Hawkesbury Institute for the Environment, Western Sydney University, Penrith, NSW, 2751, Australia.
Plant Physiology Division, Coconut Research Institute of Sri Lanka, Lunuwila, 61150, Sri Lanka.
Plant Cell Environ. 2019 Dec;42(12):3241-3252. doi: 10.1111/pce.13639. Epub 2019 Aug 22.
The triose phosphate utilization (TPU) rate has been identified as one of the processes that can limit terrestrial plant photosynthesis. However, we lack a robust quantitative assessment of TPU limitation of photosynthesis at the global scale. As a result, TPU, and its potential limitation of photosynthesis, is poorly represented in terrestrial biosphere models (TBMs). In this study, we utilized a global data set of photosynthetic CO response curves representing 141 species from tropical rainforests to Arctic tundra. We quantified TPU by fitting the standard biochemical model of C photosynthesis to measured photosynthetic CO response curves and characterized its instantaneous temperature response. Our results demonstrate that TPU does not limit leaf photosynthesis at the current ambient atmospheric CO concentration. Furthermore, our results showed that the light-saturated photosynthetic rates of plants growing in cold environments are not more often limited by TPU than those of plants growing in warmer environments. In addition, our study showed that the instantaneous temperature response of TPU is distinct from temperature response of the maximum rate of Rubisco carboxylation. The new formulations of the temperature response of TPU derived in this study may prove useful in quantifying the biochemical limits to terrestrial plant photosynthesis and improve the representation of plant photosynthesis in TBMs.
三碳磷酸利用(TPU)率已被确定为限制陆地植物光合作用的过程之一。然而,我们缺乏对全球范围内 TPU 限制光合作用的稳健定量评估。因此,TPU 及其对光合作用的潜在限制在陆地生物圈模型(TBM)中表现不佳。在这项研究中,我们利用了一个代表从热带雨林到北极苔原的 141 个物种的光合作用 CO 响应曲线的全球数据集。我们通过将标准的光合作用生化模型拟合到测量的光合作用 CO 响应曲线来量化 TPU,并对其瞬时温度响应进行了特征描述。我们的结果表明,在当前大气 CO 浓度下,TPU 不会限制叶片光合作用。此外,我们的结果表明,在寒冷环境中生长的植物的光饱和光合作用速率并不比在温暖环境中生长的植物更容易受到 TPU 的限制。此外,我们的研究表明,TPU 的瞬时温度响应与 RuBP 羧化最大速率的温度响应明显不同。本研究中得出的 TPU 温度响应的新公式可能有助于量化陆地植物光合作用的生化限制,并改善 TBM 中植物光合作用的表示。