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207 results for “insect galls”
CGP01 Gall-insect densities on selected plant species in watersheds with different fire frequencies
Long-term monitoring of gall-insect densities on Solidago canadensis, Vernonia baldwinii, and Ceanothus herbaceous. Gall abundances are censused in watersheds burned at one- to twenty- year intervals to asses the role of fire frequency and time since fire on gall-insect population dynamics. The data sets contain the following: Watershed fire frequency, number of growing seasons since last fire, plant species, number of galled stems, and number of censused stems. Censuses conducted for the 1989-1996 growing seasons except 1992 and 1994, next scheduled census is fall 1997.
FIGURE 6 in Occurrence and characterization of insect galls in the Floresta Nacional de Silvânia, Brazil
FIGURE 6: Insect galls of Flona-Silvânia, Goiás, Brazil. (A) Gall 175), (B) Siparuna guianensis Aubl. (Gall 176), (C) S. guianensis (Gall 178), (D) S. guianensis (Gall 179), (E) Styrax ferrugineus Nees and Mart. (Gall 181), (F) S. ferrugineus (Gall 182), (G) Qualea grandiflora Mart. (Gall 184), (H) Q. grandiflora (Gall 185).
FIGURE 4 in Occurrence and characterization of insect galls in the Floresta Nacional de Silvânia, Brazil
FIGURE 4: Insect galls of Flona-Silvânia, Goiás, Brazil. (A) Copaifera langsdorffii Desf. (Gall 90), (B) C. langsdorffii (Gall 91), (C) C. langsdorffii (Gall 92), (D) Inga sp. (Gall 94), (E) Lamiaceae sp. (Gall 96), (F) Lauraceae sp. (Gall 97), (G) Nectandra sp. (Gall 99), (H) Strychnos pseudoquina A. St.-Hil. (Gall 100), (I) Diplusodon sp. (Gall 101), (J) Byrsonima verbascifolia (L.) DC. (Gall 102), (K) B. verbascifolia (Gall 103), (L) B. verbascifolia (Gall 105), (M) B. verbascifolia (Gall 106), (N) Peixotoa goiana C.E. Anderson (Gall 107), (O) P. goyana (Gall 108), (P) Malvaceae sp. (Gall 110), (Q) Melastomataceae sp. (Gall 113), (R) Guarea sp. (Gall 114), (S) Meliaceae sp. (Gall 115), (T) Eugenia bimarginata DC. (Gall 118), (U) Myrtaceae sp. (Gall 120), (V) Myrtaceae sp. (Gall 122), (W) Myrtaceae sp. (Gall 123), (X) Myrtaceae sp. (Gall 124).
FIGURE 3 in Occurrence and characterization of insect galls in the Floresta Nacional de Silvânia, Brazil
FIGURE 3: Insect galls of Flona-Silvânia, Goiás, Brazil. (A) Kielmeyera sp. (Gall 60), (B) Connarus suberosus Planch. (Gall 62), (C) Davilla elliptica A. St.-Hil. (Gall 63), (D) D. elliptica (Gall 64), (E) D. elliptica (Gall 65), (F) Dilleniaceae sp. (Gall 67), (G) Dilleniaceae sp. (Gall 68), (H) Doliocarpus sp. (Gall 69), (I) Diospyros sp. (Gall 70), (J) Erythroxylum sp. (Gall 72), (K) Erythroxylum suberosum A. St.-Hil. (Gall 74), (L) E. suberosum (Gall 75), (M) Manihot sp. (Gall 76), (N) Andira paniculata Benth. (Gall 77), (O) A. paniculata (Gall 78), (P) Bauhinia rufa (Bong.) Steud. (Gall 79), (Q) B. rufa (Gall 80), (R) B. rufa (Gall 81), (S) B. rufa (Gall 82), (T) B. rufa (Gall 83), (U) B. rufa (Gall 84), (V) B. rufa (Gall 85), (W) B. rufa (Gall 86), (X) Bauhinia sp. (Gall 87).
FIGURE 1 in Occurrence and characterization of insect galls in the Floresta Nacional de Silvânia, Brazil
FIGURE 1: Location and characterization of the study area. (A) Location of the Flona-Silvânia (marked by the star) in the city of Silvânia, State of Goiás, Midwest of Brazil. (B) Map of the Flona-Silvânia showing the areas of savanna (clear areas) and forest (dark areas).
FIGURE 2 in Occurrence and characterization of insect galls in the Floresta Nacional de Silvânia, Brazil
FIGURE 2: Insect galls of Flona-Silvânia, Goiás, Brazil. (A) Acanthaceae sp. (Gall 1), (B) Anacardiaceae sp. (Gall 5), (C) Lithraea molleoides
FIGURE 5 in Occurrence and characterization of insect galls in the Floresta Nacional de Silvânia, Brazil
FIGURE 5: Insect galls of Flona-Silvânia, Goiás, Brazil. (A) Myrtaceae sp. (Gall 125), (B) Myrtaceae sp. (Gall 126), (C) Myrtaceae sp. (Gall 127), (D) Ouratea hexasperma (A. St.-Hil.) Baill. (Gall 132), (E) Ouratea sp. (Gall 133), (F) Piper arboreum Aubl. (Gall 134), (G) Roupala montana Aubl. (Gall 135), (H) Roupala sp. (Gall 137), (I) Roupala sp. (Gall 139), (J) Cordiera macrophylla (K. Schum.) Kuntze (Gall 140), (K) Palicourea rigida Kunth (Gall 141), (L) Rubiaceae sp. (Gall 143), (M) Rubiaceae sp. (Gall 146), (N) Rubiaceae sp. (Gall 149), (O) Sapindaceae sp. (Gall 155), (P) Serjania sp. (Gall 161), (Q) Serjania sp. (Gall 164), (R) Serjania sp. (Gall 165), (S) Serjania sp. (Gall 166), (T) Serjania sp. (Gall 167), (U) Siparuna guianensis Aubl. (Gall 170), (V) S. guianensis Gall 171), (W) S. guianensis (Gall 173), (X) S. guianensis (Gall 174).
Figure 2 in Changes in galling insect community on Caryocar brasiliense trees mediated by soil chemical and physical attributes
Figure 2. Principal components regressions among: (A) Eurytoma sp. galling insect adults (Eur.) with phosphorus-Mehlich 1 (mg dm-3) contents (P.C.) and silt (dag kg-1) (Si.); (B) numbers of Eurytoma sp. glodoid galls (E.G.G.) with pH in water, capacity of cationic exchange (cmol dm-3) (C.C.E.), and P.C.; (C) area (mm2) of Eurytoma sp. glodoid galls (A.E.G.) with pH and clay (dag kg-1) (Cl.); (D) c length of conglomerate of Eurytoma sp. globoid galls (L.G.E.) with pH and Cl.; (E) width of conglomerate of Eurytoma sp. globoid galls (W.G.E.) with pH and Cl.; and (F) number of Hymenopteran discoid galls (H.D.G.) with aluminum (cmol dm-3) contents (A.C.), C.C.E., c and percentage of soil base saturation of the capacity of cationic exchange to pH 7.0 (S.B.S.) on Caryocar brasiliense trees in three years. The symbols represent the averages and the bars the standard errors. n = 111.
Figure 1 in Changes in galling insect community on Caryocar brasiliense trees mediated by soil chemical and physical attributes
Figure 1. Principal components regressions among: (A) abundance of galling insects (A.G.I.) with phosphorus-Mehlich 1 (mg dm-3) contents (P.C.) and sand (dag kg-1) (Sa.); (B) species richness of galling insects (S.R.G.I.) with capacity of cationic exchange (cmol dm-3) c (C.C.E.); (C) diversity of galling insects (D.G.I.) with C.C.E. and Sa.; (D) percentage of galled leaflet by all galls (P.G.L.) with pH in water and clay (dag kg-1) (Cl.); and (E) percentage of leaflet area taken by all galls (P.L.A.G.) with aluminum (cmol dm-3) contents (A.C.) and c C.C.E. on Caryocar brasiliense trees in three years. The symbols represent the averages and the bars the standard errors. n = 111.
Figure 4 in Changes in galling insect community on Caryocar brasiliense trees mediated by soil chemical and physical attributes
Figure 4. Principal components regressions among: (A) abundance of predators (A.Pr.) with phosphorus-Mehlich 1 (mg dm-3) contents (P.C.) and clay (dag kg-1) (Cl.); (B) species richness of predators (S.R.Pr.) with number of Hymenoptera discoid galls (H.D.G.), species richness of parasitoids (S.R.P.), and Cl.; (C) diversity of predators (D.Pr.) with diversity of parasitoids (D.P.) and Cl.; (D) number of Zelus armillatus (Zar.) with P.C., percentage of soil base saturation of the capacity of cationic exchange to pH 7.0 (S.B.S.), silt (dag kg-1) (Si.), numbers of Eurytoma sp. glodoid galls (E.G.G.), and capacity of cationic exchange (cmol dm-3) (C.C.E.); (E) number of Epipolops sp. (Epi.) c with protocooperanting ants (Ants), Cl., and pH in water; and (F) number of spiders (Spi.) with Ants, P.C., and Si. on Caryocar brasiliense trees in three years. The symbols represent the averages and the bars the standard errors. n = 111.
Figure 2 in Insect galls associated with Copaifera sabulicola J.A.S Costa & L.P Queiroz (Fabaceae): Characterization and new records
Figure 2 Gall morphotypes found on Copaifera sabulicola J.A.S Costa & L.P. Queiroz (Fabaceae) in Serra da Bandeira (Barreiras, Bahia, Brazil) from April 2015 to March 2016.
Figure 1 in Insect galls associated with Copaifera sabulicola J.A.S Costa & L.P Queiroz (Fabaceae): Characterization and new records
Figure 1 (A) Abundance and (B) frequency of gall morphotypes (%) found on Copaifera sabulicola J.A.S Costa & L.P. Queiroz (Fabaceae) in Serra da Bandeira (Barreiras, Bahia, Brazil) from April 2015 to March 2016.
Figs. 1–6 in Insect galls on Bauhinia cupulata (Fabaceae): morphotypes characterization and description of a new species of Schizomyia (Cecidomyiidae, Diptera)
Figs. 1–6. Different development stages of galls induced by Schizomyia barreirensis, sp. n. (1) First stage. (2) Second stage. (3) Third stage. (4) Fourth stage. (5) Fifth stage. (6) Last stage (gall cut open to show the larval chamber).
Figs. 19 and 20 in Insect galls on Bauhinia cupulata (Fabaceae): morphotypes characterization and description of a new species of Schizomyia (Cecidomyiidae, Diptera)
Figs. 19 and 20. Schizomyia barreirensis, sp. n. (19) Female, abdominal segments 7–8 (lateral view); (20) Ovipositor (ventral view). Scale bars in mm.
Figs. 13–18 in Insect galls on Bauhinia cupulata (Fabaceae): morphotypes characterization and description of a new species of Schizomyia (Cecidomyiidae, Diptera)
Figs. 13–18. Schizomyia barreirensis sp. n. (13) Male, head (frontal view); (14) Male, flagellomere 3; (15) Female, flagellomere 2; (16) Tarsal claws and empodium; (17) Male, abdominal segments 3–8 (lateral view); (18) Male, terminalia (dorsal view). Scale bars in mm.
Figs. 1–24 in Insect galls of a protected remnant of the Atlantic Forest tableland from Rio de Janeiro State (Brazil)
Figs. 1–24. Insect galls of Guaxindiba. 1. Astronium sp., globose leaf gall; 2. Schinus terebinthifolius, globose stem gall; 3. Xylopia sp., conical leaf gall; 4. Aspidosperma sp., circular leaf gall; 5. Adenocalymma sp., fusiform vein/tendril gall; 6. Amphilophium sp., globose vein gall; 7. Bignonia sp. 1, fusiform vein gall; 8. Bignonia sp. 2, vein swelling; 9. Bignonia sp. 3, vein swelling; 10 and 11. Martinella obovata, 10: globose bud gall; 11: petiole/vein gall; 12 and 13. Pyrostegia sp., 12: conical leaf gall; 13: vein swelling; 14. Bignoniaceae sp. 1, vein swelling; 15. Bignoniaceae sp. 2, tendril/petiole swelling; 16 and 17. Protium heptaphyllum, 16: stem gall; 17: bud gall; 18. Licania sp., globose vein gall; 19. Buchenavia sp., marginal leaf roll; 20. Erythroxylum pauferrense, conical leaf gall; 21. Dodecastigma sp., vein swelling; 22. Manihot sp., cylindrical leaf gall; 23-24. Pachystroma longifolium, 23: marginal leaf roll; 24: conical leaf gall.
Figure 1 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 1 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Lenticular leaf gall on Bignoniaceae sp.1, b) Linear leaf gall on Varronia curassavica Jacq. (Boraginaceae), c) Lenticular leaf gall on Protium brasiliense (Spr.) Engl. (Burseraceae), d-e) Galls on Andira fraxinifolia Benth. (Fabaceae): d) globoid, hairy leaf gall, e) Fusiform leaf vein gall, f) Fruit gall induced by Cecidomyiidae on Ocotea notata (Ness) Mez. (Lauraceae).
Figure 4 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 4 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Fusiform stem gall on Smilax rufescens Griseb (Smilacaceae), b-c) Leaf galls on Lantana fucata Lindl. (Verbenaceae): b) Globoid, c) Cylindrical.
Figure 3 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 3 Insect galls from the Maricá Environmental Protected Area (Maricá, RJ): a) Lenticular leaf gall on Eugenia copacabanensis Kiaersk. (Myrtaceae), b) Flower bud gall on Neomitranthes obscura (DC.) N. J. E. Silveira (Myrtaceae), c-d) Leaf galls on Myrtaceae sp.1: c) Marginal roll, d) lenticular, e) Globoid, glabrous leaf gall on Guapira opposita (Vell.) Reitz (Nyctaginaceae), f) Fruit gall on Coccoloba sp. (Polygonaceae).
Figure 6 in Gall-inducing insects from the Maricá Environmental Protection Area (RJ, Southeastern Brazil)
Figure 6 Grouping diagram (UPGMA) for similarity of gall-inducing insects among different Brazilian restingas. AC – Arraial do Cabo, ASP – Acaraí State Park, BAB – Babitonga, BRSP – Bertioga Restinga, State Park, CSSP – Costa do Sol State Park, FCPRNH – Fazenda Caruara Private Reserve of Natural Heritage, GR – Grumari Restinga, JRNP – Jurubatiba Restinga National Park, MEPA – Maricá Environmental Protection Area, MI – Marambaia Island, MR – Marambaia Restinga, PCVSP – Paulo César Vinha State Park, PSSBR – Praia do Sul State Biological Reserve.
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