يعرض 1 - 20 نتائج من 103 نتيجة بحث عن '"Llera-Herrera, Raúl"', وقت الاستعلام: 0.52s تنقيح النتائج
  1. 1
    Academic Journal

    المساهمون: Dirección General de Asuntos del Personal Académico, Universidad Nacional Autónoma de México

    المصدر: Journal of the Marine Biological Association of the United Kingdom ; volume 104 ; ISSN 0025-3154 1469-7769

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    المصدر: Scientia Marina; Vol. 88 No. 1 (2024); e082 ; Scientia Marina; Vol. 88 Núm. 1 (2024); e082 ; 1886-8134 ; 0214-8358 ; 10.3989/scimar.2024.88n1

    وصف الملف: text/html; application/pdf; text/xml

    Relation: https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/5525/3012; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/5525/3013; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/5525/3014; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/5525/3015; Adlard R., Lester R.J. 1995. Development of a diagnostic test for Mikrocytos roughleyi, the aetiological agent of Australian winter mortality of the commercial rock oyster, Saccostrea commercialis (Iredale and Roughley). J. Fish Dis. 18: 609-614. https://doi.org/10.1111/j.1365-2761.1995.tb00365.x; Becking L.E., Erpenbeck D., Peijnenburg K.T.C.A., de Voogd N.J. 2013. Phylogeography of the Sponge Suberites diversicolor in Indonesia: Insights into the Evolution of Marine Lake Populations. PLoS ONE 8: e75996. https://doi.org/10.1371/journal.pone.0075996 PMid:24098416 PMCid:PMC3788070; Belinky F., Szitenberg A., Goldfarb I., et al. 2012. ALG11 - A new variable DNA marker for sponge phylogeny: Comparison of phylogenetic performances with the 18S rDNA and the COI gene. Mol. Phylogenet. Evol. 63: 702-713. https://doi.org/10.1016/j.ympev.2012.02.008 PMid:22387211; Bickford D., Lohman D.J., Sodhi N.S., Ng P.KL., Meier R., Winker K., Ingram KK., Das I. 2006. Cryptic species as a window on diversity and conservation. Trends Ecol. Evol. 22: 148-155. https://doi.org/10.1016/j.tree.2006.11.004 PMid:17129636; Blanquer A., Uriz M-J. 2007. Cryptic speciation in marine sponges evidenced by mitochondrial and nuclear genes: A phylogenetic approach. Mol. Phylogenet. Evol. 45: 392-397. https://doi.org/10.1016/j.ympev.2007.03.004 PMid:17434762; Blanquer A., Uriz M-J. 2008. "A posteriori" searching for phenotypic characters to describe new cryptic species of sponges revealed by molecular markers (Dictyonellidae: Scopalina). Invertebr. Syst. 22: 489-502. https://doi.org/10.1071/IS07004 https://doi.org/10.1071/IS07004; Borchiellini C., Chombard C., Lafay B. NB-E. 2000. Molecular systematics of sponges (Porifera). Hydrobiologia. 420: 15-27. https://doi.org/10.1007/978-94-017-2184-4_2 https://doi.org/10.1007/978-94-017-2184-4_2; Bucklin A., Steinke D., Blanco-Bercial L. 2011. DNA Barcoding of Marine Metazoa. Ann. Rev. Mar. Sci. 3: 471-508. https://doi.org/10.1146/annurev-marine-120308-080950 https://doi.org/10.1146/annurev-marine-120308-080950 PMid:21329214; Carballo J.L., Cruz-Barraza J.A. 2008. First record of Axinyssa Lendenfeld, 1897 (Demospongiae, Halichondrida) from the East Pacific Ocean, with the description of Axinyssa isabela sp. nov. Zootaxa. 1784: 58-68. https://doi.org/10.11646/zootaxa.1784.1.4; Carballo J.L., Cruz-Barraza J.A. 2010. A revision of the genus Mycale (Poecilosclerida: Mycalidae) from the Mexican Pacific Ocean. Contrib. Zool. 79: 165-191. https://doi.org/10.1163/18759866-07904003; Cárdenas P., Pérez T., Boury-Esnault N. 2012. Sponge Systematics Facing New Challenges. Adv. Mar. Biol. 61: 79-209. https://doi.org/10.1016/B978-0-12-387787-1.00010-6 PMid:22560778; Cárdenas P., Rapp H.T., Schander C., Tendal O.S. 2010. Molecular taxonomy and phylogeny of the Geodiidae (Porifera, Demospongiae, Astrophorida) - Combining phylogenetic and Linnaean classification. Zool. Sci. 39: 89-106. https://doi.org/10.1111/j.1463-6409.2009.00402.x; Castillo-Páez A.Y., Llera-Herrera R., Cruz-Barraza J.A. 2021. De novo transcriptome assembly for two colour types of the marine sponge Mycale (Carmia) cecilia. Mol. Biol. Rep. 48: 1-4. https://doi.org/10.1007/s11033-021-06274-4 PMid:33782784; Chenauil A., Cahill A.E., Délémontey N., et al. 2019. Problems and questions posed by cryptic species. A framework to guide future studies. In: Casetta J., da Silva., Vecchi D. (eds), From Assessing to Conserving Biodiversity: Conceptual and Practical Challenges, pp. 77-106. https://doi.org/10.1007/978-3-030-10991-2_4; Desqueyroux-Faúndez R., van Soest R.W.M. 1997. Shallow waters Demosponges of the Galápagos Islands. Rev. Suisse Zool. 104: 379-467. https://doi.org/10.5962/bhl.part.80003; Emms D.M., Kelly S. 2017. STRIDE: Species Tree Root Inference from Gene Duplication Events. Mol. Biol. Evol. 34: 3267-3278. https://doi.org/10.1093/molbev/msx259 PMid:29029342 PMCid:PMC5850722; Emms D.M., Kelly S. 2018. STAG: Species Tree Inference from All Genes. BioRxiv. 267914. https://doi.org/10.1101/267914; Emms D.M., Kelly S. 2019. OrthoFinder: Phylogenetic orthology inference for comparative genomics. Genome Biol. 20: 1-14. https://doi.org/10.1186/s13059-019-1832-y PMid:31727128 PMCid:PMC6857279; Escobar D., Zea S., Sánchez J.A. 2012. Phylogenetic relationships among the Caribbean members of the Cliona viridis complex (Porifera, Demospongiae, Hadromerida) using nuclear and mitochondrial DNA sequences. Mol. Phylogenet. Evol. 64: 271-284. https://doi.org/10.1016/j.ympev.2012.03.021 PMid:22510309; Esteves E.L., de Paula T.S., Lerner C., et al. 2018. Morphological and molecular systematics of the "Monanchora arbuscula complex" (Poecilosclerida: Crambeidae), with the description of five new species and a biogeographic discussion of the genus in the Tropical Western Atlantic. Invertebr. Syst. 32: 457-503. https://doi.org/10.1071/IS16088; Fusco G., Minelli A. 2010. Phenotypic plasticity in development and evolution: facts and concepts. Philos. Trans. R. Soc. Lond., B, Biol. Sci. 365: 547-556. https://doi.org/10.1098/rstb.2009.0267 PMid:20083631 PMCid:PMC2817147; Green G., Gómez P. 1985. Estudio taxonómico de las esponjas de la Bahía de Mazatlán Sinaloa, México. An. Cent. Cienc. Mar. Limnol. 273-300.; Haas B.J., Papanicolaou A., Yassour M., et al. 2013. De novo transcript sequence reconstruction from RNA-seq using the Trinity platform for reference generation and analysis. Nat. Protoc. 8: 1494-1512. https://doi.org/10.1038/nprot.2013.084 PMid:23845962 PMCid:PMC3875132; Hajdu E., Riitzler K. 1998. Sponges, genus Mycale (Poecilosclerida: Demospongiae: Porifera), from a Caribbean mangrove and comments on subgeneric classification. Proc. Biol. Soc. Wash. 111: 737-773.; Huang D., Meier R., Todd P.A., Chou L.M. 2008. Slow mitochondrial COI sequence evolution at the base of the metazoan tree and its implications for DNA barcoding. J. Mol. Evol. 66: 167-174. https://doi.org/10.1007/s00239-008-9069-5 PMid:18259800; Kenny N.J., Itskovich V.B. 2020. Phylogenomic inference of the interrelationships of Lake Baikal sponges. Syst. Biodivers. 0: 1-9.; Knapp I.S., Forsman Z.H., Williams G.J., et al. 2015. Cryptic species obscure introduction pathway of the blue Caribbean sponge (Haliclona (Soestella) caerulea), (order: Haplosclerida) to Palmyra Atoll, Central Pacific. PeerJ. 2015. https://doi.org/10.7717/peerj.1170 https://doi.org/10.7717/peerj.1170 PMid:26339548 PMCid:PMC4558080; Knowlton N. 1993. Sibling species in the sea. Annu. Rev. Ecol. Syst. 24: 189-216. https://doi.org/10.1146/annurev.es.24.110193.001201 https://doi.org/10.1146/annurev.es.24.110193.001201; Kumar S., Stecher G., Li M., et al. 2018. MEGA X: Molecular evolutionary genetics analysis across computing platforms. Mol. Biol. Evol. 35: 1547-1549. https://doi.org/10.1093/molbev/msy096 PMid:29722887 PMCid:PMC5967553; de Laubenfels M.W. 1936. A comparison of the shallow-water sponges near The Pacific and of The Panama Canal with those at The Caribbean end. Proc U. S. Natl. Mus. 83: 441-466. https://doi.org/10.5479/si.00963801.83-2993.441; de Laubenfels M.W. 1950. The sponges of Kaneohe Bay, Oahu. Pac. Sci. 4: 3-36.; Loh T.L., López-Legentil S., Song B., Pawlik J.R. 2012. Phenotypic variability in the Caribbean Orange Icing sponge Mycale laevis (Demospongiae: Poecilosclerida). Hydrobiologia. 687: 205-217. https://doi.org/10.1007/s10750-011-0806-1; López-Legentil S., Erwin P.M., Henkel T.P., et al. 2010. Phenotypic plasticity in the Caribbean sponge Callyspongia vaginalis (Porifera: Haplosclerida). Sci. Mar. 74: 445-453. https://doi.org/10.3989/scimar.2010.74n3445; Ortega M.J., Zubía E., Sánchez M.C., et al. 2004. Structure and cytotoxicity of new metabolites from the sponge Mycale cecilia. Tetrahedron. 60: 251-2524. https://doi.org/10.1016/j.tet.2004.01.056; Park M-H.H., Sim C-J.J., Baek J., Min G-S.S. 2007. Identification of genes suitable for DNA barcoding of morphologically indistinguishable Korean Halichondriidae sponges. Mol. Cells. 23: 220-227. https://doi.org/10.1016/S1016-8478(23)07377-6 PMid:17464200; Petit R.J., Excoffier L. 2009. Gene flow and species delimitation. Trends Ecol. Evol. 24: 386-393. https://doi.org/10.1016/j.tree.2009.02.011 PMid:19409650; Pfenninger M., Schwenk K. 2007. Cryptic animal species are homogeneously distributed among taxa and biogeographical regions. BMC. Evol. Biol. 7: 1-6. https://doi.org/10.1186/1471-2148-7-121 PMid:17640383 PMCid:PMC1939701; Puillandre N., Brouillet S., Achaz G. 2021. ASAP: assemble species by automatic partitioning. Mol. Ecol. Resour. 21: 609-620. https://doi.org/10.1111/1755-0998.13281 PMid:33058550; De Queiroz K. 2007. Species concepts and species delimitation. Syst. Biol. 56: 879-886. https://doi.org/10.1080/10635150701701083 PMid:18027281; Shaffer M.R., Davy SK., Bell J.J. 2019. Hidden diversity in the genus Tethya: comparing molecular and morphological techniques for species identification. Heredity. 122: 354-369. https://doi.org/10.1038/s41437-018-0134-6 PMid:30131516 PMCid:PMC6460755; Van Soest R.W.M.M., Hajdu E. 2002. Family Mycalidae Lundbeck, 1905. In: Hooper J.N.A., Van Soest R.W.M. (eds), Systema Porifera: A Guide to the Classification of Sponges. Kluwer Academic/Plenum Publishers, New York, pp. 669-690. https://doi.org/10.1007/978-1-4615-0747-5_73; Uriz M.J., Turon X. 2012. Sponge ecology in the molecular era. Adv. Mar. Biol. 61: 345-410. https://doi.org/10.1016/B978-0-12-387787-1.00006-4 PMid:22560781; Uriz M.J., Garate L., Agell G. 2017. Molecular phylogenies confirm the presence of two cryptic Hemimycale species in the mediterranean and reveal the polyphyly of the genera Crella and Hemimycale (Demospongiae: Poecilosclerida). PeerJ 5:e2958. https://doi.org/10.7717/peerj.2958 PMid:28286707 PMCid:PMC5344016; https://scientiamarina.revistas.csic.es/index.php/scientiamarina/article/view/5525

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    Academic Journal

    المساهمون: Producció Animal, Aqüicultura

    Time: 639

    وصف الملف: application/pdf

    Relation: Aquaculture; MICIU/Programa Estatal de I+D+I orientada a los retos de la sociedad/117RT0521/ES/Estrategias de desarrollo y mejora de la producción de larvas de peces en Iberoamerica/LARVAplus; Teles, Andressa, Carlos Alfonso Alvarez-González, Raúl Llera-Herrera, Enric Gisbert, Joan Salas-Leiva, María del Carmen Rodríguez-Jaramillo, and Dariel Tovar-Ramírez. 2022. "Debaryomyces Hansenii CBS 8339 Promotes Larval Development In Seriola Rivoliana". Aquaculture 560: 738587. doi:10.1016/j.aquaculture.2022.738587.; http://hdl.handle.net/20.500.12327/1838; https://doi.org/10.1016/j.aquaculture.2022.738587

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    المساهمون: Instituto Nacional de la Pesca, Mexico, Biotechnology and Biological Sciences Research Council, Institute Strategic Programme Grants, Royal Society Newton International Fellowship

    المصدر: Genomics ; volume 110, issue 6, page 423-429 ; ISSN 0888-7543

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