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Georgios Joannis Pappas Jr

Explore the profile of Georgios Joannis Pappas Jr including associated specialties, affiliations and a list of published articles. Areas
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Articles 17
Citations 191
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Recent Articles
1.
de Almeida F, de Campos T, Pappas Jr G
F1000Res . 2023 Nov; 12:1205. PMID: 37970066
Advancements in DNA sequencing technology have transformed the field of bacterial genomics, allowing for faster and more cost effective chromosome level assemblies compared to a decade ago. However, transforming raw...
2.
Rocha R, de Almeida F, Pappas M, Pappas Jr G, Martins K
Microorganisms . 2023 Jul; 11(7). PMID: 37512901
The Amazonian rainforest is a hyper-diverse ecosystem in the number of species and the myriad of intertaxon relationships that are mostly understudied. In order to characterize a dominant and economically...
3.
Pereira W, de Castro Rodrigues Pappas M, Pappas Jr G
Methods Mol Biol . 2023 Feb; 2638:23-36. PMID: 36781633
Epigenetics can be described as heritable phenotype changes that do not involve alterations in the underlying DNA sequence. Having widespread implications in fundamental biological phenomena, there is an increased interest...
4.
Janssen L, de Almeida F, Damasceno T, de Paula Baptista R, Pappas Jr G, de Campos T, et al.
Front Microbiol . 2021 Dec; 12:732324. PMID: 34899623
Antimicrobial resistance (AMR) is an increasing and urgent issue for human health worldwide, as it leads to the reduction of available antibiotics to treat bacterial infections, in turn increasing hospital...
5.
de Campos T, de Almeida F, de Almeida A, Nakamura-Silva R, Oliveira-Silva M, de Sousa I, et al.
Front Microbiol . 2021 May; 12:604031. PMID: 33935984
is mainly associated with opportunistic infections and frequently identified as This misidentification implies a wrong epidemiology result as well as incorrect attribution to as the etiology of some severe infections....
6.
Pereira W, de Castro Rodrigues Pappas M, Grattapaglia D, Pappas Jr G
PLoS One . 2020 Jun; 15(6):e0233800. PMID: 32497070
Several studies suggest the relation of DNA methylation to diseases in humans and important phenotypes in plants drawing attention to this epigenetic mark as an important source of variability. In...
7.
Rodrigues K, Rocha R, Mulinari F, Guedes A, Teixeira M, Motta D, et al.
Fungal Genet Biol . 2020 Mar; 138:103367. PMID: 32198121
Filamentous fungi are well known for producing secondary metabolites applied in various industrial segments. Among these, lovastatin and itaconic acid, produced by Aspergillus terreus, have applications in the pharmaceutical and...
8.
Miotto Y, Tessele C, Czermainski A, Porto D, da Silveira Falavigna V, Sartor T, et al.
Front Plant Sci . 2019 Apr; 10:33. PMID: 30930909
Chilling requirement (CR) for bud dormancy completion determines the time of bud break in apple ( × Borkh.). The molecular control of bud dormancy is highly heritable, suggesting a strong...
9.
Paes H, Derengowski L, Peconick L, Albuquerque P, Pappas Jr G, Nicola A, et al.
Front Cell Infect Microbiol . 2018 Nov; 8:369. PMID: 30483479
Gti1/Pac2 transcription factors occur exclusively in fungi and their roles vary according to species, including regulating morphological transition and virulence, mating and secondary metabolism. Many of these functions are important...
10.
Ortega D, Costa R, Pires A, Araujo T, Araujo J, Kurokawa A, et al.
Genome Announc . 2018 Jun; 6(26). PMID: 29954895
A strain isolated from soil samples from Cerrado, Brazil, showed antimicrobial activity. Its genome sequence was acquired (GS20 FLX Titanium 454 platform) and comprises 108 contigs (, 198,427 bp) and...