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施氮对水曲柳和蒙古栎叶片和气孔导度的影响。

Effects of nitrogen additions on mesophyll and stomatal conductance in Manchurian ash and Mongolian oak.

机构信息

Key Laboratory of Forest Ecology and Management, Institute of Applied Ecology, Chinese Academy of Sciences, Shenyang, 110016, China.

University of Chinese Academy of Sciences, Beijing, 100049, China.

出版信息

Sci Rep. 2020 Jun 22;10(1):10038. doi: 10.1038/s41598-020-66886-x.

Abstract

The response of plant CO diffusion conductances (mesophyll and stomatal conductances, g and g) to soil drought has been widely studied, but few studies have investigated the effects of soil nitrogen addition levels on g and g. In this study, we investigated the responses of g and g of Manchurian ash and Mongolian oak to four soil nitrogen addition levels (control, low nitrogen, medium nitrogen and high nitrogen) and the changes in leaf anatomy and associated enzyme activities (aquaporin (AQP) and carbonic anhydrase (CA)). Both g and g increased with the soil nitrogen addition levels for both species, but then decreased under the high nitrogen addition level, which primarily resulted from the enlargements in leaf and mesophyll cell thicknesses, mesophyll surface area exposed to intercellular space per unit leaf area and stomatal opening status with soil nitrogen addition. Additionally, the improvements in leaf N content and AQP and CA activities also significantly promoted g and g increases. The addition of moderate levels of soil nitrogen had notably positive effects on CO diffusion conductance in leaf anatomy and physiology in Manchurian ash and Mongolian oak, but these positive effects were weakened with the addition of high levels of soil nitrogen.

摘要

植物 CO 扩散导度(叶肉导度和气孔导度,g 和 g)对土壤干旱的响应已得到广泛研究,但很少有研究探讨土壤氮添加水平对 g 和 g 的影响。本研究调查了氮添加对水曲柳和蒙古栎 g 和 g 的影响以及叶片解剖结构和相关酶活性(水通道蛋白(AQP)和碳酸酐酶(CA))的变化。两种树种的 g 和 g 均随土壤氮添加水平的增加而增加,但在高氮添加水平下则降低,这主要是由于叶片和叶肉细胞厚度、单位叶面积暴露于细胞间隙的叶肉表面积和气孔开度的增加所致。此外,叶片氮含量和 AQP 和 CA 活性的提高也显著促进了 g 和 g 的增加。适度的土壤氮添加对水曲柳和蒙古栎叶片解剖结构和生理特性中的 CO 扩散导度有显著的积极影响,但随着高氮添加水平的增加,这些积极影响会减弱。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7814/7308411/301d0d7bbea7/41598_2020_66886_Fig1_HTML.jpg

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