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地衣光合作用的生态趋势。

Ecological trends in lichen photosynthesis.

作者信息

Lechowicz Martin J

机构信息

Department of Biology, McGill University, 1205 Avenue Docteur Penfield, H3A 1B1, Montreal, Quebec, Canada.

出版信息

Oecologia. 1982 Jun;53(3):330-336. doi: 10.1007/BF00389009.

Abstract

Drawing on data for 42 fruticose and foliose lichen species, four aspects of photosynthetic response have been ex&mined in relation to latitude and climatic variables: 1) the maximal rate of net photosynthesis (P), 2) the tissue temperature at which P occurs (T), 3) the photon flux density at which P occurs (PhAR), and 4) the tissue water status at which P occurs. Tissue water status was measured as either relative water content (RWC) or percentage dry weight (DW). The T decreased significantly with increasing latitude; T also increased significantly with increasing July solar radiation, July air temperature, daily hours of bright sunshine, daily solar radiation, annual precipitation, and annual evaporation. Both RWC and DW increased significantly with annual precipitation. The T and RWC for a lichen could both be more accurately predicted from multiple regressions on macroclimatic variables describing the lichen's habitat. Both the PhAR and the P, despite their lack of simple univariate relationships to either latitude or climatic variables, could also be predicted by multiple regression. The limitations on the generality and precision of these ecological trends in lichen photosynthesis are discussed in relation to microclimatic considerations, morphological adaptations, and poikilohydric metabolism.

摘要

基于42种地衣物种的数据,研究了光合作用响应的四个方面与纬度和气候变量的关系:1)净光合作用的最大速率(P),2)发生P时的组织温度(T),3)发生P时的光子通量密度(PhAR),以及4)发生P时的组织水分状况。组织水分状况通过相对含水量(RWC)或干重百分比(DW)来衡量。T随纬度升高显著降低;T也随7月太阳辐射、7月气温、每日日照时数、每日太阳辐射、年降水量和年蒸发量的增加而显著升高。RWC和DW均随年降水量显著增加。通过对描述地衣栖息地的宏观气候变量进行多元回归,可以更准确地预测地衣的T和RWC。尽管PhAR和P与纬度或气候变量缺乏简单的单变量关系,但也可以通过多元回归进行预测。结合微气候因素、形态适应和变水代谢,讨论了地衣光合作用中这些生态趋势的普遍性和精确性的局限性。

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