Characterization of Nitrogen Use by Neotropical Myrtaceae in Dry and Wet Forests of Southeast Brazil

IF 1.6 4区 地球科学 Q3 GEOSCIENCES, MULTIDISCIPLINARY
E. Pereira-Silva, C. Joly, L. Sodek, E. Hardt, M. Aidar
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引用次数: 0

Abstract

We hypothesized that neotropical Myrtaceae could be organized into groups that are naturally less or non-responsive to NO3−, and that use other N forms, such as amino acids, for internal N transport. Ecophysiological tests were conducted to measure nitrate reductase activity (NRA), NO3− content, total N, δ15N natural abundance, the C:N ratio in leaves, free amino acid, and NO3− transport via xylem sap. We showed that Myrtaceae tree species have a relatively low NRA, in addition to little NO3− in leaves and free NO3− in the xylem sap during the wet and dry seasons. We suggested a possible compartmentalization of N use, wherein plants derive their internal N from and use their transport mechanism to move N between below-ground and above-ground parts, assimilating and transporting more N and C through amino acids such as glutamine, arginine, and citrulline. Evidence of low NO3− availability in tropical soils is important when trying to understand forest species’ N-use strategies, given their importance to plant nutrition. Differences in the responses of some Myrtaceae species to the seasonality of environmental factors suggest the need for further studies concerning N in natural forests, for example, to help understand the problem of N deposition ecosystems.
巴西东南部干湿森林中新热带桃金娘科植物氮素利用特征
我们假设新热带myrtacae可以被组织成天然对NO3−反应较少或不响应的群体,并且使用其他N形式,如氨基酸,进行内部N运输。通过对硝酸还原酶活性(NRA)、NO3 -含量、总氮、δ15N自然丰度、叶片C:N比、游离氨基酸和通过木质部液输送NO3 -的生理生态试验研究表明,桃金桃科树木在干湿季节具有较低的NRA,且叶片中NO3 -含量和木质部液中游离NO3 -含量较少。我们提出了一种可能的氮素利用分区化机制,其中植物从地下和地上部分获取内部氮素,并利用其运输机制在地下和地上部分之间移动氮素,通过谷氨酰胺、精氨酸和瓜氨酸等氨基酸吸收和运输更多的氮和碳。考虑到森林物种对植物营养的重要性,热带土壤NO3−有效性低的证据在试图了解森林物种的n利用策略时很重要。一些桃金桃科植物对环境因子季节性的响应差异表明,需要进一步研究天然林中的N,例如,帮助了解N沉积生态系统的问题。
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来源期刊
Earth Interactions
Earth Interactions 地学-地球科学综合
CiteScore
2.70
自引率
5.00%
发文量
16
审稿时长
>12 weeks
期刊介绍: Publishes research on the interactions among the atmosphere, hydrosphere, biosphere, cryosphere, and lithosphere, including, but not limited to, research on human impacts, such as land cover change, irrigation, dams/reservoirs, urbanization, pollution, and landslides. Earth Interactions is a joint publication of the American Meteorological Society, American Geophysical Union, and American Association of Geographers.
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