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Ecophysiological responses of a threatened red alga to increased irradiance in an in situ transplant experiment

机译:在原位移植实验中,受威胁的红藻对辐照度增加的生态生理响应

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摘要

The red alga Gelidium corneum is a dominant foundation species in the south-eastern Bay of Biscay, where a decline in its populations has been documented in the few last decades. We investigated the ecophysiological responses of G. corneum to different light conditions by means of an in situ transplant experiment. We found that the stress response measured by physiological and biochemical approaches was higher in G. corneum at higher irradiance levels, for both transplanted and control specimens, than under lower light intensities. In the former case the specimens showed a decrease in maximum quantum yield (F-v/F-m), maximum electron transport rate (ETRmax), photosynthetic efficiency (alpha(ETR)), photosynthetic pigment contents, nitrogen content and thallus length, whereas the C:N ratio, MAAs and bleaching cover increased. In general terms, these responses were more evident in the apical parts of the thallus than in middle ones. Our results suggest that high light stress at depths of 3 m triggered photobiological changes in G. corneum, involving ineffective photoprotection and the occurrence of chronic photoinhibition. Therefore, considering the upward trend in summer mean surface solar radiation in the study area since the 80s, high light conditions may have played a role in the declines observed in G. corneum beds from the south-eastern Bay of Biscay.
机译:红藻角质层是比斯开湾东南部的主要基础物种,近几十年来据报道其种群下降。我们通过原位移植实验研究了角质霉对不同光照条件的生态生理响应。我们发现通过生理和生化方法测得的应力响应在角质层中,在较高辐照水平下,对于移植和对照标本,均比在较低光照强度下更高。在前一种情况下,样品的最大量子产率(Fv / Fm),最大电子传输速率(ETRmax),光合效率(α(ETR)),光合色素含量,氮含量和and长度降低,而C:氮比,MAA和漂白覆盖率增加。一般而言,这些反应在in的顶端部分比在中间的部分更明显。我们的结果表明,在3 m深度处的高光照胁迫会导致角质层的光生物学变化,包括无效的光保护作用和慢性光抑制作用的发生。因此,考虑到自80年代以来研究区域夏季平均地表太阳辐射的上升趋势,高光照条件可能是对比斯开湾东南部的角质层床的观察到的下降的原因。

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