Schulze E -D, Fuchs M, Fuchs M I
Lehrstuhl für Pflanzenökologie der Universität Bayreuth, Am Birkengut, D-8580, Bayreuth, Germany.
Oecologia. 1977 Sep;30(3):239-248. doi: 10.1007/BF01833630.
Growth and CO uptake in the crown of a spruce tree is described and the production processes of this evergreen conifer are compared with those of a deciduous beech. Spruce had 60% lower rates of net photosynthesis per dry weight than beech. But, beech had a 30% shorter growing season and a 84% smaller biomass than spruce. The annual CO gain was 40% lower in beech than it was in spruce.An analysis shows the following conclusions for this habitat. (1) The effect of a prolonged growing season is small. The annual CO gain of spruce would be reduced only by 9% if the growing season was the same length as for beech. (2) The annual CO gain would increase 14% if all needles in spruce were deciduous, because the current year needles have a higher average rate of CO uptake than 3-year old and older needles, but a lower average rate than 1- and 2-year old ones. However, the carbon balance of the tree shows that spruce could not afford to produce the existing needle biomass (14 t ha) each year. (3) If spruce were to produce the same deciduous foliage biomass during the same growing season as beech then total production by spruce would be reduced 67%. (4) The annual CO uptake by evergreen spruce was higher than deciduous beech not because of a long growing season, but because of the longevity of its needles, which during their total life time (an average of 5 years) have a two to three times greater CO uptake than a deciduous leaf in one summer season. The relatively small investment in current year needles produces an annually low, but long lasting assimilation of CO.
描述了云杉树冠的生长和二氧化碳吸收情况,并将这种常绿针叶树的生产过程与落叶山毛榉的生产过程进行了比较。云杉每单位干重的净光合作用速率比山毛榉低60%。但是,山毛榉的生长季节比云杉短30%,生物量比云杉小84%。山毛榉的年二氧化碳吸收量比云杉低40%。对该栖息地的分析得出以下结论:(1)生长季节延长的影响较小。如果云杉的生长季节与山毛榉相同,其年二氧化碳吸收量仅会减少9%。(2)如果云杉所有的针叶都是落叶的,年二氧化碳吸收量将增加14%,因为当年的针叶平均二氧化碳吸收速率高于3年及更老的针叶,但低于1年和2年生的针叶。然而,树木的碳平衡表明,云杉无法每年都生产出现有的针叶生物量(14吨/公顷)。(3)如果云杉在与山毛榉相同的生长季节内生产相同的落叶生物量,那么云杉的总产量将减少67%。(4)常绿云杉的年二氧化碳吸收量高于落叶山毛榉,不是因为生长季节长,而是因为其针叶的寿命长,在其整个生命周期(平均5年)内,其二氧化碳吸收量比落叶叶在一个夏季的吸收量高出两到三倍。对当年针叶的相对较小投资产生了每年较低但持久的二氧化碳同化作用。