Birgit Arnholdt-Schmitt
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Explore the profile of Birgit Arnholdt-Schmitt including associated specialties, affiliations and a list of published articles.
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496
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Recent Articles
1.
Sousa L, Germano T, Aziz S, de Oliveira M, Salvador G, Miranda R, et al.
J Plant Physiol
. 2025 Feb;
306:154446.
PMID: 39970597
n-Propyl gallate (PG) is a phenolic compound that influences enzymatic processes, mostly involving AOX, PTOX, LOX, POD, and PPO. Here, analyses of different PG concentrations (1, 2.5, and 5 mM)...
2.
Arnholdt-Schmitt B, Noceda C, Germano T, Aziz S, Thiers K, Oliveira M, et al.
Plant Cell Rep
. 2024 Sep;
43(10):236.
PMID: 39313563
AOX gene family in motion marks in-born efficiency of respiration adjustment; can serve for primer screening, genotype ranking, in vitro-plant discrimination and a SMART perspective for multiple-resilient plant holobiont selection....
3.
Arnholdt-Schmitt B, Sircar D, Aziz S, Germano T, Thiers K, Noceda C, et al.
Pathogens
. 2024 Mar;
13(3).
PMID: 38535570
() is a global bacterial threat for a diversity of plants, including olive trees. However, current understanding of host responses upon -infection is limited to allow early disease prediction, diagnosis,...
4.
Thiers K, da Silva J, Vasconcelos D, Aziz S, Noceda C, Arnholdt-Schmitt B, et al.
Physiol Plant
. 2022 Dec;
175(1):e13847.
PMID: 36562612
We investigated SNPs in alternative oxidase (AOX) genes and their connection to ecotype origins (climate, altitude, and rainfall) by using genomic data sets of Arabidopsis and rice populations from 1190...
5.
Aziz S, Germano T, Thiers K, Batista M, Miranda R, Arnholdt-Schmitt B, et al.
Plants (Basel)
. 2022 Aug;
11(16).
PMID: 36015448
Plants subjected to stress need to respond rapidly and efficiently to acclimatize and survive. In this paper, we investigated a selected gene set potentially involved in early cell reprogramming in...
6.
Costa J, Aziz S, Noceda C, Arnholdt-Schmitt B
Vaccines (Basel)
. 2021 Dec;
9(12).
PMID: 34960145
Background: Early metabolic reorganization was only recently recognized as an essentially integrated part of immunology. In this context, unbalanced ROS/RNS levels connected to increased aerobic fermentation, which is linked to...
7.
Bharadwaj R, Noceda C, Mohanapriya G, Kumar S, Thiers K, Costa J, et al.
Front Plant Sci
. 2021 Oct;
12:686274.
PMID: 34659277
Plants respond to environmental cues adaptive cell reprogramming that can affect whole plant and ecosystem functionality. Microbiota constitutes part of the inner and outer environment of the plant. This underlies...
8.
Costa J, Mohanapriya G, Bharadwaj R, Noceda C, Thiers K, Aziz S, et al.
Front Immunol
. 2021 Jul;
12:673692.
PMID: 34305903
In a perspective entitled 'From plant survival under severe stress to anti-viral human defense' we raised and justified the hypothesis that transcript level profiles of justified target genes established from...
9.
Costa J, Roque A, Aziz S, Dos Santos C, Germano T, Batista M, et al.
Int J Biol Macromol
. 2021 Jul;
187:528-543.
PMID: 34302870
Ascorbate-glutathione (AsA-GSH) cycle plays an important role in tuning beneficial ROS accumulation for intracellular signals and imparts plant tolerance to oxidative stress by detoxifying excess of ROS. Here, we present...
10.
Arnholdt-Schmitt B, Mohanapriya G, Bharadwaj R, Noceda C, Macedo E, Sathishkumar R, et al.
Front Immunol
. 2021 Jul;
12:673723.
PMID: 34211468
Reprogramming of primary virus-infected cells is the critical step that turns viral attacks harmful to humans by initiating super-spreading at cell, organism and population levels. To develop early anti-viral therapies...