Multi-Level Light Capture Control in Plants and Green Algae

Wobbe L, Bassi R, Kruse O (2016)
Trends in Plant Science 21(1): 55-68.

Zeitschriftenaufsatz | Veröffentlicht | Englisch
 
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Autor*in
Erscheinungsjahr
2016
Zeitschriftentitel
Trends in Plant Science
Band
21
Ausgabe
1
Seite(n)
55-68
ISSN
13601385
Page URI
https://pub.uni-bielefeld.de/record/2788109

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Wobbe L, Bassi R, Kruse O. Multi-Level Light Capture Control in Plants and Green Algae. Trends in Plant Science. 2016;21(1):55-68.
Wobbe, L., Bassi, R., & Kruse, O. (2016). Multi-Level Light Capture Control in Plants and Green Algae. Trends in Plant Science, 21(1), 55-68. doi:10.1016/j.tplants.2015.10.004
Wobbe, Lutz, Bassi, Roberto, and Kruse, Olaf. 2016. “Multi-Level Light Capture Control in Plants and Green Algae”. Trends in Plant Science 21 (1): 55-68.
Wobbe, L., Bassi, R., and Kruse, O. (2016). Multi-Level Light Capture Control in Plants and Green Algae. Trends in Plant Science 21, 55-68.
Wobbe, L., Bassi, R., & Kruse, O., 2016. Multi-Level Light Capture Control in Plants and Green Algae. Trends in Plant Science, 21(1), p 55-68.
L. Wobbe, R. Bassi, and O. Kruse, “Multi-Level Light Capture Control in Plants and Green Algae”, Trends in Plant Science, vol. 21, 2016, pp. 55-68.
Wobbe, L., Bassi, R., Kruse, O.: Multi-Level Light Capture Control in Plants and Green Algae. Trends in Plant Science. 21, 55-68 (2016).
Wobbe, Lutz, Bassi, Roberto, and Kruse, Olaf. “Multi-Level Light Capture Control in Plants and Green Algae”. Trends in Plant Science 21.1 (2016): 55-68.

19 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

Extremely robust photocurrent generation of titanium dioxide photoanodes bio-sensitized with recombinant microalgal light-harvesting proteins.
Lämmermann N, Schmid-Michels F, Weißmann A, Wobbe L, Hütten A, Kruse O., Sci Rep 9(1), 2019
PMID: 30765846
Physiological and transcriptomic analyses of a yellow-green mutant with high photosynthetic efficiency in wheat (Triticum aestivum L.).
Wang Y, Zheng W, Zheng W, Zhu J, Liu Z, Qin J, Li H., Funct Integr Genomics 18(2), 2018
PMID: 29270875
Deletion of the chloroplast LTD protein impedes LHCI import and PSI-LHCI assembly in Chlamydomonas reinhardtii.
Jeong J, Baek K, Yu J, Kirst H, Betterle N, Shin W, Bae S, Melis A, Jin E., J Exp Bot 69(5), 2018
PMID: 29300952
Chloroplast SRP43 acts as a chaperone for glutamyl-tRNA reductase, the rate-limiting enzyme in tetrapyrrole biosynthesis.
Wang P, Liang FC, Wittmann D, Siegel A, Shan SO, Grimm B., Proc Natl Acad Sci U S A 115(15), 2018
PMID: 29581280
Transcriptome Sequencing of Gracilariopsis lemaneiformis to Analyze the Genes Related to Optically Active Phycoerythrin Synthesis.
Huang X, Zang X, Wu F, Jin Y, Wang H, Liu C, Ding Y, He B, Xiao D, Song X, Liu Z., PLoS One 12(1), 2017
PMID: 28135287
Impaired Mitochondrial Transcription Termination Disrupts the Stromal Redox Poise in Chlamydomonas.
Uhmeyer A, Cecchin M, Ballottari M, Wobbe L., Plant Physiol 174(3), 2017
PMID: 28500267
Formation of singlet oxygen by decomposition of protein hydroperoxide in photosystem II.
Pathak V, Prasad A, Pospíšil P., PLoS One 12(7), 2017
PMID: 28732060
Bilin-Dependent Photoacclimation in Chlamydomonas reinhardtii.
Wittkopp TM, Schmollinger S, Saroussi S, Hu W, Zhang W, Fan Q, Gallaher SD, Leonard MT, Soubeyrand E, Basset GJ, Merchant SS, Grossman AR, Duanmu D, Lagarias JC., Plant Cell 29(11), 2017
PMID: 29084873
UV-B photoreceptor-mediated protection of the photosynthetic machinery in Chlamydomonas reinhardtii.
Allorent G, Lefebvre-Legendre L, Chappuis R, Kuntz M, Truong TB, Niyogi KK, Ulm R, Goldschmidt-Clermont M., Proc Natl Acad Sci U S A 113(51), 2016
PMID: 27930292

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Daten bereitgestellt von Europe PubMed Central.

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