Search
Leader | 00000nz a2200037n 45 0 | ||
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001 | WKP|Q58656358 (VIAF cluster) (Authority/Source Record) | ||
003 | WKP | ||
005 | 20241221010847.0 | ||
008 | 241221nneanz||abbn n and d | ||
035 | ‡a (WKP)Q58656358 | ||
024 | ‡a 0000-0002-0768-4236 ‡2 orcid | ||
035 | ‡a (OCoLC)Q58656358 | ||
100 | 0 | ‡a Gianni M Castiglione ‡c researcher ORCID ID = 0000-0002-0768-4236 ‡9 en | |
400 | 0 | ‡a Gianni M Castiglione ‡c wetenschapper ‡9 nl | |
670 | ‡a Author's Accelerated Evolution and Functional Divergence of the Dim Light Visual Pigment Accompanies Cichlid Colonization of Central America. | ||
670 | ‡a Author's ACE2 and TMPRSS2 are expressed on the human ocular surface, suggesting susceptibility to SARS-CoV-2 infection | ||
670 | ‡a Author's Adaptation of Antarctic Icefish Vision to Extreme Environments | ||
670 | ‡a Author's Adaptation of the master antioxidant response connects metabolism, lifespan and feather development pathways in birds | ||
670 | ‡a Author's An experimental comparison of human and bovine rhodopsin provides insight into the molecular basis of retinal disease. | ||
670 | ‡a Author's Comparative sequence analyses of rhodopsin and RPE65 reveal patterns of selective constraint across hereditary retinal disease mutations. | ||
670 | ‡a Author's Convergent selection pressures drive the evolution of rhodopsin kinetics at high altitudes via nonparallel mechanisms. | ||
670 | ‡a Author's Evolution of nonspectral rhodopsin function at high altitudes. | ||
670 | ‡a Author's Functional Shifts in Bat Dim-Light Visual Pigment Are Associated with Differing Echolocation Abilities and Reveal Molecular Adaptation to Photic-Limited Environments. | ||
670 | ‡a Author's Functional trade-offs and environmental variation shaped ancient trajectories in the evolution of dim-light vision | ||
670 | ‡a Author's Isolation and molecular characterization of the shikimate dehydrogenase domain from the Toxoplasma gondii AROM complex | ||
909 | ‡a (orcid) 0000000207684236 ‡9 1 | ||
919 | ‡a adaptationofthemasterantioxidantresponseconnectsmetabolismlifespanandfeatherdevelopmentpathwaysinbirds ‡A Adaptation of the master antioxidant response connects metabolism, lifespan and feather development pathways in birds ‡9 1 | ||
919 | ‡a experimentalcomparisonofhumanandbovinerhodopsinprovidesinsightintothemolecularbasisofretinaldisease ‡A An experimental comparison of human and bovine rhodopsin provides insight into the molecular basis of retinal disease. ‡9 1 | ||
919 | ‡a comparativesequenceanalysesofrhodopsinandrpe65revealpatternsofselectiveconstraintacrosshereditaryretinaldiseasemutations ‡A Comparative sequence analyses of rhodopsin and RPE65 reveal patterns of selective constraint across hereditary retinal disease mutations. ‡9 1 | ||
919 | ‡a convergentselectionpressuresdrivetheevolutionofrhodopsinkineticsathighaltitudesvianonparallelmechanisms ‡A Convergent selection pressures drive the evolution of rhodopsin kinetics at high altitudes via nonparallel mechanisms. ‡9 1 | ||
919 | ‡a evolutionofnonspectralrhodopsinfunctionathighaltitudes ‡A Evolution of nonspectral rhodopsin function at high altitudes. ‡9 1 | ||
919 | ‡a functionalshiftsinbatdimlightvisualpigmentareassociatedwithdifferingecholocationabilitiesandrevealmolecularadaptationtophoticlimitedenvironments ‡A Functional Shifts in Bat Dim-Light Visual Pigment Are Associated with Differing Echolocation Abilities and Reveal Molecular Adaptation to Photic-Limited Environments. ‡9 1 | ||
919 | ‡a functionaltradeoffsandenvironmentalvariationshapedancienttrajectoriesintheevolutionofdimlightvision ‡A Functional trade-offs and environmental variation shaped ancient trajectories in the evolution of dim-light vision ‡9 1 | ||
919 | ‡a isolationandmolecularcharacterizationoftheshikimatedehydrogenasedomainfromthetoxoplasmagondiiaromcomplex ‡A Isolation and molecular characterization of the shikimate dehydrogenase domain from the Toxoplasma gondii AROM complex ‡9 1 | ||
919 | ‡a acceleratedevolutionandfunctionaldivergenceofthedimlightvisualpigmentaccompaniescichlidcolonizationofcentralamerica ‡A Accelerated Evolution and Functional Divergence of the Dim Light Visual Pigment Accompanies Cichlid Colonization of Central America. ‡9 1 | ||
919 | ‡a ace2andtmprss2areexpressedonthehumanocularsurfacesuggestingsusceptibilitytosarscov2infection ‡A ACE2 and TMPRSS2 are expressed on the human ocular surface, suggesting susceptibility to SARS-CoV-2 infection ‡9 1 | ||
919 | ‡a adaptationofantarcticicefishvisiontoextremeenvironments ‡A Adaptation of Antarctic Icefish Vision to Extreme Environments ‡9 1 | ||
996 | ‡2 CAOONL|ncf12030421 | ||
996 | ‡2 NTA|070390983 | ||
996 | ‡2 RERO|A000029672 | ||
996 | ‡2 ISNI|0000000499216484 | ||
996 | ‡2 DNB|1217973605 | ||
996 | ‡2 RERO|A003782078 | ||
996 | ‡2 BNF|10696310 | ||
996 | ‡2 NUKAT|n 2003033526 | ||
996 | ‡2 DNB|1037620151 | ||
996 | ‡2 LC|n 2021026322 | ||
996 | ‡2 JPG|500341866 | ||
996 | ‡2 SELIBR|284135 | ||
996 | ‡2 J9U|987007307757905171 | ||
996 | ‡2 NII|DA12229519 | ||
996 | ‡2 LC|no 91002906 | ||
996 | ‡2 LC|n 2001062289 | ||
996 | ‡2 B2Q|0000361567 | ||
996 | ‡2 ICCU|UFIV073450 | ||
996 | ‡2 LC|n 79115760 | ||
996 | ‡2 BNC|981058524741806706 | ||
996 | ‡2 NUKAT|n 2012072969 | ||
996 | ‡2 ISNI|0000000423408965 | ||
996 | ‡2 LC|nr 93005895 | ||
996 | ‡2 J9U|987007337424205171 | ||
996 | ‡2 PLWABN|9810652857505606 | ||
996 | ‡2 BNF|12545400 | ||
996 | ‡2 BAV|495_64001 | ||
996 | ‡2 ISNI|0000000120845551 | ||
996 | ‡2 BNE|XX1135183 | ||
996 | ‡2 NTA|071161821 | ||
996 | ‡2 BAV|495_64005 | ||
996 | ‡2 BAV|495_64003 | ||
996 | ‡2 PTBNP|1379186 | ||
996 | ‡2 RERO|A018700019 | ||
996 | ‡2 SUDOC|175043787 | ||
996 | ‡2 LC|n 80098292 | ||
996 | ‡2 ISNI|0000000112010749 | ||
996 | ‡2 DNB|121146421 | ||
996 | ‡2 J9U|987007308953705171 | ||
996 | ‡2 LC|nr2004009127 | ||
996 | ‡2 NUKAT|n 2011044965 | ||
996 | ‡2 SUDOC|161110509 | ||
996 | ‡2 BNF|13014542 | ||
996 | ‡2 DNB|1012737071 | ||
996 | ‡2 DNB|122162986 | ||
996 | ‡2 BAV|495_3471 | ||
996 | ‡2 SUDOC|074221345 | ||
996 | ‡2 NUKAT|n 2017055654 | ||
996 | ‡2 J9U|987007507967805171 | ||
996 | ‡2 DNB|105209399X | ||
996 | ‡2 SZ|116472448 | ||
996 | ‡2 ISNI|0000000121426340 | ||
996 | ‡2 NLA|000035780195 | ||
996 | ‡2 DNB|115781669X | ||
996 | ‡2 BNE|XX824945 | ||
996 | ‡2 BNC|981058620335106706 | ||
996 | ‡2 ISNI|0000000445121260 | ||
996 | ‡2 SUDOC|244340021 | ||
996 | ‡2 SUDOC|155021958 | ||
996 | ‡2 DNB|119044021 | ||
996 | ‡2 LC|n 2020004304 | ||
996 | ‡2 DNB|119638320 | ||
996 | ‡2 NKC|xx0217802 | ||
996 | ‡2 BNE|XX4894724 | ||
996 | ‡2 ISNI|000000012120561X | ||
996 | ‡2 NUKAT|n 2021002332 | ||
996 | ‡2 NII|DA07569132 | ||
996 | ‡2 DNB|116472448 | ||
996 | ‡2 ICCU|CFIV116994 | ||
996 | ‡2 DNB|141638095 | ||
996 | ‡2 ICCU|BVEV017707 | ||
996 | ‡2 NYNYRILM|26535 | ||
996 | ‡2 NTA|33626416X | ||
996 | ‡2 BNCHL|10000000000000000096766 | ||
996 | ‡2 ISNI|0000000120237409 | ||
996 | ‡2 NKC|ola2015883699 | ||
996 | ‡2 SUDOC|180078631 | ||
996 | ‡2 CAOONL|ncf10813099 | ||
996 | ‡2 JPG|500002409 | ||
996 | ‡2 NUKAT|n 2015185361 | ||
996 | ‡2 BNC|981058524742206706 | ||
996 | ‡2 DNB|122161556 | ||
996 | ‡2 N6I|vtls001247632 | ||
996 | ‡2 DNB|1157642632 | ||
996 | ‡2 PLWABN|9810626174005606 | ||
996 | ‡2 ISNI|0000000445949738 | ||
996 | ‡2 ISNI|0000000120258269 | ||
996 | ‡2 LC|no2022128527 | ||
996 | ‡2 RERO|A003083207 | ||
996 | ‡2 RERO|A003083206 | ||
996 | ‡2 BIBSYS|1542227318204 | ||
996 | ‡2 BNF|15519278 | ||
996 | ‡2 LC|no2018061243 | ||
996 | ‡2 SUDOC|028145828 | ||
996 | ‡2 ISNI|0000000079806517 | ||
996 | ‡2 RERO|A012440731 | ||
996 | ‡2 BAV|495_169809 | ||
996 | ‡2 BAV|495_169807 | ||
996 | ‡2 BAV|495_169806 | ||
996 | ‡2 ISNI|0000000078186168 | ||
996 | ‡2 DNB|1158345690 | ||
996 | ‡2 BAV|495_169803 | ||
996 | ‡2 ISNI|0000000052331822 | ||
996 | ‡2 CAOONL|ncf11936424 | ||
996 | ‡2 SZ|119044021 | ||
996 | ‡2 ISNI|0000000108006915 | ||
996 | ‡2 LC|nb2011020516 | ||
996 | ‡2 DNB|1159054460 | ||
996 | ‡2 BNF|12003842 | ||
996 | ‡2 JPG|500115299 | ||
996 | ‡2 BAV|495_22875 | ||
996 | ‡2 LC|no2011085675 | ||
997 | ‡a 0 0 lived 0 0 ‡9 1 |