Robert Muscarella
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Explore the profile of Robert Muscarella including associated specialties, affiliations and a list of published articles.
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30
Citations
460
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Recent Articles
11.
Lehtonen S, Muscarella R, Moulatlet G, Balslev H, Tuomisto H
Ecol Evol
. 2022 Jan;
11(24):17672-17685.
PMID: 35003631
We investigated how the phylogenetic structure of Amazonian plant communities varies along an edaphic gradient within the non-inundated forests. Forty localities were sampled on three terrain types representing two kinds...
12.
Poorter L, Rozendaal D, Bongers F, Almeida D, Alvarez F, Andrade J, et al.
Proc Natl Acad Sci U S A
. 2021 Nov;
118(49).
PMID: 34845017
One-third of all Neotropical forests are secondary forests that regrow naturally after agricultural use through secondary succession. We need to understand better how and why succession varies across environmental gradients...
13.
Hall J, Muscarella R, Quebbeman A, Arellano G, Thompson J, Zimmerman J, et al.
Sci Rep
. 2020 Mar;
10(1):4318.
PMID: 32152355
Projected increases in cyclonic storm intensity under a warming climate will have profound effects on forests, potentially changing these ecosystems from carbon sinks to sources. Forecasting storm impacts on these...
14.
Bellis E, Kelly E, Lorts C, Gao H, DeLeo V, Rouhan G, et al.
Proc Natl Acad Sci U S A
. 2020 Feb;
117(8):4243-4251.
PMID: 32047036
Host-parasite coevolution can maintain high levels of genetic diversity in traits involved in species interactions. In many systems, host traits exploited by parasites are constrained by use in other functions,...
15.
Balslev H, Kristiansen S, Muscarella R
Ecology
. 2019 Jul;
100(12):e02841.
PMID: 31336390
Western Amazonia is a global biodiversity hotspot that encompasses extensive variation in geologic, climatic, and biotic features. Palms (Arecaceae) are among the most diverse and iconic groups of plants in...
16.
Poorter L, Rozendaal D, Bongers F, de Almeida-Cortez J, Zambrano A, Alvarez F, et al.
Nat Ecol Evol
. 2019 Apr;
3(6):928-934.
PMID: 31011177
Tropical forests are converted at an alarming rate for agricultural use and pastureland, but also regrow naturally through secondary succession. For successful forest restoration, it is essential to understand the...
17.
Muscarella R, Messier J, Condit R, Hubbell S, Svenning J
Ecology
. 2018 Nov;
99(12):2740-2750.
PMID: 30485410
Predicting biotic responses to environmental change requires understanding the joint effects of abiotic conditions and biotic interactions on community dynamics. One major challenge is to separate the potentially confounding effects...
18.
Muscarella R, Bacon C, Faurby S, Antonelli A, Kristiansen S, Svenning J, et al.
Ann Bot
. 2018 Nov;
123(4):641-655.
PMID: 30395146
Background And Aims: Identifying the processes that generate and maintain biodiversity requires understanding of how evolutionary processes interact with abiotic conditions to structure communities. Edaphic gradients are strongly associated with...
19.
Gei M, Rozendaal D, Poorter L, Bongers F, Sprent J, Garner M, et al.
Nat Ecol Evol
. 2018 May;
2(7):1104-1111.
PMID: 29807995
The nutrient demands of regrowing tropical forests are partly satisfied by nitrogen-fixing legume trees, but our understanding of the abundance of those species is biased towards wet tropical regions. Here...
20.
Guerin M, Martin-Benito D, von Arx G, Andreu-Hayles L, Griffin K, Hamdan R, et al.
Ecol Evol
. 2018 Feb;
8(3):1655-1672.
PMID: 29435241
In the southwestern USA, recent large-scale die-offs of conifers raise the question of their resilience and mortality under droughts. To date, little is known about the interannual structural response to...