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INPA | Environmental monitoring of ants (Hymenoptera: Formicidae) in the influence areas of Santo Antônio Hydroelectric Power-Plant in Rondônia, Brazil.

Citation

Fernandes I, Souza J (2025). INPA | Environmental monitoring of ants (Hymenoptera: Formicidae) in the influence areas of Santo Antônio Hydroelectric Power-Plant in Rondônia, Brazil.. Version 1.9. Sistema de Informação sobre a Biodiversidade Brasileira - SiBBr. Sampling event dataset https://doi.org/10.15468/gz2tsv accessed via GBIF.org on 2025-06-19.

Description

Biodiversity loss is accelerating rapidly in response to increasing human influence on the Earth’s natural ecosystems. One way to overcome this problem is focusing in places of human interest and monitoring the changes and the impacts on the biodiversity. The study was conducted at six sites within the influence area of Santo Antônio Hydroelectric Power-Plant in the margins of Madeira River, Rondônia. The sites cover a latitudinal gradient of approximately 100 km in the Brazilian Amazon Basin. Sampling design included six sampling modules with six plots each totaling 30 sampling plot. Sampling plots were distrubuted with 0 km, 0.5 km, 1 km, 2 km, 3 km and 4 km, measured perpendiculary from the river margin towards the interior of the forest. To sampling the ground-dwelling ants was used the ALL Protocol (Ants of the Leaf Litter), standardized globally in the inventories of ant fauna. For the purpose of impact indicators, the first two campaigns (September 2011 to November 2011) were carried out in the pre-filling period, while the campaigns three to ten (Febuary 2012 to November 2014) were carried out during and after the filling of the Hydroelectric reservoir. A total of 253 events with a total of 9.165 occurrences were accounted during the monitoring, the ants were distributed in 10 subfamily and 68 genera and 324 species/morphospecies. The impact in the ant biodiversity during the period pre and after-filling were mesuared by ecological indicators, and also by presence and absence of some species/morphospecies. This is the first study with taxonomic and ecological treatment used to monitoring the impact of a hydroeletric power-plant in the ant fauna in the world.

Sampling Description

Study Extent

The sites cover a latitudinal gradient of approximately 100 km in the Brazilian Amazon Basin. Sampling design included six sampling modules with six plots each totaling 30 sampling plot. Sampling plots were distrubuted with 0 km, 0.5 km, 1 km, 2 km, 3 km and 4 km, measured perpendiculary from the river margin towards the interior of the forest. For the purpose of impact indicators, the first two campaigns 1-2 (September 2011 to November 2011) were carried out in the pre-filling period, while the campaigns 3-10 (February 2012 to November 2014) were carried out after the filling of the Hydroelectric reservoir. The campaigns were conducted during dry and rainy season of amazon, during four years with intervals of three months between each campaigns (whenever it possible).

Sampling

We have collected along the transects (0, 0.5, 1, 2, 3, 4), the amount of 1m2 of leaf litter were collected. Leaf litter was sifted through a wire sieve of 1-cm mesh size, by shaking the sifter vigorously at least 15 times. The sifted leaf litter was then placed in a mini-Winkler extractor for 24 h (see Agosti et al. 2000 for a detailed discussion of this method). If the sifted leaf litter volume exceeded the capacity of a single mini-Winkler extractor, a second extractor was used. Only worker ants were counted in the samples and recorded as incidence data for analysis. Subsequently, in the laboratory, ants were sorted to morphospecies, vouchers of each morphospecies were mounted, and morphospecies were identified to named species whenever permitted by current taxonomy.

Method steps

  1. The protocol adopted for collection of litter ants was called ALL Protocol (leaflet ants), Globally standardized on inventories of a litter ant fauna (Alonso & Agosti, 2000). In each module, a transect of 5 km was used, in which the first six plots were used: 0 km, 0.5 km, 1.0 km, 2.0 km, 3.0 km and 4.0 km In each plot, five subplots (1 x 1 m) were placed in the following positions within the plot: 50 m, 100 m, 150 m, 200 m and 250 m. Samples collected in each of the subplots were placed in mini-Winkler type extractors and screened after 24 hours, completing the sorting. The material was placed in 90% alcohol, identified and analyzed in sequence to each of the collection campaigns, using stereoscope microscope.

Taxonomic Coverages

All the ants were identified to Family, Subfamily, Genus and Species or morphoespecies.
  1. Formicidae Latreille, 1809
    rank: family
  2. Agroecomyrmecinae Carpenter, 1930.
    rank: subfamily
  3. Tatuidris Brown & Kempf, 1968
    rank: genus
  4. Amblyoponinae Forel, 1893.
    rank: subfamily
  5. Fulakora Mann, 1919.
    rank: genus
  6. Prionopelta Mayr, 1866.
    rank: genus
  7. Dolichoderinae Forel, 1878.
    rank: subfamily
  8. Azteca Forel, 1878.
    rank: genus
  9. Dolichoderus Lund, 1831.
    rank: genus
  10. Linepithema Mayr, 1866.
    rank: genus
  11. Tapinoma Foerster, 1850.
    rank: genus
  12. Dorylinae Leach, 1815.
    rank: subfamily
  13. Cheliomyrmex Mayr, 1870.
    rank: genus
  14. Eciton Latreille, 1804.
    rank: genus
  15. Labidus Jurine, 1807.
    rank: genus
  16. Neivamyrmex Borgmeier, 1940.
    rank: genus
  17. Neocerapachys Borowiec, 2016.
    rank: genus
  18. Syscia Roger, 1861.
    rank: genus
  19. Ectatomminae Emery, 1895.
    rank: subfamily
  20. Ectatomma Smith, 1858.
    rank: genus
  21. Gnamptogenys Roger, 1863.
    rank: genus
  22. Typhlomyrmex Mayr, 1862.
    rank: genus
  23. Formicinae Latreille, 1809.
    rank: subfamily
  24. Acropyga Roger, 1862.
    rank: genus
  25. Brachymyrmex Mayr, 1868.
    rank: genus
  26. Camponotus Mayr, 1861.
    rank: genus
  27. Gigantiops Roger, 1863.
    rank: genus
  28. Nylanderia Emery, 1906.
    rank: genus
  29. Myrmicinae Lepeletier de Saint-Fargeau, 1835.
    rank: subfamily
  30. Acromyrmex Mayr, 1865.
    rank: genus
  31. Allomerus Mayr, 1878.
    rank: genus
  32. Apterostigma Mayr, 1865.
    rank: genus
  33. Atta Fabricius, 1804.
    rank: genus
  34. Basiceros Schulz, 1906.
    rank: genus
  35. Blepharidatta Wheeler, 1915.
    rank: genus
  36. Carebara Westwood, 1840.
    rank: genus
  37. Cephalotes Latreille, 1802.
    rank: genus
  38. Crematogaster Lund, 1831.
    rank: genus
  39. Cyphomyrmex Mayr, 1862.
    rank: genus
  40. Eurhopalothrix Brown & Kempf, 1961.
    rank: genus
  41. Hylomyrma Forel, 1912.
    rank: genus
  42. Lachnomyrmex Wheeler, 1910.
    rank: genus
  43. Megalomyrmex Forel, 1885.
    rank: genus
  44. Monomorium Mayr, 1855.
    rank: genus
  45. Mycetarotes Emery, 1913.
    rank: genus
  46. Mycocepurus Forel, 1893.
    rank: genus
  47. Myrmicocrypta Smith, 1860.
    rank: genus
  48. Nesomyrmex Wheeler, 1910.
    rank: genus
  49. Ochetomyrmex Mayr, 1878.
    rank: genus
  50. Octostruma Forel, 1912.
    rank: genus
  51. Oxyepoecus Santschi, 1926.
    rank: genus
  52. Pheidole Westwood, 1839.
    rank: genus
  53. Rhopalothrix Mayr, 1870.
    rank: genus
  54. Rogeria Emery, 1894.
    rank: genus
  55. Sericomyrmex Mayr, 1865.
    rank: genus
  56. Solenopsis Westwood, 1840.
    rank: genus
  57. Stegomyrmex Emery, 1912.
    rank: genus
  58. Strumigenys Smith, 1860.
    rank: genus
  59. Tetramorium Mayr, 1855.
    rank: genus
  60. Trachymyrmex Forel, 1893.
    rank: genus
  61. Tranopelta Mayr, 1866.
    rank: genus
  62. Wasmannia Forel, 1893.
    rank: genus
  63. Ponerinae Lepeletier de Saint-Fargeau, 1835.
    rank: subfamily
  64. Anochetus Mayr, 1861
    rank: genus
  65. Dinoponera Roger, 1861
    rank: genus
  66. Hypoponera Santschi, 1938
    rank: genus
  67. Leptogenys Roger, 1861
    rank: genus
  68. Mayaponera Schmidt & Shattuck, 2014
    rank: genus
  69. Neoponera Emery, 1901
    rank: genus
  70. Odontomachus Latreille, 1804
    rank: genus
  71. Pachycondyla Smith, 1858
    rank: genus
  72. Pseudoponera Emery, 1900
    rank: genus
  73. Rasopone Schmidt & Shattuck, 2014
    rank: genus
  74. Simopelta Mann, 1922
    rank: genus
  75. Thaumatomyrmex Mayr, 1887
    rank: genus
  76. Proceratiinae Emery, 1895
    rank: subfamily
  77. Discothyrea Roger, 1863
    rank: genus
  78. Pseudomyrmecinae Smith, 1952
    rank: subfamily
  79. Pseudomyrmex Lund, 1831
    rank: genus
  80. Mycetophylax Emery, 1913
    rank: genus
  81. Syscia Roger, 1861
    rank: genus

Geographic Coverages

Areas of Santo Antônio Hydroelectric Power-Plant in Rondônia, Brazil.

Bibliographic Citations

Contacts

Itanna Fernandes
originator
position: Doutoranda
Instituto Nacional de Pesquisas da Amazônia - INPA
Av: André Araújo, 2936, Petrópolis
Manaus
69067375
Amazonas
BR
Telephone: 9236433305
email: [email protected]
homepage: http://portal.inpa.gov.br/
Itanna Fernandes
metadata author
position: Ph.D. Candidate
Instituto Nacional de Pesquisas da Amazônia - INPA
Av: André Araújo, 2936, Petrópolis
Manaus
69067375
Amazonas
BR
Telephone: 9236433305
email: [email protected]
homepage: http://portal.inpa.gov.br/
Jorge Souza
metadata author
position: Professor, Ph.D
Instituto Nacional de Pesquisas da Amazônia - INPA
Av: André Araújo, 2936, Petrópolis
Manaus
69067375
Amazonas
BR
email: [email protected]
Itanna Oliveira Fernandes
author
position: Ph.D Candidate
Instituto Nacional de Pesquisas da Amazônia - INPA
Av: André Araújo, 2936, Petrópolis
Manaus
69067375
Amazonas
BR
Telephone: 559236433305
email: [email protected]
Jorge Souza
author
position: Pós Doutor
Instituto Nacional de Pesquisas da Amazônia - INPA
Av: André Araújo, 2936, Petrópolis
Manaus
69067375
Amazonas
BR
email: [email protected]
Itanna Fernandes
administrative point of contact
position: Doutoranda
Instituto Nacional de Pesquisas da Amazônia - INPA
Av: André Araújo, 2936, Petrópolis
Manaus
69067375
Amazonas
BR
Telephone: 9236433305
email: [email protected]
homepage: http://portal.inpa.gov.br/
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