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Leaf‐cutting ant nests support less dense and impoverished seed assemblages in a human‐modified Caatinga dry forest.

Authors :
Oliveira, Fernanda M. P.
Knoechelmann, Clarissa M.
Wirth, Rainer
Tabarelli, Marcelo
Leal, Inara R.
Source :
Biotropica; Mar2023, Vol. 55 Issue 2, p444-453, 10p
Publication Year :
2023

Abstract

Regenerating forests make up an increasingly large portion of tropical landscapes worldwide and regeneration dynamics may be influenced by leaf‐cutting ants (LCA), which proliferate in disturbed areas and collect seeds for fungus culturing. Here, we investigate how LCA influences seed fate in human‐modified areas of Caatinga dry forest. We evaluate the seed deposition and predation on Atta opaciceps nests, foraging habitat surrounding nest and control habitat away of nest influence of 15 colonies located along a forest cover gradient during the rainy and dry seasons. For each habitat, four 50‐cm2 plots were established and all seeds on the soil surface were collected along 1 year. We recorded 13,628 seeds distributed among 47 species and 36.57% of the total seeds did not show any sign of predation. Nest mound habitats supported low‐density and species‐poor seed assemblages, which were taxonomically distinct from the control habitats. These effects only occurred in the rainy season. The proportion of undamaged seeds were similar across the habitats. While forest cover did not influence seed assemblage in terms of species richness or seed predation, it did interact with habitat type via increments in seed abundance as forest cover increased across the nests. Forest cover also affected seed composition, but only in the rainy season. These results indicate that LCA decrease seed deposition in areas under their influence, particularly on the nest mounds. As LCA profit from human disturbance in the Caatinga, their role as seed 'sinks' should be enhanced in disturbed Caatinga patches, particularly during the rainy season, when most of the plant recruitment occurs. Our findings reinforce the importance of LCA as drivers of forest dynamics and resilience in human‐modified landscapes. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00063606
Volume :
55
Issue :
2
Database :
Complementary Index
Journal :
Biotropica
Publication Type :
Academic Journal
Accession number :
162380797
Full Text :
https://doi.org/10.1111/btp.13198