首页> 外文期刊>Journal of phycology >Photosynthetic performance, light absorption, and pigment composition of Macrocystis pyrifera (Laminariales, Phaeophyceae) blades from different depths
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Photosynthetic performance, light absorption, and pigment composition of Macrocystis pyrifera (Laminariales, Phaeophyceae) blades from different depths

机译:不同深度的大袋cyst叶片(Laminariales,Phaeophyceae)叶片的光合性能,光吸收和色素组成

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Macrocystis pyrifera (L.) C. Agardh is a canopy-forming species that occupies the entire water column. The photosynthetic tissue of this alga is exposed to a broad range of environmental factors, particularly related to light quantity and quality. In the present work, photosynthetic performance, light absorption, pigment composition, and thermal dissipation were measured in blades collected from different depths to characterize the photo-acclimation and photoprotection responses of M. pyrifera according to the position of its photosynthetic tissue in the water column. The most important response of M. pyrifera was the enhancement of photoprotection in surface and near-surface blades. The size of the xanthophyll cycle pigment pool (XC) was correlated to the nonphotochemical quenching (NPQ) of chl a fluorescence capacity of the blades. In surface blades, we detected the highest accumulation of UV-absorbing compounds, photoprotective carotenoids, Sigma XC, and NPQ. These characteristics were important responses that allowed surface blades to present the highest maximum photosynthetic rate and the highest PSII electron transport rate. Therefore, surface blades made the highest contribution to algae production. In contrast, basal blades presented the opposite trend. These blades do not to contribute significantly to photosynthetate production of the whole organism, but they might be important for other functions, like nutrient uptake.
机译:萤火虫Macrocystis pyrifera(L.)C. Agardh是形成冠层的物种,占据整个水柱。该藻类的光合组织暴露于广泛的环境因素中,特别是与光量和质量有关。在目前的工作中,从不同深度收集的叶片中测量了光合性能,光吸收,色素成分和散热,以根据其光合组织在水柱中的位置来表征火棘分枝杆菌的光驯化和光保护响应。 。吡虫分枝杆菌最重要的反应是增强表面和近表面叶片的光保护作用。叶黄素循环色素池(XC)的大小与叶片的荧光强度和非光化学淬灭(NPQ)相关。在表面刀片中,我们检测到紫外线吸收化合物,光保护性类胡萝卜素,Sigma XC和NPQ的积累量最大。这些特征是重要的响应,使表面叶片呈现出最高的最大光合速率和最高的PSII电子传输速率。因此,表面刀片对藻类生产做出了最大贡献。相反,基刃呈现相反的趋势。这些叶片对整个生物体的光合作用产生没有显着贡献,但对于其他功能(例如营养吸收)可能很重要。

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