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Hugo Bruno Correa Molinari

Explore the profile of Hugo Bruno Correa Molinari including associated specialties, affiliations and a list of published articles. Areas
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Citations 488
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Recent Articles
1.
Duarte K, Basso M, de Oliveira N, da Silva J, de Oliveira Garcia B, Cunha B, et al.
Physiol Mol Biol Plants . 2022 Nov; 28(8):1607-1624. PMID: 36389096
Supplementary Information: The online version contains supplementary material available at 10.1007/s12298-022-01226-z.
2.
Tavora F, Diniz F, de Moraes Rego-Machado C, Freitas N, Arraes F, Chumbinho de Andrade E, et al.
Front Bioeng Biotechnol . 2022 Jul; 10:913728. PMID: 35837551
Clustered regularly interspaced short palindromic repeats (CRISPR)/CRISPR-associated gene (Cas) system and RNA interference (RNAi)-based non-transgenic approaches are powerful technologies capable of revolutionizing plant research and breeding. In recent years, the...
3.
Basso M, Duarte K, Santiago T, de Souza W, de Oliveira Garcia B, da Cunha B, et al.
Plant Biotechnol (Tokyo) . 2021 Aug; 38(2):227-238. PMID: 34393601
The CRISPR/Cas9 system has been used for genome editing in several organisms, including higher plants. This system induces site-specific mutations in the genome based on the nucleotide sequence of engineered...
4.
Ribeiro A, Vinecky F, Duarte K, Santiago T, Casari R, Hell A, et al.
BMC Plant Biol . 2021 Jun; 21(1):300. PMID: 34187360
Background: A major limiting factor for plant growth is the aluminum (Al) toxicity in acidic soils, especially in tropical regions. The exclusion of Al from the root apex through root...
5.
Basso M, da Cunha B, Ribeiro A, Martins P, de Souza W, de Oliveira N, et al.
Curr Protoc Plant Biol . 2019 Nov; 2(3):221-239. PMID: 31725972
Sugarcane (Saccharum spp.) is a monocotyledonous semi-perennial C4 grass of the Poaceae family. Its capacity to accumulate high content of sucrose and biomass makes it one of the most important...
6.
de Souza W, Pacheco T, Duarte K, Sampaio B, Abrao de Oliveira Molinari P, Martins P, et al.
Biotechnol Biofuels . 2019 Jun; 12:142. PMID: 31198439
[This corrects the article DOI: 10.1186/s13068-019-1450-7.].
7.
de Souza W, Pacheco T, Duarte K, Sampaio B, Abrao de Oliveira Molinari P, Martins P, et al.
Biotechnol Biofuels . 2019 May; 12:111. PMID: 31080518
Background: Sugarcane ( spp.) covers vast areas of land (around 25 million ha worldwide), and its processing is already linked into infrastructure for producing bioethanol in many countries. This makes...
8.
Basso M, Ferreira P, Kobayashi A, Harmon F, Nepomuceno A, Molinari H, et al.
Plant Biotechnol J . 2019 Apr; 17(8):1482-1500. PMID: 30947398
MicroRNAs (miRNAs) modulate the abundance and spatial-temporal accumulation of target mRNAs and indirectly regulate several plant processes. Transcriptional regulation of the genes encoding miRNAs (MIR genes) can be activated by...
9.
Duarte K, de Souza W, Santiago T, Sampaio B, Ribeiro A, Cotta M, et al.
Sci Rep . 2019 Mar; 9(1):4028. PMID: 30858491
Abscisic acid (ABA) is an essential phytohormone that regulates growth, development and adaptation of plants to environmental stresses. In Arabidopsis and other higher plants, ABA signal transduction involves three core...
10.
Martins P, da Cunha B, Kobayshi A, Molinari H
Methods Mol Biol . 2018 Nov; 1864:49-65. PMID: 30415328
Setaria viridis is an emerging model for C4 species, and it is an important model to validate some genes for further C4 crop transformation, such as sugarcane, maize, and wheat....