Baobab Index

A database of publications about African genetic resources and digital sequence information — real bibliographic metadata pulled from PubMed, with a durable link back to the source record. Full text is frequently paywalled even when the abstract/metadata is open, so this is a metadata catalog with an outbound link, not a hosted archive; this platform never claims to host or redistribute full text.

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Quantitative trait locus analysis of parasite density reveals that HbS gene carriage protects severe malaria patients against Plasmodium falciparum hyperparasitaemia.

do Sambo MR, Penha-Gonçalves C, Trovoada MJ, Costa J, Lardoeyt R, Coutinho A · Malar J (2015)

São Tomé and Príncipe · DOI: 10.1186/s12936-015-0920-z

Haemoglobin S (HbS) is the gene known to confer the strongest advantage against malaria morbidity and mortality. Multiple HbS effects have been described resulting in protection against parasitaemia and reduction of severe malaria risk. This study aimed to explore HbS protection against severe malaria and Plasmodium falciparum parasitaemia in Angolan children exhibiting different severe malaria syndromes. A case-control study was designed with 430 malaria cases (n = 288 severe malaria and n = 142 uncomplicated malaria) and 319 uninfected controls, attending a central paediatric hospital in Luanda. Severe malaria syndromes were cerebral malaria (n = 130), severe malaria anaemia (n = 30) and hyperparasitaemia (n = 128). Quantitative trait locus analysis was carried out to study HbS association to parasite densities. Previously reported HbS protection against severe malaria was confirmed in case-control analysis (P = 2 × 10(-13)) and corroborated by transmission disequilibrium test (P = 4 × 10(-3)). High parasite density protection conferred by HbS was detectable within severe malaria patients (P = 0.04). Stratifying severe malaria patients according parasite densities, it was found that HbS was highly associated to hyperparasitaemia protection (P = 1.9 × 10(-9)) but did not protect non-hyperparasitaemic children against severe malaria complications, namely cerebral malaria and severe malaria anaemia. Many studies have shown that HbS protects from severe malaria and controls parasite densities but the analysis further suggests that HbS protection against severe malaria syndromes was at a large extent correlated with control of parasitaemia levels. This study supports the hypothesis that HbS confers resistance to hyperparasitaemia in patients exhibiting severe malaria syndromes and highlights that parasitaemia should be taken into account when evaluating HbS protection in severe malaria.

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publicrestrictedAFDSI-PUB-698

Application of the Relationship-Based Model to Engagement for Field Trials of Genetically Engineered Malaria Vectors.

Kormos A, Lanzaro GC, Bier E, Dimopoulos G, Marshall JM, Pinto J, Aguiar Dos Santos A, Bacar A, Sousa Pontes Sacramento Rompão H, James AA · Am J Trop Med Hyg (2020)

São Tomé and Príncipe · DOI: 10.4269/ajtmh.20-0868

The transition of new technologies for public health from laboratory to field is accompanied by a broadening scope of engagement challenges. Recent developments of vector control strategies involving genetically engineered mosquitoes with gene drives to assist in the eradication of malaria have drawn significant attention. Notably, questions have arisen surrounding community and regulatory engagement activities and of the need for examples of models or frameworks that can be applied to guide engagement. A relationship-based model (RBM) provides a framework that places stakeholders and community members at the center of decision-making processes, rather than as recipients of predetermined strategies, methods, and definitions. Successful RBM application in the transformation of healthcare delivery has demonstrated the importance of open dialogue and relationship development in establishing an environment where individuals are actively engaged in decision-making processes regarding their health. Although guidelines and recommendations for engagement for gene drives have recently been described, we argue here that communities and stakeholders should lead the planning, development, and implementation phases of engagement. The RBM provides a new approach to the development of ethical, transparent, and effective engagement strategies for malaria control programs.

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publicrestrictedAFDSI-PUB-697

Complete mitogenome sequence of Anopheles coustani from São Tomé island.

Campos M, Crepeau M, Lee Y, Gripkey H, Rompão H, Cornel AJ, Pinto J, Lanzaro GC · Mitochondrial DNA B Resour (2020)

São Tomé and Príncipe · DOI: 10.1080/23802359.2020.1823273

We report the first complete mitogenome (Mt) sequence of

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publicrestrictedAFDSI-PUB-696

The origin of island populations of the African malaria mosquito, Anopheles coluzzii.

Campos M, Hanemaaijer M, Gripkey H, Collier TC, Lee Y, Cornel AJ, Pinto J, Ayala D, Rompão H, Lanzaro GC · Commun Biol (2021)

São Tomé and Príncipe · DOI: 10.1038/s42003-021-02168-0

Anopheles coluzzii is a major malaria vector throughout its distribution in west-central Africa. Here we present a whole-genome study of 142 specimens from nine countries in continental Africa and three islands in the Gulf of Guinea. This sample set covers a large part of this species' geographic range. Our population genomic analyses included a description of the structure of mainland populations, island populations, and connectivity between them. Three genetic clusters are identified among mainland populations and genetic distances (F

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publicrestrictedAFDSI-PUB-695

A large epidemic of a necrotic skin infection in the Democratic Republic of São Tomé and Principe: an epidemiological study.

Subissi L, Sousa A, Ba I, Perrocheau A, Quick J, Meredith L, Augustinho E, Sousa BC, Lima V, Luiz J, Diallo AB, Djingarey MH, Da Cruz CA, Pontes FS, Tomé Palmer M, Conceição M, Santana Gil V, Fall IS · Int J Infect Dis (2021)

São Tomé and Príncipe · DOI: 10.1016/j.ijid.2021.06.050

In 2016-18, the Democratic Republic of São Tomé and Príncipe suffered a necrotic skin infection epidemic. A surveillance system was established after increased hospitalisations for this infection. Microbiology results were available for samples analysed in December 2016 and March 2017 using whole genome sequencing and metagenomics. Negative binomial regression was used to study the association of weather conditions with monthly case counts in a time-series analysis. From October 2016 to October 2018, the epidemic cumulative attack rate was 1.5%. The first peak lasted 5 months, accounting for one-third of total cases. We could not conclusively identify the aetiological agent(s) due to the country's lack of microbiology capacity. Increased relative humidity was associated with increased monthly cases (incidence rate ratio (IRR) 1.05, 95% CI 1.02-1.09), and higher precipitation in the previous month with a higher number of cases in the following month (months with 0-49 mm rainfall compared with months with 50-149 mm and ≥150 mm: IRR 1.44, 95 % CI 1.13-1.78 and 1.50, 95% CI 1.12-1.99, respectively). This epidemic was favoured by increased relative humidity and precipitation, potentially contributing to community-based transmission of ubiquitous bacterial strains superinfecting skin wounds. World Health Organization Regional Office for Africa, Ministry of Health.

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publicrestrictedAFDSI-PUB-694

A new species of scops-owl (Aves, Strigiformes, Strigidae, Otus) from Príncipe Island (Gulf of Guinea, Africa) and novel insights into the systematic affinities within Otus.

Melo M, Freitas B, Verbelen P, da Costa SR, Pereira H, Fuchs J, Sangster G, Correia MN, de Lima RF, Crottini A · Zookeys (2022)

São Tomé and Príncipe · DOI: 10.3897/zookeys.1126.87635

A new species of scops-owl (Aves, Strigiformes, Strigidae, ResumoDescrevemos uma nova espécie de mocho-de-orelhas ou kitóli (Strigiformes: Strigidae:

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publicrestrictedAFDSI-PUB-693

DNA Barcode library of the endemic-rich avifauna of the oceanic islands of the Gulf of Guinea.

Melo M, Covas R, de Lima RF, Veiga da Horta O, do Bom Jesus C, Barros da Veiga M, Samba S, Fonseca R, Cabinda G, Viegas L, Silva TL, Mata VA, Beja P, Ferreira S · Biodivers Data J (2023)

São Tomé and Príncipe · DOI: 10.3897/BDJ.11.e110428

The BioSTP: DNA Barcoding of endemic birds from oceanic islands of the Gulf of Guinea dataset contains records of 155 bird specimens belonging to 56 species in 23 families, representing over 80% of the diversity of the breeding landbird community. All specimens were collected on Príncipe, São Tomé and Annobón Islands between 2002 and 2021 and morphologically identified to species or subspecies level by qualified ornithologists. The dataset includes all endemic species and 3/4 of the extant endemic subspecies of the islands. This dataset is the second release by BioSTP and it greatly increases the knowledge on the DNA barcodes of Gulf of Guinea birds. All DNA extractions are deposited at Associação BIOPOLIS - CIBIO, Research Center in Biodiversity and Genetic Resources. The dataset includes DNA barcodes for all 29 endemic bird species and for 11 of the 15 extant endemic bird subspecies from the oceanic islands of the Gulf of Guinea. This is the first major DNA barcode set of African birds. The three endemic subspecies of

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publicrestrictedAFDSI-PUB-692

Widespread introduced species dominate the urban tree assemblage on the endemic-rich tropical island of São Tomé.

Strauß L, de Lima RF, Baker TR, Benitez Bosco L, Dauby G, Lachenaud O, Lima A, Madre Deus D, Madureira MDC, Soares E, Sousa P, Stévart T, Dallimer M · Ecol Evol (2024)

São Tomé and Príncipe · DOI: 10.1002/ece3.70153

The Afrotropics are experiencing some of the fastest urbanisation rates on the planet but the impact of city growth on their rich and unique biodiversity remains understudied, especially compared to natural baselines. Little is also known about how introduced species influence β-diversity in these contexts, and how patterns coincide with native ranges of species. Here we investigated how tree assemblages of the endemic-rich Afrotropical island of São Tomé differed between urban, rural and natural zones. These were primarily characterised by urban greenspaces, shade plantations, and old-growth forests, respectively. Based on 81 transects, we assessed biodiversity metrics of endemic, native and introduced species. Tree abundance and species richness were highest in the natural zone, where the composition was most different from the urban zone. The tree community of the rural zone was the most uneven and had the least variation among transects, representing the lowest β-diversity. The urban zone was dominated by introduced species (57.7%), while the natural zone hosted almost exclusively native species (93.3%), including many endemics (26.1%). The biogeographic realms that species originated from were particularly diverse in the urban zone, with few species from the Afrotropics. In contrast to native and endemic trees, introduced trees were clearly associated with urban and rural expansion, as they were much more abundant and species-rich in these zones than in the natural zone, facilitating biotic homogenisation. These findings highlight how urban and rural environments are affecting the native tree flora of São Tomé, and the need for conservation measures geared towards globally threatened and endemic tree species. Importantly, these require the protection of natural forests, despite the rising land demands for settlements and agriculture. Ultimately, such action to conserve endemic trees will contribute to global efforts to prevent further biodiversity declines.

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publicrestrictedAFDSI-PUB-691

Insectivorous bat activity dataset across different land-use types in the Islands of São Tomé and Príncipe, Central West Africa.

Palmeirim AF, Araújo-Fernandes AC, Castro-Fernandes AS, Guedes P, Cassari J, Mata VA, Yoh N, Rocha R, Martínez-Arribas J, Alves-Martins F · Biodivers Data J (2024)

São Tomé and Príncipe · DOI: 10.3897/BDJ.12.e131955

São Tomé and Príncipe oceanic islands, in Central West Africa, are characterised by exceptional levels of endemism. Since human colonisation in the mid-15 Based on a sampling effort of 1,584 hours of recordings manually processed to identify all the contained bat passes, this dataset, publicly available on GBIF, provides comprehensive information on the activity of insectivorous bats across two endemic-rich oceanic islands in the Gulf of Guinea. For each bat pass identified, we report the identified species, geographic coordinates, land-use type, altitude, date and time. This is the first public dataset providing detailed information on species-level habitat use for insectivorous bats on oceanic islands in Africa.

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publicrestrictedAFDSI-PUB-690

Patterns of Gene Flow in Anopheles coluzzii Populations From Two African Oceanic Islands.

Campos M, Rašić G, Viegas J, Cornel AJ, Pinto J, Lanzaro GC · Evol Appl (2024)

São Tomé and Príncipe · DOI: 10.1111/eva.70044

The malaria vector

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publicrestrictedAFDSI-PUB-689

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