添加水分和养分对两种沙山栎光合作用和水分利用效率的影响

M. Vaitkus, K. McLeod
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引用次数: 20

摘要

(萨凡纳河生态实验室,P.O. Drawer E,香港,29802)。添加水分和养分对两种沙山栎光合作用和水分利用效率的影响。公牛。托里机器人。俱乐部122:30-39。1995.在许多植物群落中,水和养分被认为是限制营养生长的主要因素。在美国南卡罗来纳州的一个沙丘群落中,研究了添加水分和养分对西半球栎(Quercus hemisphaerica)和松栎(Quercus laevis)幼树光合作用和水分利用效率的影响。采用2 × 2因子设计,添加水分和营养物质。从6月到10月,大约每两周测定一次光合作用日变化,并在这一时期末利用碳同位素判别法评估综合长期水分利用效率。光合作用日曲线分析表明,种间差异不显著,但种内采样日、测量时间和处理间差异显著。灌水处理下西沙栎的净光合作用显著大于不灌水处理,主要表现在长期干旱后高温日的中午。在不同的环境条件下,养分和水分对柽柳光合作用的影响均不显著。施肥对西沙栎和黑栎的水分利用效率有不同的影响,这可能混淆了这两个物种的水分利用效率差异。由于西半球紫斑栎比紫斑栎在更湿润的环境中生长,并且由于它对水分的增加作出了光合作用的响应,因此我们得出结论,在沙丘群落中,西半球紫斑栎的幼崽主要受到水分的限制,而不是低生育能力。结果表明,作为群落优势种的黑桫椤(Q. laevis)幼体对肥料和水分的响应不像半球桫椤那样具有可塑性。
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Photosynthesis and water-use efficiency of two sandhill oaks following additions of water and nutrients
VAITKUS, M. R. AND K. W. McLEOD (Savannah River Ecology Laboratory, P.O. Drawer E, Aiken, SC 29802). Photosynthesis and water-use efficiency of two sandhill oaks following additions of water and nutrients. Bull. Torrey Bot. Club 122: 30-39. 1995.-Water and nutrients are considered the primary factors limiting vegetative growth in many plant communities. We examined the effects of added water and nutrients on photosynthesis and water use efficiency (WUE) of juveniles of Quercus hemisphaerica and Quercus laevis growing together in a sandhill community in South Carolina. Supplemental water and nutrients were added in a 2 x 2 factorial design. Diurnal photosynthesis was determined approximately biweekly from June to October and integrated long-term WUE was evaluated using carbon isotope discrimination at the end of this period. Analysis of diurnal photosynthesis curves indicated no significant differences between species, but differences within species were significant between day of sampling, time of measurement, and treatment. Net photosynthesis of Q. hemisphaerica in watered treatments was significantly greater than photosynthesis in unwatered treatments, primarily at midday on days with high temperatures following prolonged drought. Neither nutrients nor water significantly affected the photosynthesis of Q. laevis, regardless of environmental conditions. Fertilization was found to differentially affect WUE of Q. hemisphaerica and Q. laevis, possibly confounding WUE differences between these two species. Because Q. hemisphaerica is often found in more mesic environments than Q. laevis, and because it responded to the addition of water with an increase in photosynthesis, we concluded that in a sandhill community Q. hemisphaerica juveniles are limited primarily by water rather than by low fertility. Our results indicated that juveniles of Q. laevis, the community dominant, are not as plastic as Q. hemisphaerica in their response to fertilizer and water additions.
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