Edwards Nelson T
Environmental Sciences Division, Oak Ridge National Laboratory, Oak Ridge, Tennessee 37831-6034, USA.
New Phytol. 1991 Jun;118(2):315-321. doi: 10.1111/j.1469-8137.1991.tb00983.x.
Respiration rates of roots of loblolly pine (Pinus taeda L.) seedlings decreased in response to elevated ozone (O ) concentrations. Estimated annual root respiration rates were 12% less in seedlings exposed to twice-ambient O (7 h mean = 70.110 nl 1 ) than in seedlings exposed to sub-ambient O (7 h mean = 20.40 nl 1 ). Measurements taken during periods of relatively rapid and of negligible root growth suggest that the reduced root respiration may be due to both reduced maintenance respiration and reduced growth respiration. Respiration rates of the soil substrate of the O -exposed seedlings were also below those of the substrate of seedlings exposed to sub-ambient O . The study supports the theory that there is a reduced supply of photosynthates to the roots of plants exposed to elevated O . It is hypothesized that a reduced supply of photosynthates to the roots may affect soil respiration rates by reducing root exudation rates and, consequently, reducing rhizosphere microbial populations.
火炬松(Pinus taeda L.)幼苗根系的呼吸速率随着臭氧(O₃)浓度升高而降低。暴露于两倍环境浓度臭氧(7小时平均浓度 = 70.110 nl⁻¹)下的幼苗,其估计的年根系呼吸速率比暴露于低于环境浓度臭氧(7小时平均浓度 = 20.40 nl⁻¹)下的幼苗低12%。在根系生长相对较快和可忽略不计的时期进行的测量表明,根系呼吸减少可能是由于维持呼吸减少和生长呼吸减少所致。暴露于臭氧环境下的幼苗土壤基质的呼吸速率也低于暴露于低于环境浓度臭氧下的幼苗基质的呼吸速率。该研究支持这样一种理论,即暴露于高浓度臭氧下的植物根系光合产物供应减少。据推测,根系光合产物供应减少可能会通过降低根系分泌物速率,进而减少根际微生物数量,从而影响土壤呼吸速率。