气孔导度
杉木
冠层电导
化学
氮气
用水效率
天蓬
δ13C
马占相思树
农学
蒸腾作用
蒸汽压差
沉积(地质)
光合有效辐射
用水
光合作用
碳纤维
亚热带
呼吸商
环境科学
生态生理学
稳定同位素比值
含水量
环境化学
热带和亚热带湿润阔叶林
植物
园艺
焊剂(冶金)
碳同位素
氮气循环
作者
Rong Zhou,Xia Yang,Lixia Wu,Yanting Hu,Yelin Zeng,Shuai Ouyang,L. Chen,Pifeng Lei,Xiangwen Deng,Xi Fang,Wenhua Xiang
标识
DOI:10.1093/treephys/tpag015
摘要
Reactive Nitrogen (N) deposition has increased in southern China, potentially influencing forest carbon and water exchange processes. Cunninghamia lanceolata (Lamb.) Hook dominates as the most extensively planted and economically fast-growing timber species in subtropical China, but how C. lanceolata responds to increased N deposition remains incompletely understood. In this study, we analyzed the responses of water utilization to increased N deposition at a manipulative experiment with N addition in a C. lanceolata plantation. Four treatments were established including N addition of 25 kg ha-1 year-1 (N1; low concentration), 50 kg ha-1 year-1 (N2; medium concentration) and 100 kg ha-1 year-1 (N3; high concentration) applied as NH4Cl solution, and control treatment (CK). Results showed that N3 treatment significantly increased leaf N content. N3 treatment enhanced intrinsic water-use efficiency as evidenced by leaf carbon isotope composition (δ13C), and leaf-level stomatal conductance as indicated by leaf oxygen isotopic composition (δ18O). Similarly, N3 treatment enhanced sap flux density (Js) and canopy stomatal conductance (Gc) of C. lanceolata during growing season. However, N1 and N2 treatments exerted minimal impacts on Js and Gc, suggesting there existed a dose-response relationship between external N input amount and Js (or Gc). Moreover, high-level N addition enhanced the sensitivity of Js and Gc to vapor pressure deficit and photosynthetically active radiation. Overall, C. lanceolata are more likely to enhance resource acquisition ability, and exhibit higher water consumption under future scenarios of increased N deposition.
科研通智能强力驱动
Strongly Powered by AbleSci AI