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<b:Sources SelectedStyle="" xmlns:b="http://schemas.openxmlformats.org/officeDocument/2006/bibliography"  xmlns="http://schemas.openxmlformats.org/officeDocument/2006/bibliography" >
<b:Source>
<b:Tag>phs-202204-0006</b:Tag>
<b:SourceType>ArticleInAPeriodical</b:SourceType>
<b:Year>2022</b:Year>
<b:PeriodicalTitle>Photosynthetica</b:PeriodicalTitle>
<b:Volume>60</b:Volume>
<b:Issue>4</b:Issue>
<b:Url>https://ps.ueb.cas.cz/artkey/phs-202204-0006.php</b:Url>
<b:Url>https://doi.org/10.32615/ps.2022.049</b:Url>
<b:Pages>529-538</b:Pages>
<b:Author>
<b:Author><b:NameList>
<b:Person><b:Last>MATTILA</b:Last><b:First>H.</b:First></b:Person>
<b:Person><b:Last>HAVURINNE</b:Last><b:First>V.</b:First></b:Person>
<b:Person><b:Last>ANTAL</b:Last><b:First>T.</b:First></b:Person>
<b:Person><b:Last>TYYSTJÄRVI</b:Last><b:First>E.</b:First></b:Person>
</b:NameList></b:Author>
</b:Author>
<b:Title>Evaluation of visible-light wavelengths that reduce or oxidize  the plastoquinone pool in green algae with the activated F&lt;sub&gt;0&lt;/sub&gt; rise method</b:Title>
<b:Comments>We recently developed a chlorophyll a fluorescence method (activated F&lt;sub&gt;0&lt;/sub&gt; rise) for estimating if a light wavelength preferably excites PSI or PSII in plants. Here, the method was tested in green microalgae: Scenedesmus quadricauda, Scenedesmus ecornis, Scenedesmus fuscus, Chlamydomonas reinhardtii, Chlorella sorokiniana, and Ettlia oleoabundans. The Scenedesmus species displayed a plant-like action spectra of F&lt;sub&gt;0&lt;/sub&gt; rise, suggesting that PSII/PSI absorption ratio is conserved from higher plants to green algae. F&lt;sub&gt;0&lt;/sub&gt; rise was weak in a strain of C. reinhardtii,  C. sorokiniana, and E. oleoabundans. Interestingly, another C. reinhardtii strain exhibited a strong F&lt;sub&gt;0&lt;/sub&gt; rise. The result indicates that the same illumination can lead to different redox states of the plastoquinone pool in different algae. Flavodiiron activity enhanced the F&lt;sub&gt;0&lt;/sub&gt; rise, presumably by oxidizing the plastoquinone pool during pre-illumination. The activity of plastid terminal oxidase, in turn, diminished the F&lt;sub&gt;0&lt;/sub&gt; rise, but to a small degree.</b:Comments>
</b:Source>
</b:Sources>
