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   Incompatibility and competitive exclusion of genomic segments between sibling Drosophila species  
   
نویسنده fang s. ,yukilevich r. ,chen y. ,turissini d.a. ,zeng k. ,boussy i.a. ,wu c.-i.
منبع plos genetics - 2012 - دوره : 8 - شماره : 6
چکیده    The extent and nature of genetic incompatibilities between incipient races and sibling species is of fundamental importance to our view of speciation. however,with the exception of hybrid inviability and sterility factors,little is known about the extent of other,more subtle genetic incompatibilities between incipient species. here we experimentally demonstrate the prevalence of such genetic incompatibilities between two young allopatric sibling species,drosophila simulans and d. sechellia. our experiments took advantage of 12 introgression lines that carried random introgressed d. sechellia segments in different parts of the d. simulans genome. first,we found that these introgression lines did not show any measurable sterility or inviability effects. to study if these sechellia introgressions in a simulans background contained other fitness consequences,we competed and genetically tracked the marked alleles within each introgression against the wild-type alleles for 20 generations. strikingly,all marked d. sechellia introgression alleles rapidly decreased in frequency in only 6 to 7 generations. we then developed computer simulations to model our competition results. these simulations indicated that selection against d. sechellia introgression alleles was high (average s = 0.43) and that the marker alleles and the incompatible alleles did not separate in 78% of the introgressions. the latter result likely implies that most introgressions contain multiple genetic incompatibilities. thus,this study reveals that,even at early stages of speciation,many parts of the genome diverge to a point where introducing foreign elements has detrimental fitness consequences,but which cannot be seen using standard sterility and inviability assays. © 2012 fang et al.
آدرس biodiversity research center,academia sinica,taipei, Taiwan, department of ecology and evolution,university of chicago,chicago,il,united states,biology department,union college,schenectady,ny, United States, department of ecology and evolution,university of chicago,chicago,il,united states,department of biology,loyola university chicago,chicago,il, United States, department of ecology and evolution,university of chicago,chicago,il, United States, department of ecology and evolution,university of chicago,chicago,il,united states,state key laboratory of biocontrol,school of life sciences,sun yat-sen (zhongshan) university,guangzhou,china,department of animal and plant sciences,university of sheffield,sheffield, United Kingdom, department of biology,loyola university chicago,chicago,il, United States, department of ecology and evolution,university of chicago,chicago,il,united states,state key laboratory of biocontrol,school of life sciences,sun yat-sen (zhongshan) university,guangzhou,china,beijing institute of genomics,chinese academy of sciences,beijing, China
 
     
   
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