日本南部高知市桧柏人工林作物树木和林下植被水分和氮利用的年龄相关变化

Nitrogen Pub Date : 2022-05-02 DOI:10.3390/nitrogen3020017
Y. Inagaki, K. Miyamoto, A. Sakai
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摘要

在日本南部高知市研究了21 ~ 46岁红木人工林作物和林下植被水分和氮利用的年龄相关变化。随着林龄的增加,日本柏树凋落叶中氮含量呈下降趋势。红杉叶片δ15N呈二次函数关系,在21 ~ 26岁时呈上升趋势,在46岁时呈下降趋势。这些结果表明,老杉树利用较低δ15N值的土壤氮源,与林下植被对土壤氮的竞争应该更强。杉木碳同位素鉴别(Δ13C)在21 ~ 30岁时呈下降趋势,在46岁时呈上升趋势。相反,红木柏树的内在水分利用效率(iWUE)在21 ~ 36岁呈上升趋势,在46岁呈下降趋势。这些结果表明,早期的白木柏通过减少气孔开度来提高其iWUE。随着林分密度的降低,林下植被气孔开度增加,土壤水分有效性提高。后期,由于光合能力降低,氮素限制,白木的iWUE下降。这些结果表明,由于与林下植被对土壤氮资源的竞争加剧,白木柏树对大气二氧化碳水平升高的响应在后期的增加幅度较小。
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Age-Related Changes in Water and Nitrogen Utilization in Crop Trees and Understory Vegetation in a Hinoki Cypress Plantation Forest in Kochi City, Southern Japan
Age-related changes in water and nitrogen utilization of crop and understory vegetation in a hinoki cypress plantation forest were investigated from the age of 21 to 46 years in Kochi City, southern Japan. Nitrogen concentration in the leaf litter of hinoki cypress showed a decreasing trend with forest age. The leaf δ15N of hinoki cypress was related to a quadratic function and increased from the age of 21 to 26 years and then decreased to the age of 46 years. These results suggest that older hinoki cypress trees utilize soil nitrogen sources with lower δ15N values, and the competition for soil nitrogen with understory vegetation should be stronger. Carbon isotope discrimination (Δ13C) of hinoki cypress decreased from the age of 21 to 30 years and then increased to the age of 46 years. In contrast, the intrinsic water-use efficiency (iWUE) of hinoki cypress increased from the age of 21 to 36 years and then decreased to the age of 46 years. These findings suggest that hinoki cypress trees in the earlier time increased their iWUE by reducing stomatal opening. In the earlier time, the stomatal opening of understory vegetation increased due to higher soil water availability with decreasing stand density of crop trees. In the later time, the iWUE of hinoki cypress decreased due to lower photosynthetic capacity with nitrogen limitation. These results suggest that the increase in the iWUE of hinoki cypress in response to elevated atmospheric carbon dioxide levels should be smaller in the later time because of stronger competition with understory vegetation for soil nitrogen resources.
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