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稳定同位素分析揭示了土壤氮和二氧化氮对杂交杨树叶水分利用效率的不同影响。

Stable isotope analysis reveals differential effects of soil nitrogen and nitrogen dioxide on the water use efficiency in hybrid poplar leaves.

作者信息

Siegwolf Rolf T W, Matyssek Rainer, Saurer Matthias, Maurer Stephan, Günthardt-Goerg Madeleine S, Schmutz Paul, Bucher Jürg B

机构信息

Paul Scherrer Institute, CH-5232 Villigen-PSI, Switzerland.

Lehrstuhl für Forstbotanik der Ludwig Maximilians Universität München, D-85354 Freising, Germany.

出版信息

New Phytol. 2001 Feb;149(2):233-246. doi: 10.1046/j.1469-8137.2001.00032.x.

DOI:10.1046/j.1469-8137.2001.00032.x
PMID:33874623
Abstract

•  The effects of nitrogen dioxide (NO ) exposure are reported on the physiology, morphology and carbon partitioning of hybrid poplar clone cuttings (Populus ×euramericana) grown under high and low soil nitrogen supply. •  Plants were exposed to filtered air or NO -enriched air (80-135 nl l ) over 12 wk growth in phytotrons. Stable isotope analysis, combined with CO and H O gas exchange measurements, biomass analysis and morphological development, was used to assess the integrated long-term effects of NO . •  NO had no toxic effects. A reduced N-isotope ratio indicated incorporation of NO while nitrate reductase activity in leaves was stimulated. The two nitrogen sources had differential effects on water use efficiency (WUE): NO exposure increased long-term WUE; soil N supply decreased WUE; a result not detectable using growth and short-term gas exchange experiments. Plants benefited from airborne NO , increasing CO assimilation rate and biomass; both N sources increased shoot production at the expense of root growth. NO exposure induced leaf formation with reduced stomatal density and increased leaf area. •  NO exposure might be beneficial although the reduced root: shoot biomass could have a detrimental effect on nutrient balance and drought resistance.

摘要

• 报告了在高氮和低氮土壤供应条件下生长的杂交杨树无性系插条(欧美杨)暴露于二氧化氮(NO₂)后对其生理、形态和碳分配的影响。• 在人工气候室中,让植物在12周的生长期间暴露于过滤空气或富含NO₂的空气(80 - 135 nl·l⁻¹)中。结合CO₂和H₂O气体交换测量、生物量分析和形态发育,使用稳定同位素分析来评估NO₂的综合长期影响。• NO₂没有毒性作用。降低的氮同位素比率表明NO₂被吸收,同时叶片中的硝酸还原酶活性受到刺激。两种氮源对水分利用效率(WUE)有不同影响:暴露于NO₂提高了长期WUE;土壤氮供应降低了WUE;这一结果在生长和短期气体交换实验中无法检测到。植物从空气中的NO₂中受益,提高了CO₂同化率和生物量;两种氮源都增加了地上部分的产量,但以根系生长为代价。暴露于NO₂诱导了叶片形成,气孔密度降低,叶面积增加。• 暴露于NO₂可能是有益的,尽管根与地上部分生物量的降低可能对养分平衡和抗旱性产生不利影响。

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