Desmond Matthew J, Pritchard Daniel W, Hepburn Christopher D
Department of Marine Science, University of Otago, P. O. Box 56, Dunedin, 9054, New Zealand.
Te Ao Tūroa, Te Rūnanga o Ngāi Tahu, P. O. Box 799, Dunedin, 9054, New Zealand.
Photosynth Res. 2017 Jun;132(3):257-264. doi: 10.1007/s11120-017-0381-z. Epub 2017 Apr 7.
The role of how light is delivered over time is an area of macroalgal photosynthesis that has been overlooked but may play a significant role in controlling rates of productivity and the structure and persistence of communities. Here we present data that quantify the relative influence of total quantum dose and delivery rate on the photosynthetic productivity of five ecologically important Phaeophyceae species from southern New Zealand. Results suggested that greater net oxygen production occurs when light is delivered at a lower photon flux density (PFD) over a longer period compared to a greater PFD over a shorter period, given the same total dose. This was due to greater efficiency (α) at a lower PFD which, for some species, meant a compensatory effect can occur. This resulted in equal or greater productivity even when the total quantum dose of the lower PFD was significantly reduced. It was also shown that light limitation at Huriawa Peninsula, where macroaglae were sourced, may be restricting the acclimation potential of species at greater depths, and that even at shallow depth periods of significant light limitation are likely to occur. This research is of particular interest as the variability of light delivery to coastal reef systems increases as a result of anthropogenic disturbances, and as the value of in situ community primary productivity estimates is recognised.
光随时间的传递方式所起的作用是大型藻类光合作用中一个被忽视的领域,但可能在控制生产力速率以及群落的结构和持久性方面发挥重要作用。在此,我们展示了量化总量子剂量和传递速率对来自新西兰南部的五种具有生态重要性的褐藻光合生产力相对影响的数据。结果表明,在相同总量子剂量的情况下,与短时间内较高光量子通量密度(PFD)相比,长时间内较低PFD传递光时会产生更大的净氧气产量。这是因为在较低PFD下效率(α)更高,对于某些物种而言,这意味着可能会出现补偿效应。即使较低PFD的总量子剂量显著降低,也会导致同等或更高的生产力。研究还表明,获取大型藻类的胡里亚瓦半岛存在光照限制,这可能限制了较深水域物种的适应潜力,而且即使在浅水区也可能会出现显著光照限制的时期。随着人为干扰导致沿海珊瑚礁系统光照传递的变异性增加,以及原位群落初级生产力估计值的价值得到认可,这项研究尤为重要。