Rosa Ana Malvar
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Explore the profile of Rosa Ana Malvar including associated specialties, affiliations and a list of published articles.
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Articles
31
Citations
255
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Recent Articles
1.
Lopez-Malvar A, Malvar R, Butron A, Souto X, Santiago R
BMC Plant Biol
. 2025 Jan;
25(1):18.
PMID: 39757217
Background: The crosslinking of maize cell wall components, particularly mediated by the formation of ferulic acid dimers or diferulates, has been associated with important crop valorization traits such as increased...
2.
Lopez-Malvar A, Resendiz-Ramirez Z, Butron A, Jimenez-Galindo J, Revilla P, Malvar R
Front Plant Sci
. 2024 Nov;
15:1404881.
PMID: 39502914
Introduction: Validations of previously detected quantitative trait loci (QTLs) to assess their reliability are crucial before implementing breeding programs. The objective of this study was to determine the reliability and...
3.
Revillon S, Dillmann C, Galic N, Bauland C, Palaffre C, Malvar R, et al.
J Econ Entomol
. 2024 Jul;
117(5):1913-1925.
PMID: 39083002
Phenological match/mismatch between cultivated plants and their pest could impact pest infestation dynamics in the field. To explore how such match/mismatch of plant and pest phenologies may interact with plant...
4.
Balconi C, Galaretto A, Malvar R, Nicolas S, Redaelli R, Andjelkovic V, et al.
Biology (Basel)
. 2024 Jun;
13(6).
PMID: 38927334
The ECPGR European Evaluation Network (EVA) for Maize involves genebanks, research institutions, and private breeding companies from nine countries focusing on the valorization of maize genetic resources across Europe. This...
5.
Cao A, Gesteiro N, Santiago R, Malvar R, Butron A
Front Plant Sci
. 2023 Aug;
14:1160092.
PMID: 37538055
poses a threat to worldwide maize production due to its ability to infect maize kernel and synthesize fumonisins that can be accumulated above safety levels for humans and animals. Maize...
6.
Santiago R, Ramos A, Cao A, Malvar R, Butron A
Toxins (Basel)
. 2023 Jul;
15(7).
PMID: 37505713
In temperate world-wide regions, maize kernels are often infected with the fumonisin-producing fungus which poses food and feed threats to animals and humans. As maize breeding has been revealed as...
7.
Gesteiro N, Ordas B, Butron A, Fuente M, Jimenez-Galindo J, Samayoa L, et al.
Front Plant Sci
. 2023 Jul;
14:1162440.
PMID: 37484478
Introduction: The study of yield and resistance/tolerance to pest are related traits fundamental for maize breeding programs. Genomic selection (GS), which uses all marker information to calculate genomic breeding values,...
8.
Yannam V, Caicedo M, Malvar R, Ordas B
Int J Mol Sci
. 2022 Dec;
23(24).
PMID: 36555534
Senescence is a programmed process that involves the destruction of the photosynthesis apparatus and the relocation of nutrients to the grain. Identifying senescence-associated genes is essential to adapting varieties for...
9.
Lopez-Malvar A, Santiago R, Souto X, Barros-Rios J, Gomez L, Malvar R
J Agric Food Chem
. 2022 Jun;
70(27):8511.
PMID: 35767824
No abstract available.
10.
Cao A, Fuente M, Gesteiro N, Santiago R, Malvar R, Butron A
Front Plant Sci
. 2022 May;
13:866478.
PMID: 35586219
is a causal agent of maize ear rot and produces fumonisins, which are mycotoxins that are toxic to animals and humans. In this study, quantitative trait loci (QTLs) and bulk-segregant...