American Journal of Plant Sciences

American Journal of Plant Sciences

ISSN Print: 2158-2742
ISSN Online: 2158-2750
www.scirp.net/journal/ajps
E-mail: [email protected]
"Stability of Brazilian Seasonally Dry Forests under Climate Change: Inferences for Long-Term Conservation"
written by Rosane G. Collevatti, Matheus Souza Lima-Ribeiro, José Alexandre F. Diniz-Filho, Guilherme Oliveira, Ricardo Dobrovolski, Levi Carina Terribile,
published by American Journal of Plant Sciences, Vol.4 No.4, 2013
has been cited by the following article(s):
  • Google Scholar
  • CrossRef
[1] Efeitos da perturbação antrópica crônica, mudança climática e dinâmica de regeneração florestal sobre a biomassa radicular na floresta seca Caatinga
2024
[2] Predicting co-distribution patterns of parrots and woody plants under global changes: The case of the Lilac-crowned Amazon and Neotropical dry forests
Rico… - Journal for Nature …, 2023
[3] Climate change and low species drought tolerance will negatively impact plant richness in the Neotropical seasonally dry forests
Ascencio, DA Prieto-Torres, 2023
[4] The Genus Diplusodon (Lythraceae)
2022
[5] How important was polyploidy in the diversification of herbs in the Chaquean Domain? The case of the Turnera sidoides autopolyploid complex (Passifloraceae …
Botanical Journal of …, 2022
[6] Analyzing individual drivers of global changes promotes inaccurate long-term policies in deforestation hotspots: The case of Gran Chaco
Torres, S Díaz, JM Cordier, R Torres… - Biological …, 2022
[7] Temporal and spatial diversification along the Amazonia-Cerrado transition in Neotropical treefrogs of the Boana albopunctata species group
Molecular Phylogenetics …, 2022
[8] Aridity, but not disturbance, reduces the specialization and modularity of plant–insect herbivore interaction networks in Caatinga dry forest
Neto, X Arnan, JD Ribeiro-Neto… - Journal of Insect …, 2022
[9] RNA-Seq reveals different responses to drought in Neotropical trees from savannas and seasonally dry forests
BMC plant …, 2021
[10] Techos verdes: islas de biodiversidad en ambientes urbanos
2021
[11] Soil predictors are crucial for modelling vegetation distribution and its responses to climate change
2021
[12] Skipping the Dry Diagonal: spatio-temporal evolution of Croton section Cleodora (Euphorbiaceae) in the Neotropics
2021
[13] Effect of rainfall and soil fertility on total phenol and tannin contents in Cenostigma microphyllum (Mart. ex G. Don) E. Gagnon & GP Lewis (Fabaceae)
2021
[14] Vegetation and Glacier Trends in the Area of the Maritime Alps Natural Park (Italy): MaxEnt Application to Predict Habitat Development
2021
[15] Supporting climate-smart restoration of tropical dry forests: a toolbox for guiding diversity-oriented decision making
2021
[16] Molecular Phylogeny of Cryptonanus (Didelphidae: Thylamyini): Evidence for a recent and complex diversification in South American open biomes
2021
[17] The phylogenetic diversity and structure of the seasonally dry forests in the Neotropics
2021
[18] Present and future potential distribution of the endangered Anairetes alpinus (Passeriformes: Tyrannidae) under global climate change scenarios
Chutas, G Ferro… - Journal of …, 2020
[19] Optimized maxent model predictions of climate change impacts on the suitable distribution of cunninghamia lanceolata in China
2020
[20] Climate change promotes species loss and uneven modification of richness patterns in the avifauna associated to Neotropical seasonally dry forests
2020
[21] The diversification of extant angiosperms in the South America dry diagonal
2020
[22] Soil and climate equally contribute to changes in the species compositions of Brazilian dry forests across 300 km
2020
[23] Present and future potential distribution of the endangered Anairetes alpinus (Passeriformes: Tyrannidae) under global climate change scenarios.
2020
[24] Geographical distribution of Stryphnodendron adstringens Mart. Coville (Fabaceae): modeling effects of climate change on past, present and future
2019
[25] Climate change will drive mammal species loss and biotic homogenization in the Cerrado Biodiversity Hotspot
2019
[26] Expansion of the agricultural frontier in the largest South American Dry Forest: Identifying priority conservation areas for snakes before everything is lost
2019
[27] Caracterização e história biogeográfica dos ecossistemas secos neotropicais
2018
[28] Aridity drives plant biogeographical sub regions in the Caatinga, the largest tropical dry forest and woodland block in South America
PLOS ONE, 2018
[29] Efficiency of protected areas in Amazon and Atlantic Forest conservation: A spatio-temporal view
Acta Oecologica, 2018
[30] Combining the effects of biological invasion and climate change into systematic conservation planning for the Atlantic Forest
Biological Invasions, 2018
[31] Chronic human disturbance affects plant trait distribution in a seasonally dry tropical forest
Environmental Research Letters, 2018
[32] Using tree species inventories to map biomes and assess their climatic overlaps in lowland tropical South America
Global Ecology and Biogeography, 2018
[33] Geographical ecology and conservation of Eugenia L. (Myrtaceae) in the Brazilian Cerrado: Past, present and future
Austral Ecology, 2018
[34] Identifying priority conservation areas for birds associated to endangered Neotropical dry forests
Biological Conservation, 2018
[35] Characterization and biogeographic history of neotropical dry ecosystems
2018
[36] Caracterização e história biogeográfica dos ecossistemas secos neotropicais.
2018
[37] Abiotic and Biotic Drivers of Turnover and Community Assembly in African Mammals
2018
[38] Macroecologia reprodutiva de plantas nas diferentes formações fitogeográficas da Caatinga: efeitos de mudanças climáticas, déficit hídrico e …
2018
[39] Macroecologia reprodutiva de plantas nas diferentes formações fitogeográficas da Caatinga: efeitos de mudanças climáticas, déficit hídrico e perturbações antrópicas …
2018
[40] New range limit of the Anopetia gounellei (Aves: Trochilidae): state of art and a review on the updated area
2017
[41] Demographic stability and high historical connectivity explain the diversity of a savanna tree species in the Quaternary
Annals of Botany, 2017
[42] Plant-parasitic nematodes: towards understanding molecular players in stress responses
2017
[43] Climatic changes can drive the loss of genetic diversity in a Neotropical savanna tree species
Global change biology, 2017
[44] New range limit of Anopetia gounellei (Aves: Trochilidae): the state of art and a review on the updated area
2017
[45] Comparative cytomolecular analyses reveal karyotype variability related to biogeographic and species richness patterns in Bombacoideae (Malvaceae)
Plant Systematics and Evolution, 2017
[46] Biogeografia histórica e conservação das florestas úmidas da América do Sul: uma abordagem baseada em modelos de nicho ecológico
2016
[47] ResearchOnline@ JCU
2016
[48] Strong influence of palaeoclimate on the structure of modern African mammal communities
2016
[49] Demographical history and palaeodistribution modelling show range shift towards Amazon Basin for a Neotropical tree species in the LGM
2016
[50] Associations between Soil Variables and Vegetation Structure and Composition of Caribbean Dry Forests
2016
[51] Reconstructing the Mexican Tropical Dry Forests via an Autoecological Niche Approach: Reconsidering the Ecosystem Boundaries
PLOS ONE, 2016
[52] Coalescent Simulation and Paleodistribution Modeling for Tabebuia rosealba Do Not Support South American Dry Forest Refugia Hypothesis
PLOS ONE, 2016
[53] Diversidade genética de Eugenia dysenterica e sua correlação com a riqueza de Eugenia (Myrtaceae) no cerrado
2016
[54] Systematic conservation planning for the Paranã River Basin, Brazil, under climate change
2016
[55] 글로벌 생물다양성 오픈데이터 공유네트워크
2016
[56] A complexa história evolutiva de Cedrela fissilis (meliaceae) da Mata Atlântica brasileira durante as mudanças climáticas do quaternário
2016
[57] GUILHERME DE OLIVEIRA 2, 7, MATHEUS SOUZA LIMA-RIBEIRO 3, LEVI CARINA TERRIBILE 3, RICARDO DOBROVOLSKI 4, MARIANA PIRES DE …
2015
[58] 气候变化情景下物种适宜生境预测研究进展
四川动物, 2015
[59] Environmental and historical controls of floristic composition across the South American Dry Diagonal
Journal of Biogeography, 2015
[60] Conservation biogeography of the Cerrado's wild edible plants under climate change: Linking biotic stability with agricultural expansion
American journal of botany, 2015
[61] Assessing the resilience of global seasonally dry tropical forests
International Forestry Review, 2015
[62] Response of the endangered tropical dry forests to climate change and the role of Mexican Protected Areas for their conservation
Global Change Biology, 2015
[63] EcoClimate: a database of climate data from multiple models for past, present, and future for macroecologists and biogeographers
Biodiversity Informatics, 2015
[64] Padrões e processos associados à diversidade da anurofauna em áreas abertas da América do Sul: filogeografia de physalaemus cuvieri (anura: leptodactylidae)
2014
[65] Rain forests in subtropical mountains of Dominican Republic
2014
[66] Variabilidade e divergência genética de caracteres quantitativos e marcadores neutros em populações de Eugenia dysenterica DC
2014
SCIRP Newsletter
Copyright © 2006-2026 Scientific Research Publishing Inc. All Rights Reserved.
Top