Jorg C Frommlet
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Explore the profile of Jorg C Frommlet including associated specialties, affiliations and a list of published articles.
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13
Citations
107
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Recent Articles
1.
Stuij T, Stuij T, Cleary D, Cleary D, de Voogd N, de Voogd N, et al.
J Appl Microbiol
. 2025 Jan;
136(3).
PMID: 39875192
Aims: In the present study, we tested whether terrestrially derived humic substances (HS) could mitigate the adverse effects of elevated temperature and ultraviolet B (UVB) radiation on the bacterial communities...
2.
Serodio J, Bastos A, Frankenbach S, Frommlet J, Esteves A, Queiroga H
PeerJ
. 2024 Jul;
12:e17659.
PMID: 39006034
This work presents a low-cost, open-source turbidimeter, the 'Erlenmeter', designed to monitor the growth of microorganisms in batch cultures. It is easy to build, based exclusively on inexpensive off-the-shelf electronic...
3.
Morelle J, Bastos A, Frankenbach S, Frommlet J, Campbell D, Lavaud J, et al.
Microb Ecol
. 2024 Feb;
87(1):40.
PMID: 38351424
It has long been hypothesized that benthic motile pennate diatoms use phototaxis to optimize photosynthesis and minimize photoinhibitory damage by adjusting their position within vertical light gradients in coastal benthic...
4.
Davies S, Gamache M, Howe-Kerr L, Kriefall N, Baker A, Banaszak A, et al.
PeerJ
. 2023 May;
11:e15023.
PMID: 37151292
Within microeukaryotes, genetic variation and functional variation sometimes accumulate more quickly than morphological differences. To understand the evolutionary history and ecology of such lineages, it is key to examine diversity...
5.
Ezequiel J, Nitschke M, Laviale M, Serodio J, Frommlet J
Photosynth Res
. 2022 Dec;
155(2):177-190.
PMID: 36463555
The production of reactive oxygen species (ROS) is an unavoidable consequence of oxygenic photosynthesis and represents a major cause of oxidative stress in phototrophs, having detrimental effects on the photosynthetic...
6.
Nitschke M, Craveiro S, Brandao C, Fidalgo C, Serodio J, Calado A, et al.
J Phycol
. 2020 Apr;
56(4):923-940.
PMID: 32267533
The Symbiodiniaceae are a family of marine dinoflagellates known mostly for their endosymbiotic interactions with invertebrates and protists, but facultatively and exclusively free-living life histories in this family are also...
7.
Nitschke M, Fidalgo C, Simoes J, Brandao C, Alves A, Serodio J, et al.
ISME J
. 2020 Mar;
14(6):1533-1546.
PMID: 32203119
Microbially induced calcification is an ancient, community-driven mineralisation process that produces different types of microbialites. Symbiolites are photosynthesis-induced microbialites, formed by calcifying co-cultures of dinoflagellates from the family Symbiodiniaceae and...
8.
Serodio J, Schmidt W, Frommlet J, Christa G, Nitschke M
PeerJ
. 2018 Sep;
6:e5589.
PMID: 30202661
The responses of photosynthetic organisms to light stress are of interest for both fundamental and applied research. Functional traits related to the photoinhibition, the light-induced loss of photosynthetic efficiency, are...
9.
Frommlet J, Wangpraseurt D, Sousa M, Guimaraes B, Medeiros da Silva M, Kuhl M, et al.
Front Microbiol
. 2018 Jun;
9:998.
PMID: 29892272
Dinoflagellates in the genus exhibit a variety of life styles, ranging from mutualistic endosymbioses with animal and protist hosts to free-living life styles. In culture, spp. and naturally associated bacteria...
10.
Fujise L, Nitschke M, Frommlet J, Serodio J, Woodcock S, Ralph P, et al.
J Eukaryot Microbiol
. 2018 Jan;
65(4):505-517.
PMID: 29316019
Dinoflagellates of the genus Symbiodinium live in symbiosis with many invertebrates, including reef-building corals. Hosts maintain this symbiosis through continuous regulation of Symbiodinium cell density via expulsion and degradation (postmitotic)...