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Photosynthesis, respiration, and growth patterns of Rhizophora stylosa seedlings in relation to growth temperature

机译:与生长温度相关的rhizophora stylosa幼苗的光合作用,呼吸和生长模式

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Mangrove plants are distributed across the majority of the world's tropical and subtropical coastlines. How they respond to new growth temperatures is poorly understood. To obtain this information, we collected Rhizophora stylosa Griff. diaspores from a subtropical region with average daily mean and maximum temperatures of 24.0 and 26.7 degrees C. After 1-year-old seedlings had been grown in four glasshouse chambers at an air temperature of 15, 20, 25, or 30 degrees C for about 50 days, we evaluated photosynthesis, respiration, and growth. Seedlings grown at 15 and 20 degrees C showed PSII photoinhibition, especially in newly emerged leaves. The assimilation rate was greatest at 25 degrees C. Thermal acclimatization of respiration was observed at 20-30 degrees C in both newly emerged and pre-existing leaves, was unclear in stems, and was absent in roots. Stem growth rate was greatest at 25 degrees C, but seedlings grown at 30 degrees C produced the largest number of new leaves and marginally decreased biomass allocation to roots, which lacked thermal acclimatization capacity. These results indicate that R. stylosa growing in subtropical regions adapts its photosynthesis to the average daily mean or maximum temperatures, and minimizes carbon loss due to warm temperatures by use of the thermal acclimatization capacity of leaf respiration and plasticity of biomass allocation, which contribute to optimizing growth performance.
机译:红树林植物分布在世界上大多数世界的热带和亚热带海岸线上。他们如何应对新的增长温度很难理解。要获取此信息,我们收集了根罗孔STICTOSA GRIFF。来自亚热带区域的缺水区,平均每日平均值和24.0和26.7摄氏度的最高温度。在4岁的幼苗以15,20,25或30℃的空气温度下在四个玻璃室腔室中生长。 50天,我们评估了光合作用,呼吸和生长。在15和20摄氏度的幼苗显示Psii PhotoInchitch,特别是在新出现的叶子中。同化率在25摄氏度下最大。在新出现和预先存在的叶片中,在20-30℃下观察到呼吸的热适应,在茎中不清楚,并且在根中不存在。茎生长速率在25摄氏度中最大,但在30摄氏度下生长的幼苗产生了最大的新叶片,并略微降低了根系的生物量分配,这缺乏热适应能力。这些结果表明,在亚热带区域中生长的R.Stysaa生长在平均每日平均值或最大温度下,并通过使用叶呼吸的热驯化能力和生物量分配的可塑性来最小化由于温暖的温度而导致的碳损失,这有助于优化增长性能。

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