLANIILEGIONELLA-PNEUMOPHILABacteriaMEDIA COMPOSITION INFLUENCESPLoS ONE
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Top-down effects of a lytic bacteriophage and protozoa on bacteria in aqueous and biofilm phases

2014

Lytic bacteriophages and protozoan predators are the major causes of bacterial mortality in natural microbial communities, which also makes them potential candidates for biological control of bacterial pathogens. However, little is known about the relative impact of bacteriophages and protozoa on the dynamics of bacterial biomass in aqueous and biofilm phases. Here, we studied the temporal and spatial dynamics of bacterial biomass in a microcosm experiment where opportunistic pathogenic bacteria Serratia marcescens was exposed to particle‐feeding ciliates, surface‐feeding amoebas, and lytic bacteriophages for 8 weeks, ca. 1300 generations. We found that ciliates were the most efficient enem…

BacterivoreMicrocosmlytic bacteriophageAquatic bacteriaeducationBiomassDefense evolutionmedicine.disease_causeTetrahymena thermophilaMicrobiologySerratia marcescens db11Bacteriophagemedicine14. Life underwatertop-down regulationEcology Evolution Behavior and SystematicsOriginal ResearchNature and Landscape ConservationAcanthamoeba castellaniiEcologybiologydefense evolutionaquatic bacteriata1183BiofilmPathogenic bacteriaSemad11biology.organism_classificationSerratia marcescensDb11Lytic bacteriophagemicrocosm13. Climate action1181 Ecology evolutionary biologyTop-down regulationProtozoata1181MicrocosmBacteriaEcology and Evolution
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Impact of biotic and abiotic factors on bacterial virulence

2013

coincidental evolutionympäristötekijätvirulenssipathogensvirulence evolutionisäntälajitinfektiotpatogeenitbakteeritresistenssiresistancevirulenceravintotaudinaiheuttajatbacteriophageprotozoan predationimmuunivastepredaatiogenotype-environment interactioninfectionsgeneettiset tekijät
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Interactive effects between diet and genotypes of host and pathogen define the severity of infection

2012

Host resistance and parasite virulence are influenced by multiple interacting factors in complex natural communities. Yet, these interactive effects are seldom studied concurrently, resulting in poor understanding of host-pathogen-environment dynamics. Here, we investigated how the level of opportunist pathogen virulence, strength of host immunity and the host condition manipulated via diet affect the survival of wood tiger moth Parasemia plantaginis (Arctidae). Larvae from “low cuticular melanin” and “high cuticular melanin” (considered as low and high pathogen resistance, respectively) selection lines were infected with moderately and highly virulent bacteria strains of Serratia marcescen…

0106 biological sciencesGenotype-environment interactionVirulenceLactucaBiology010603 evolutionary biology01 natural sciencesMicrobiologyMelanin03 medical and health sciencesImmunityParasemia plantaginisBotanyPathogenEcology Evolution Behavior and SystematicsSerratia marcescens030304 developmental biologyNature and Landscape ConservationOriginal Research11832 Microbiology and virology0303 health sciencesimmunokompetenssilleimmunocompetenceEcologyintegumentary systemHost (biology)fungivirulenssiPlantago majorbiology.organism_classificationvirulenceSerratia marcescensta1181Parasemia plantaginissense organsGenotyyppi-ympäristö vuorovaikutusEcology and Evolution
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Data from: Fluctuating temperature leads to evolution of thermal generalism and preadaptation to novel environments

2013

Environmental fluctuations can select for generalism, which is also hypothesized to increase organisms’ ability to invade novel environments. Here, we show that across a range of temperatures, opportunistic bacterial pathogen Serratia marcescens that evolved in fluctuating temperature (daily variation between 24°C and 38°C, mean 31°C) outperforms the strains that evolved in constant temperature (31°C). The growth advantage was also evident in novel environments in the presence of parasitic viruses and predatory protozoans, but less clear in the presence of stressful chemicals. Adaptation to fluctuating temperature also led to reduced virulence in Drosophila melanogaster host, which suggests…

medicine and health carefungiMedicinePodoviridaeLife sciencesSerratia marcescensTetrahymena thermophilaSelection - Experimental
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Data from: Top-down effects of a lytic bacteriophage and protozoa on bacteria in aqueous and biofilm phases

2015

Lytic bacteriophages and protozoan predators are the major causes of bacterial mortality in natural microbial communities, which also makes them potential candidates for biological control of bacterial pathogens. However, little is known about the relative impact of bacteriophages and protozoa on the dynamics of bacterial biomass in aqueous and biofilm phases. Here, we studied the temporal and spatial dynamics of bacterial biomass in a microcosm experiment where opportunistic pathogenic bacteria Serratia marcescens was exposed to particle-feeding ciliates, surface-feeding amoebas, and lytic bacteriophages for 8 weeks, ca. 1300 generations. We found that ciliates were the most efficient enem…

medicine and health careMedicineLife sciences
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