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Registro Completo |
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Biblioteca(s): |
Embrapa Cerrados. |
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Data corrente: |
12/02/2015 |
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Data da última atualização: |
23/01/2026 |
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Tipo da produção científica: |
Artigo em Periódico Indexado |
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Autoria: |
DUARTE, M. O.; ALVES, M. F.; YAMAMOTO, M.; SANO, S. M.; BARBOSA, A. A. A.; OLIVEIRA, P. E. |
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Afiliação: |
MARIANA OLIVEIRA DUARTE, UNIVERSIDADE FEDERAL DE UBERLÂNDIA; MARIANA FERREIRA ALVES, UNIVERSIDADE FEDERAL DE UBERLÂNDIA; MARCELA YAMAMOTO, UNIVERSIDADE ESTADUAL DE GOIÁS; SUELI MATIKO SANO, CPAC; ANA ANGÉLICA ALMEIDA BARBOSA, UNIVERSIDADE FEDERAL DE UBERLÂNDIA; PAULO EUGÊNIO OLIVEIRA, UNIVERSIDADE FEDERAL DE UBERLÂNDIA. |
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Título: |
Self-sterility and self-fertility of Passiflora L. (Passifloraceae) in the Cerrado of Central Brazil. |
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Ano de publicação: |
2014 |
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Fonte/Imprenta: |
Brazilian Journal of Botany, v. 37, n. 1, p. 61-68, 2014. |
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Idioma: |
Português |
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Conteúdo: |
Many species of wild passion fruit are used for the genetic breeding of passion fruit crop and kept in germplasm banks. This study investigated floral biology, breeding system, and chromosome number of Passiflora species that occur in areas of Cerrado in Uberlaˆndia, Minas Gerais, from 2008 to 2010. In general, the species bloomed in the rainy season, the anthesis was diurnal, except for P. tricuspis, and flowers were open from 6 to 12 h. At the time of flower opening, the nectar was already accumulated in the nectariferous chamber. Protandry occurred only in P. tenuifila. Bees were the main flower visitors of these species. There were significant differences in the diameter and length of the floral androgynophore among species. Passiflora amethystina, P. tenuifila (both subgenus Passiflora), and P. suberosa (subgenus Decaloba) were self-fertile, while P. cincinnata (subgenus Passiflora) and P. tricuspis (subgenus Decaloba) were self-sterile, which contrasted with the usual trends in the group. The chromosome number for P. tricuspis was 2n = 12, P. amethystina and P. tenuifila were 2n = 18 chromosomes, and P. suberosa was 2n = 24 chromosomes, which conformed to the recorded results for the group. Overall conservative chromosome numbers, and self-fertility in P. amethystina are interesting results for breeding programs and basic information for conservation. |
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Thesagro: |
Passifloraceae. |
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Thesaurus Nal: |
Chromosome number; Passiflora; Plant fertility; Plant morphology. |
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Categoria do assunto: |
-- |
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Marc: |
LEADER 02094naa a2200241 a 4500 001 2008582 005 2026-01-23 008 2014 bl uuuu u00u1 u #d 100 1 $aDUARTE, M. O. 245 $aSelf-sterility and self-fertility of Passiflora L. (Passifloraceae) in the Cerrado of Central Brazil.$h[electronic resource] 260 $c2014 520 $aMany species of wild passion fruit are used for the genetic breeding of passion fruit crop and kept in germplasm banks. This study investigated floral biology, breeding system, and chromosome number of Passiflora species that occur in areas of Cerrado in Uberlaˆndia, Minas Gerais, from 2008 to 2010. In general, the species bloomed in the rainy season, the anthesis was diurnal, except for P. tricuspis, and flowers were open from 6 to 12 h. At the time of flower opening, the nectar was already accumulated in the nectariferous chamber. Protandry occurred only in P. tenuifila. Bees were the main flower visitors of these species. There were significant differences in the diameter and length of the floral androgynophore among species. Passiflora amethystina, P. tenuifila (both subgenus Passiflora), and P. suberosa (subgenus Decaloba) were self-fertile, while P. cincinnata (subgenus Passiflora) and P. tricuspis (subgenus Decaloba) were self-sterile, which contrasted with the usual trends in the group. The chromosome number for P. tricuspis was 2n = 12, P. amethystina and P. tenuifila were 2n = 18 chromosomes, and P. suberosa was 2n = 24 chromosomes, which conformed to the recorded results for the group. Overall conservative chromosome numbers, and self-fertility in P. amethystina are interesting results for breeding programs and basic information for conservation. 650 $aChromosome number 650 $aPassiflora 650 $aPlant fertility 650 $aPlant morphology 650 $aPassifloraceae 700 1 $aALVES, M. F. 700 1 $aYAMAMOTO, M. 700 1 $aSANO, S. M. 700 1 $aBARBOSA, A. A. A. 700 1 $aOLIVEIRA, P. E. 773 $tBrazilian Journal of Botany$gv. 37, n. 1, p. 61-68, 2014.
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| 1. |  | HUG, L. A.; HATZENPICHLER, R.; MORARU, C.; SOARES, A, R.; MEYER, F.; HEYDER, A.; ABDALLAH, R. A.; ABDALRAHEM, A.; ABDULKADIR, N.; ADESIYAN, I. M.; ALTEIO, L.; ANANTHARAMAN, K.; ANDERSON, R.; ANDREI, A-S.; BAEZA, J. A.; BAK, F.; BAKER, B.; BARTHOLOMÄUS, A.; BEJERMAN, N.; BIDDLE, J.; BISSETT, A.; BLAKELEY-RUIZ, J. A.; BLOCK, K.; BOLDT, J.; BONILLA-ROSSO, G.; BORNEMANN, T. L.; BRAUER, V. S.; BRAZELTON, W.; BREMGES, A.; BUELOW, E.; BURCHAM, Z. M.; CANSDALE, A.; CAPORASO, J. G.; CERNAVA, T.; CHATZIGIANNIDOU, I.; COSTA, R.; CURRIE, C. R.; DAEBELER, A.; DE ANDA, V.; DE SANTIAGO, A.; TACCA, L. M. A. de; DEBELIUS, J.; DITTAMI, S. M.; DONG, X.; DŽUNKOVÁ, M.; EDWARDS, A.; EDWARDS, R.; EGBERT, S.; ENGELMANN, J. C.; ESSER, S. P.; ETTEMA, T. J. G.; ETTINGER, C. L.; FABIJAN, A. P.; FERGUSON, R. M. W.; FERRETTI, P.; FOUCAULT, P.; FUHRMAN, J. A.; GADA, A. M.; GEESINK, P.; GERHARDT, I. R.; GESSNER, M. O.; GIOVANNELLI, D.; GITTINS, D.; GLOOR, G. B.; GONZÁLEZ-PECH, R. A.; GOPALAKRISHNAPPA, C.; GREENING, C.; GREGOR, R.; GREGORY, A. C.; GROSSART, H.-P.; GROUSSIN, M.; GUERRERO, B. V.; GUZEL, M.; HAMAMURA, N.; HAMILTON, T. L.; HAMM, J. N.; HART, L.; HASSENRÜCK, C.; HAY, M.; HECHLER, R. M.; HELLWIG, P.; HENSON, M.; HEROLD, M.; HESKETH-BEST, P. J.; HESS, M.; HILLARY, L.; HITCH, T. C.; HIVARKAR, S. S.; HOFF, K. J.; HOM, E. F.; HOU, S.; HUGERTH, L. W.; HWANG, Y.; ILOTT, N.; JAY, Z. J.; JUNGBLUTH, S. P.; KARIMI, E.; KASPAREIT, Y. M.; KEATING, C.; KELLOM, M.; KILEDAL, E. A.; KLARENBERG, I.; KNIGHT, R.; KOECH, A. K.; KOONIN, E. V.; KORMAS, K.; KUJALA, K.; KYRPIDES, N. C.; LA ROSA, S. L.; LACZNY, C. C.; LAHMERS, K.; LAN, X.; LATEEF, A. A.; LAU, S. H.; LEESE, F.; LEZCANO, M. A.; LI, S. S.; LIMA, R. N.; LÜCKER, S.; MAHNERT, A.; MAJIDIAN, S.; MALFERTHEINER, L.; MARSHALL, A.; MEADEN, S.; MEEHAN, C. J.; MEIER, D. V.; MELKONIAN, C.; MENDE, D. R.; MEYER, J. L.; MICHOUD, G.; MIKRYUKOV, V.; MIRAVET-VERDE, S.; MUSCHIOL, J.; NATA’ALA, M. K.; NEUFELD, J. D.; NEUHAUSER, S.; OSUOLALE, O.; OSVATIC, J.; PAPPAS, K. M.; PARKS, D. H.; PARRY, R. H.; PASCOAL, P. V.; PAVLOUDI, C.; PEYTON, B.; PLEWKA, J.; POYET, M.; PRIEST, T.; QUAYE, E. K.; RAMGANESH, S.; RATTEI, T.; RAUSCH, P.; RECH FILHO, E. L.; RINKE, C.; ROBINSON, C.; RODRÍGUEZ-GIJÓN, A.; RODRIGUEZ-R, L. M.; ROHWER, R. R.; ROLOFF, T.; ROTHMAN, J. A.; RÜCKERT, S.; RUFF, S. E.; SAINI, J. S.; SANTIAGO-MARTÍNEZ, M. G.; SANTOFERRARA, L.; SARHAN, M. S.; SAW, J. H.; SBAFFI, T.; SCHÄFER, R. B.; SCHAIBLE, G.; SCHLOTER, M.; SCHMITZ, R. A.; SCHUBERT, C.; SCHWENGERS, O.; SEHNAL, L.; SEKAR, A.; SEKAR, J.; SEYOUM, M. M.; SHAH, M. B.; SHARON, I.; SIEBERS, B.; SIERADZKI, E. T.; SKLIROS, D.; SNOEYENBOS-WEST, O. L.; SORBIE, A.; SPETH, D. R.; SPREHN, C. G.; SRIVASTAVA, P.; STACH, T. L.; STAJICH, J. E.; STARKE, J.; STEEN, A. D.; STÖCKL, R.; STOIKIDOU, T.; STOPNISEK, N.; SUKUMARAN, R.; SURES, B.; SUZUKI, S.; TAMARIT, D.; THIERINGER, P.; TITO, R. Y.; TRIVEDI, C. B.; TRUBL, G.; TRUU, J.; TSIKNIA, M.; UGALDE, J.; VALENTIN-ALVARADO, L. E.; VÁZQUEZ-CAMPOS, X.; VIERHEILIG, J.; MEIJENFELDT, F. A. B. von; WAGNER, M.; WALSH, C. J.; WANG, S.; WANG, Y.; WEGNER, C.-E.; WEIR, T.; WEISS, L. C.; WEISSMAN, J. L.; WICHELS, A.; WILLIAMS, C. L.; WILLIAMS, T. A.; WORDEN, A. Z.; WOYKE, T.; WU, M.; XIU, W.; ZHANG, Y.; ZHU, J.; ZIELS, R. M.; ZWIRZITZ, B.; PROBST, A. J. A roadmap for equitable reuse of public microbiome data. Nature Microbiology, v. 10, p. 2384–2395, 2025. Na publicação: E. Rech.| Tipo: Artigo em Periódico Indexado | Circulação/Nível: A - 1 |
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