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针叶年龄对苏格兰松呼吸作用对二氧化碳浓度和温度长期升高的响应的影响。

Impact of needle age on the response of respiration in Scots pine to long-term elevation of carbon dioxide concentration and temperature.

作者信息

Zha Tianshan, Wang Kai-Yun, Ryyppö Aija, Kellomäki Seppo

机构信息

Faculty of Forestry, University of Joensuu, PO Box 111, FIN-80101 Joensuu, Finland.

出版信息

Tree Physiol. 2002 Dec;22(17):1241-8. doi: 10.1093/treephys/22.17.1241.

DOI:10.1093/treephys/22.17.1241
PMID:12464577
Abstract

Sixteen 20-year-old Scots pine (Pinus sylvestris L.) trees growing in the field were enclosed in environment-controlled chambers that for 4 years maintained: (1) ambient conditions (CON); (2) elevated atmospheric carbon dioxide concentration [CO2] (ambient + 350 micromol mol-1; EC); (3) elevated temperature (ambient + 2-3 degrees C; ET); or (4) elevated [CO2] and temperature (EC+ET). Dark respiration rate, specific leaf area (SLA) and the concentrations of starch and soluble sugars in needles were measured in the fourth year. Respiration rates, on both an area and a mass basis, and SLA decreased in EC relative to CON, but increased in ET and EC+ET, regardless of needle age class. Starch and soluble sugar concentrations for a given needle age class increased in EC, but decreased slightly in ET and EC+ET. Respiration rates and SLA were highest in current-year needles in all treatments, whereas starch and soluble sugar concentrations were highest in 1-year-old needles. Relative to that of older needles, respiration of current-year needles was inhibited less by EC, but increased in response to ET and EC+ET. All treatments enhanced the difference in respiration between current-year and older needles relative to that in CON. Age had a greater effect on needle respiration than any of the treatments. There were no differences in carbohydrate concentration or SLA between needle age classes in response to any treatment. Relative to CON, the temperature coefficient (Q10) of respiration increased slightly in EC, regardless of age, but declined significantly in ET and EC+ET, indicating acclimation of respiration to temperature.

摘要

16棵生长在野外的20年生欧洲赤松(Pinus sylvestris L.)被置于环境控制室内,在4年时间里维持以下条件:(1)环境条件(CON);(2)大气二氧化碳浓度升高[CO₂](环境浓度 + 350微摩尔/摩尔;EC);(3)温度升高(环境温度 + 2 - 3摄氏度;ET);或(4)二氧化碳浓度和温度都升高(EC + ET)。在第四年测量了暗呼吸速率、比叶面积(SLA)以及针叶中淀粉和可溶性糖的浓度。与CON相比,EC处理下基于面积和质量的呼吸速率以及SLA均下降,但在ET和EC + ET处理下升高,且不受针叶年龄类别的影响。对于给定的针叶年龄类别,淀粉和可溶性糖浓度在EC处理下升高,但在ET和EC + ET处理下略有下降。在所有处理中,当年生针叶的呼吸速率和SLA最高,而淀粉和可溶性糖浓度在1年生针叶中最高。相对于老针叶,EC处理对当年生针叶呼吸的抑制作用较小,但ET和EC + ET处理使其呼吸速率增加。相对于CON,所有处理都增强了当年生针叶和老针叶之间的呼吸差异。年龄对针叶呼吸的影响比任何处理都更大。在任何处理下,针叶年龄类别之间的碳水化合物浓度或SLA均无差异。相对于CON,无论年龄如何,EC处理下呼吸的温度系数(Q₁₀)略有增加,但在ET和EC + ET处理下显著下降,表明呼吸对温度有适应性变化。

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引用本文的文献

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Oecologia. 2015 Mar;177(3):885-900. doi: 10.1007/s00442-014-3159-4. Epub 2014 Dec 7.
2
Monitoring of environmental parameters for CO2 sequestration: a case study of Nagpur City, India.用于二氧化碳封存的环境参数监测:以印度那格浦尔市为例
Environ Monit Assess. 2007 Dec;135(1-3):281-90. doi: 10.1007/s10661-007-9649-7. Epub 2007 May 11.
3
Seasonal variation in respiration of 1-year-old shoots of scots pine exposed to elevated carbon dioxide and temperature for 4 years.
4年来暴露于高二氧化碳和温度环境下的1年生苏格兰松嫩枝呼吸作用的季节性变化。
Ann Bot. 2003 Jul;92(1):89-96. doi: 10.1093/aob/mcg118. Epub 2003 May 21.