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Sigrun Reumann

Explore the profile of Sigrun Reumann including associated specialties, affiliations and a list of published articles. Areas
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Articles 36
Citations 1298
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Recent Articles
1.
Rout S, de Grahl I, Yu X, Reumann S
Appl Microbiol Biotechnol . 2022 Sep; 106(19-20):6535-6549. PMID: 36069927
Nannochloropsis oceanica is a unicellular oleaginous microalga of emerging biotechnological interest with a sequenced, annotated genome, available transcriptomic and proteomic data, and well-established basic molecular tools for genetic engineering. To...
2.
Astafyeva Y, Gurschke M, Qi M, Bergmann L, Indenbirken D, de Grahl I, et al.
Microbiol Spectr . 2022 Aug; 10(4):e0063322. PMID: 35913168
Microalgae are one of the most dominant forms of life on earth that is tightly associated with a distinct and specialized microbiota. We have previously shown that the microbiota of...
3.
Falter C, Reumann S
Mol Plant Pathol . 2022 Jan; 23(6):781-794. PMID: 35001508
Several filamentous fungi are ecologically and economically important plant pathogens that infect a broad variety of crops. They cause high annual yield losses and contaminate seeds and fruits with mycotoxins....
4.
de Grahl I, Reumann S
World J Microbiol Biotechnol . 2021 Aug; 37(9):163. PMID: 34453200
Photoautotrophic microalgae have become intriguing hosts for recombinant protein production because they offer important advantages of both prokaryotic and eukaryotic expression systems. Advanced molecular tools have recently been established for...
5.
Kechasov D, de Grahl I, Endries P, Reumann S
Front Cell Dev Biol . 2020 Dec; 8:593922. PMID: 33330478
The stramenopile alga evolved by secondary endosymbiosis of a red alga by a heterotrophic host cell and emerged as a promising organism for biotechnological applications, such as the production of...
6.
de Grahl I, Rout S, Maple-Grodem J, Reumann S
Appl Microbiol Biotechnol . 2020 Sep; 104(20):8747-8760. PMID: 32902683
Photoautotrophic microalgae offer a great potential as novel hosts for efficient recombinant protein production. Nannochloropsis oceanica produces an extraordinarily high content of polyunsaturated fatty acids, and its robust growth characteristics,...
7.
Tyutereva E, Dobryakova K, Schiermeyer A, Shishova M, Pawlowski K, Demidchik V, et al.
Funct Plant Biol . 2020 Apr; 45(2):247-258. PMID: 32291039
In plant cells, peroxisomes participate in the metabolism of reactive oxygen species (ROS). One of the major regulators of cellular ROS levels - catalase (CAT) - occurs exclusively in peroxisomes....
8.
Falter C, Thu N, Pokhrel S, Reumann S
J Integr Plant Biol . 2019 Feb; 61(7):884-899. PMID: 30791204
Peroxisome research has been revolutionized by proteome studies combined with in vivo subcellular targeting analyses. Yellow and cyan fluorescent protein (YFP and CFP) are the classical fluorophores of plant peroxisome...
9.
Reumann S, Chowdhary G
Subcell Biochem . 2018 Nov; 89:125-138. PMID: 30378021
Our knowledge of the proteome of plant peroxisomes is far from being complete, and the functional complexity and plasticity of this cell organelle are amazingly high particularly in plants, as...
10.
Pan R, Reumann S, Lisik P, Tietz S, Olsen L, Hu J
J Integr Plant Biol . 2018 Jun; 60(11):1028-1050. PMID: 29877633
Peroxisomes compartmentalize a dynamic suite of biochemical reactions and play a central role in plant metabolism, such as the degradation of hydrogen peroxide, metabolism of fatty acids, photorespiration, and the...