Halophila johnsonii exhibits greater photorespiration and ROS formation than Thalassia testudinum in response to high light
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Rates of photosynthesis for <i>T. testudinum</i> and <i>H. johnsonii</i> leaf sections were measured under low-oxygen versus normoxic conditions across a range of seawater pH. Localization and accumulation of ROS in plant tissues were imaged at 200x magnification using an Olympus FV 1000 confocal laser scanning microscope (CLSM).<br>Chloroplast leaf PAR transmittance data is also given before and after high PAR exposure<br>
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2018-05-01



