Hépatiques et Anthocérotes de Guyane
Marchantiidae et Anthocerotidae de Guyane
73 références bibliographiques sont utilisées pour les noms de rangs spécifiques de ce groupe.
Référence | Total | Valides | Espèces | Taxons terminaux | ||||
---|---|---|---|---|---|---|---|---|
nb | % | nb | % | nb | % | nb | % | |
Lavocat Bernard & Schäfer-Verwimp (2011) | 508 | 81,15% | 311 | 111,07% | 300 | 112,36% | 307 | 113,7% |
Gradstein & Ilkiu-Borges (2009) | 240 | 38,34% | 187 | 66,79% | 180 | 67,42% | 184 | 68,15% |
Boggan et al. (1997) | 226 | 36,1% | 116 | 41,43% | 113 | 42,32% | 115 | 42,59% |
Gradstein & Hekking (1989) | 158 | 25,24% | 5 | 1,79% | 5 | 1,87% | 5 | 1,85% |
Thouvenot et al. (2011) | 141 | 22,52% | 36 | 12,86% | 36 | 13,48% | 33 | 12,22% |
Bardat et al. (2021) | 104 | 16,61% | 22 | 7,86% | 22 | 8,24% | 21 | 7,78% |
Wigginton (2009) | 31 | 4,95% | 21 | 7,5% | 21 | 7,87% | 19 | 7,04% |
Dauphin (2003) | 26 | 4,15% | 0 | 0% | 0 | 0% | 0 | 0% |
Lavocat Bernard (2018) | 20 | 3,19% | 20 | 7,14% | 20 | 7,49% | 20 | 7,41% |
Grolle (1995) | 17 | 2,72% | 9 | 3,21% | 9 | 3,37% | 8 | 2,96% |
Söderström et al. (2013) | 16 | 2,56% | 6 | 2,14% | 4 | 1,5% | 5 | 1,85% |
Reeb et al. (2022) | 15 | 2,4% | 6 | 2,14% | 6 | 2,25% | 6 | 2,22% |
Gradstein & Costa (2003) | 12 | 1,92% | 0 | 0% | 0 | 0% | 0 | 0% |
Gradstein & Lavocat Bernard (2020) | 10 | 1,6% | 4 | 1,43% | 4 | 1,5% | 3 | 1,11% |
Gradstein (2015) | 10 | 1,6% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Grolle (2002) | 10 | 1,6% | 4 | 1,43% | 4 | 1,5% | 4 | 1,48% |
Sukkharak & Gradstein (2017) | 9 | 1,44% | 4 | 1,43% | 3 | 1,12% | 3 | 1,11% |
Lavocat Bernard & Reeb (2016) | 8 | 1,28% | 6 | 2,14% | 6 | 2,25% | 6 | 2,22% |
Ah-Peng et al. (2010) | 7 | 1,12% | 4 | 1,43% | 4 | 1,5% | 4 | 1,48% |
Grolle & Long (2000) | 7 | 1,12% | 3 | 1,07% | 3 | 1,12% | 2 | 0,74% |
Ilkiu Borges (2006) | 7 | 1,12% | 0 | 0% | 0 | 0% | 0 | 0% |
Passos Bastos & Gradstein (2020) | 7 | 1,12% | 3 | 1,07% | 0 | 0% | 3 | 1,11% |
Sukkharak & Gradstein (2014) | 7 | 1,12% | 0 | 0% | 0 | 0% | 0 | 0% |
Gradstein & Ilkiu-Borges (2015) | 6 | 0,96% | 3 | 1,07% | 3 | 1,12% | 3 | 1,11% |
Hodgetts & Lockhart (2020) | 6 | 0,96% | 6 | 2,14% | 6 | 2,25% | 5 | 1,85% |
Ros et al. (2007) | 6 | 0,96% | 4 | 1,43% | 4 | 1,5% | 4 | 1,48% |
Gehrig-Downie et al. (2013) | 5 | 0,8% | 5 | 1,79% | 5 | 1,87% | 5 | 1,85% |
Shi et al. (2015) | 5 | 0,8% | 2 | 0,71% | 2 | 0,75% | 2 | 0,74% |
Ah-Peng et al. (2010) | 4 | 0,64% | 4 | 1,43% | 3 | 1,12% | 3 | 1,11% |
Hugonnot et al. (2017) | 4 | 0,64% | 2 | 0,71% | 2 | 0,75% | 2 | 0,74% |
Reiner-Drehwald & Grolle (2012) | 4 | 0,64% | 0 | 0% | 0 | 0% | 0 | 0% |
Czumay et al. (2013) | 3 | 0,48% | 0 | 0% | 0 | 0% | 0 | 0% |
Gradstein (2012) | 3 | 0,48% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Gradstein (2013) | 3 | 0,48% | 2 | 0,71% | 2 | 0,75% | 2 | 0,74% |
Pócs & Bernecker (2009) | 3 | 0,48% | 2 | 0,71% | 2 | 0,75% | 1 | 0,37% |
Söderström et al. (2016) | 3 | 0,48% | 2 | 0,71% | 2 | 0,75% | 2 | 0,74% |
Wei et al. (2014) | 3 | 0,48% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Bechteler et al. (2017) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Briscoe et al. (2015) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Ellis et al. (2021) | 2 | 0,32% | 2 | 0,71% | 2 | 0,75% | 2 | 0,74% |
Ellis et al. (2023) | 2 | 0,32% | 2 | 0,71% | 2 | 0,75% | 2 | 0,74% |
Engel & Merrill (2004) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Gil-novoa et al. (2023) | 2 | 0,32% | 2 | 0,71% | 0 | 0% | 2 | 0,74% |
Heinrichs et al. (2012) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Pócs et al. (2015) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Reiner-Drehwald & Schäfer-Verwimp (2008) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Schäfer-Verwimp (2014) | 2 | 0,32% | 0 | 0% | 0 | 0% | 0 | 0% |
Shu et al. (2016) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Söderström et al. (2015) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Stephani (1908) | 2 | 0,32% | 0 | 0% | 0 | 0% | 0 | 0% |
Stotler (1969) | 2 | 0,32% | 0 | 0% | 0 | 0% | 0 | 0% |
Váňa et al. (2013) | 2 | 0,32% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Ah-Peng & Bardat (2009) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Ah-Peng et al. (2008) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Bastos & Gradstein (2020) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Bastos (2012) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Chatchaba et al. (2023) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Gradstein & Reeb (2018) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Heinrichs et al. (1999) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Hodgetts (2008) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Le Gallo (1951) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Meyer & Ah-Peng (2024) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Pócs et al. (2014) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Pócs (2011) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Reeb & Gradstein (2020) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Reiner-Drehwald (2009) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Schafer-Verwimp & Reiner-Drehwald (2009) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Schäfer-Verwimp & Van Melick (2016) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Shu & Zhu (2019) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Stotler & Crandall-Stotler (2017) | 1 | 0,16% | 0 | 0% | 0 | 0% | 0 | 0% |
Thouvenot & Müller (2021) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Thouvenot (2023) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |
Váňa et al. (2014) | 1 | 0,16% | 1 | 0,36% | 1 | 0,37% | 1 | 0,37% |