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具有不同水分关系的亚北极地衣的净光合恢复

Net photosynthetic recovery in subarctic lichens with contrasting water relations.

作者信息

Groulx M, Lechowicz M J

机构信息

Biology Department, McGill University, 1205, ave. Docteur Penfield, H3A 1B1, Montréal, Québec, Canada.

出版信息

Oecologia. 1987 Feb;71(3):360-368. doi: 10.1007/BF00378708.

Abstract

The rates of net photosynthetic recovery after wetting for six subarctic lichens were related to their drying rates under laboratory conditions. Net photosynthetic recovery was described by the three parameters of the Von-Bertalanffy equation: T and K, related to the rates of resaturation respiration and gross photosynthetic recovery, and P , the photosynthetic maximum attained at full recovery. The time to full photosynthetic recovery ranged from 143 to 510 min and was positively correlated with the drying rate of the thallus. In order from most to least rapid recovery, the species are Coelocaulon divergens, Cetraria cucullata, Alectoria ochroleuca, Cladina stellaris, Nephroma arcticum, and Cladonia sulphurina.In nature the high evaporative resistance or low waterholding capacity characterizing fast-drying species will result in short, frequent cycles of wetting and drying which induce carbon losses. In such situations a rapid photosynthetic recovery should be adaptive since it increases photosynthetic carbon gain during a period of metabolic activity. We hypothesize that fast-drying species achieve their rapid photosynthetic recovery by an increased desiccation-tolerance which has a metabolic cost associated with it. In slowdrying species a rapid recovery is not favored by natural selection since these species can take advantage of longer photosynthetic activity periods and are exposed less frequently to deleterious wetting and drying cycles. Future studies of lichen distribution and productivity should take into account the recovery phenomena.

摘要

六种亚北极地衣在湿润后净光合恢复速率与它们在实验室条件下的干燥速率相关。净光合恢复由冯·贝塔朗菲方程的三个参数描述:T和K,与再饱和呼吸速率和总光合恢复速率有关,以及P,即完全恢复时达到的光合最大值。完全光合恢复的时间范围为143至510分钟,并且与叶状体的干燥速率呈正相关。从恢复速度最快到最慢依次为:叉枝冰岛衣、兜状冰岛衣、黄髓石蕊、星状石蕊、北极肾盘衣和硫黄石蕊。在自然界中,快速干燥物种所具有的高蒸发阻力或低持水能力会导致短而频繁的湿润和干燥循环,从而导致碳损失。在这种情况下,快速的光合恢复应该是适应性的,因为它在代谢活动期间增加了光合碳增益。我们假设快速干燥物种通过提高耐旱性来实现其快速光合恢复,而这会带来与之相关的代谢成本。在缓慢干燥的物种中,自然选择并不青睐快速恢复,因为这些物种可以利用更长的光合活动期,并且较少受到有害的湿润和干燥循环的影响。未来关于地衣分布和生产力的研究应该考虑到恢复现象。

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