Fonge (hors lichens) de Guadeloupe
108 références bibliographiques sont utilisées pour les noms de rangs spécifiques de ce groupe.
Référence | Total | Valides | Espèces | Taxons terminaux | ||||
---|---|---|---|---|---|---|---|---|
nb | % | nb | % | nb | % | nb | % | |
Courtecuisse (2009) | 772 | 30% | 104 | 14,9% | 104 | 15,03% | 102 | 14,72% |
Courtecuisse (2006) | 380 | 14,77% | 324 | 46,42% | 322 | 46,53% | 322 | 46,46% |
Courtecuisse & Welti (2013) | 350 | 13,6% | 243 | 34,81% | 237 | 34,25% | 237 | 34,2% |
Courtecuisse et al. (1996) | 101 | 3,93% | 76 | 10,89% | 75 | 10,84% | 73 | 10,53% |
Duss (1903) | 96 | 3,73% | 70 | 10,03% | 70 | 10,12% | 70 | 10,1% |
Jaouen et al. (2019) | 81 | 3,15% | 58 | 8,31% | 58 | 8,38% | 56 | 8,08% |
Horak & Mouchacca (1998) | 69 | 2,68% | 21 | 3,01% | 21 | 3,03% | 19 | 2,74% |
Buyck (2013) | 52 | 2,02% | 43 | 6,16% | 43 | 6,21% | 41 | 5,92% |
Fournier et al. (2016) | 34 | 1,32% | 32 | 4,58% | 32 | 4,62% | 32 | 4,62% |
Fournier et al. (2017) | 32 | 1,24% | 32 | 4,58% | 32 | 4,62% | 32 | 4,62% |
Lécuru & Courtecuisse (2013) | 32 | 1,24% | 30 | 4,3% | 30 | 4,34% | 30 | 4,33% |
Fournier et al. (2020) | 28 | 1,09% | 28 | 4,01% | 28 | 4,05% | 28 | 4,04% |
Jabiol & Labeille (2022) | 25 | 0,97% | 23 | 3,3% | 23 | 3,32% | 23 | 3,32% |
Fournier et al. (2019) | 20 | 0,78% | 17 | 2,44% | 17 | 2,46% | 17 | 2,45% |
Corriol & Roy (2021) | 19 | 0,74% | 14 | 2,01% | 14 | 2,02% | 14 | 2,02% |
Abraham (2021) | 16 | 0,62% | 16 | 2,29% | 16 | 2,31% | 16 | 2,31% |
Rivoire (2018) | 15 | 0,58% | 11 | 1,58% | 11 | 1,59% | 11 | 1,59% |
Fournier et al. (2024) | 13 | 0,51% | 13 | 1,86% | 13 | 1,88% | 13 | 1,88% |
Chauvet (1991) | 10 | 0,39% | 10 | 1,43% | 10 | 1,45% | 10 | 1,44% |
Fournier & Lechat (2015) | 10 | 0,39% | 10 | 1,43% | 10 | 1,45% | 10 | 1,44% |
Delgat et al. (2020) | 9 | 0,35% | 9 | 1,29% | 9 | 1,3% | 9 | 1,3% |
Jabiol et al. (2013) | 8 | 0,31% | 8 | 1,15% | 8 | 1,16% | 8 | 1,15% |
Fournier et al. (2018) | 7 | 0,27% | 7 | 1% | 7 | 1,01% | 7 | 1,01% |
Accioly et al. (2019) | 6 | 0,23% | 6 | 0,86% | 6 | 0,87% | 6 | 0,87% |
Aptroot & Lücking (2016) | 6 | 0,23% | 6 | 0,86% | 6 | 0,87% | 6 | 0,87% |
Braun et al. (2014) | 6 | 0,23% | 6 | 0,86% | 6 | 0,87% | 6 | 0,87% |
European Nucleotide Archive (2019) | 6 | 0,23% | 6 | 0,86% | 6 | 0,87% | 6 | 0,87% |
Fournier & Lechat (2016) | 6 | 0,23% | 6 | 0,86% | 6 | 0,87% | 6 | 0,87% |
Fournier et al. (2017) | 6 | 0,23% | 6 | 0,86% | 6 | 0,87% | 6 | 0,87% |
Patouillard (1900) | 6 | 0,23% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Questel (2022) | 6 | 0,23% | 5 | 0,72% | 5 | 0,72% | 5 | 0,72% |
Sherwood (1974) | 6 | 0,23% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Fournier et al. (2014) | 5 | 0,19% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Fournier et al. (2017) | 5 | 0,19% | 5 | 0,72% | 5 | 0,72% | 5 | 0,72% |
Rogers et al. (2006) | 5 | 0,19% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
Buyck et al. (2016) | 4 | 0,16% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Comstock & Bailey (2000) | 4 | 0,16% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Corriol & Hannoire (2018) | 4 | 0,16% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Hale (1973) | 4 | 0,16% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Lechat & Courtecuisse (2010) | 4 | 0,16% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Lécuru et al. (2013) | 4 | 0,16% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Samuels et al. (2006) | 4 | 0,16% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Sutton & Waterston (1964) | 4 | 0,16% | 4 | 0,57% | 4 | 0,58% | 4 | 0,58% |
Welti & Courtecuisse (2010) | 4 | 0,16% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Berrin et al. (2012) | 3 | 0,12% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Braun et al. (1999) | 3 | 0,12% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
Cheype (2015) | 3 | 0,12% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Fournier et al. (2016) | 3 | 0,12% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
Herrera et al. (2015) | 3 | 0,12% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
Lechat & Fournier (2013) | 3 | 0,12% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
O’Donnell et al. (2022) | 3 | 0,12% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
Rivoire (2013) | 3 | 0,12% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Zaremski et al. (2014) | 3 | 0,12% | 3 | 0,43% | 3 | 0,43% | 3 | 0,43% |
Antonín & Noordeloos (2004) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Armada (2018) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Balazuc (1978) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Boidin & Gilles (1986) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Boidin & Gilles (2000) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Boidin et al. (1987) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Boidin et al. (1988) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Corriol (2009) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Ephytia (2020) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Gruhn & Rivoire (2016) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Lechat & Fournier (2020) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Looney et al. (2013) | 2 | 0,08% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Lücking (2015) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Nakasone (2015) | 2 | 0,08% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Patouillard (1902) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Petrini & Petrini (2012) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Redecker et al. (2007) | 2 | 0,08% | 0 | 0% | 0 | 0% | 0 | 0% |
Rogers & Ju (1998) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Sherwood (1977) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Sydow & Sydow (1920) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Valade & Moreau (2022) | 2 | 0,08% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Van et al. (2016) | 2 | 0,08% | 2 | 0,29% | 2 | 0,29% | 2 | 0,29% |
Allain & Goodman (2017) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Beller (1971) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Hypoxylon pulicicidum sp nov., a pantropical insecticide-producing endophyte. Plos One, 7(10) : 1-19.">Bills et al. (2012) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Boidin & Gilles (1988) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Boidin & Gilles (1988) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Boidin & Gilles (1989) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Carbone & Rubini (2024) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Chauvet (1990) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Chaverri et al. (2008) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Chen et al. (2017) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Coimbra et al. (2015) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Cooper (2011) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Dai (2010) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Dejean et al. (2010) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Delpont (2019) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Dennis (1954) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Gruhn et al. (2017) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Hudson et al. (2021) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Kuhnert et al. (2013) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Kuhnert et al. (2015) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Lechat & Fournier (2019) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Longcore et al. (1999) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Lowe et al. (2007) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Lücking et al. (2013) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Montagne (1840) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Pée-laby (1896) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Pfister (1974) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Réblová et al. (2020) | 1 | 0,04% | 0 | 0% | 0 | 0% | 0 | 0% |
Rivoire (2020) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Streito et al. (2007) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Vacher et al. (2014) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Verbeken et al. (2012) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |
Yang et al. (2021) | 1 | 0,04% | 1 | 0,14% | 1 | 0,14% | 1 | 0,14% |