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跨木本植物物种和森林生态系统的叶片碳与大量营养素之间的关系突出了碳如何分配到叶片结构功能中。

Relationships Between Leaf Carbon and Macronutrients Across Woody Species and Forest Ecosystems Highlight How Carbon Is Allocated to Leaf Structural Function.

作者信息

Xing Kaixiong, Zhao Mingfei, Niinemets Ülo, Niu Shuli, Tian Jing, Jiang Yuan, Chen Han Y H, White Philip J, Guo Dali, Ma Zeqing

机构信息

Key Laboratory of Ecosystem Network Observation and Modeling, Center for Forest Ecosystem Studies and Qianyanzhou Ecological Station, Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, China.

State Key Laboratory of Earth Surface Processes and Resource Ecology, Faculty of Geographical Science, Beijing Normal University, Beijing, China.

出版信息

Front Plant Sci. 2021 Jun 11;12:674932. doi: 10.3389/fpls.2021.674932. eCollection 2021.

Abstract

Stoichiometry of leaf macronutrients can provide insight into the tradeoffs between leaf structural and metabolic investments. Structural carbon (C) in cell walls is contained in lignin and polysaccharides (cellulose, hemicellulose, and pectins). Much of leaf calcium (Ca) and a fraction of magnesium (Mg) were further bounded with cell wall pectins. The macronutrients phosphorus (P), potassium (K), and nitrogen (N) are primarily involved in cell metabolic functions. There is limited information on the functional interrelations among leaf C and macronutrients, and the functional dimensions characterizing the leaf structural and metabolic tradeoffs are not widely appreciated. We investigated the relationships between leaf C and macronutrient (N, P, K, Ca, Mg) concentrations in two widespread broad-leaved deciduous woody species (90 individuals) and (47 individuals), and further tested the generality of the observed relationships in 222 woody eudicots from 15 forest ecosystems. In a subsample of 20 broad-leaved species, we also analyzed the relationships among C, Ca, lignin, and pectin concentrations in leaf cell walls. We found a significant leaf C-Ca tradeoff operating within and across species and across ecosystems. This basic relationship was explained by variations in the share of cell wall lignin and pectin investments at the cell scale. The C-Ca tradeoffs were mainly driven by soil pH and mean annual temperature and precipitation, suggesting that leaves were more economically built with less C and more Ca as soil pH increased and at lower temperature and lower precipitation. However, we did not detect consistent patterns among C-N, and C-Mg at different levels of biological organization, suggesting substantial plasticity in N and Mg distribution among cell organelles and cell protoplast and cell wall. We observed two major axes of macronutrient differentiation: the cell-wall structural axis consisting of protein-free C and Ca and the protoplasm metabolic axis consisting of P and K, underscoring the decoupling of structural and metabolic elements inherently linked with cell wall from protoplasm investment strategies. We conclude that the tradeoffs between leaf C and Ca highlight how carbon is allocated to leaf structural function and suggest that this might indicate biogeochemical niche differentiation of species.

摘要

叶片大量营养素的化学计量学可以深入了解叶片结构和代谢投资之间的权衡。细胞壁中的结构性碳(C)包含在木质素和多糖(纤维素、半纤维素和果胶)中。叶片中的大部分钙(Ca)和一部分镁(Mg)进一步与细胞壁果胶结合。大量营养素磷(P)、钾(K)和氮(N)主要参与细胞代谢功能。关于叶片碳与大量营养素之间功能相互关系的信息有限,而且表征叶片结构和代谢权衡的功能维度并未得到广泛认可。我们研究了两种广泛分布的阔叶落叶木本物种(90个个体)和(47个个体)中叶片碳与大量营养素(N、P、K、Ca、Mg)浓度之间的关系,并进一步在来自15个森林生态系统的222种木本真双子叶植物中测试了所观察到关系的普遍性。在20个阔叶物种的子样本中,我们还分析了叶片细胞壁中碳、钙、木质素和果胶浓度之间的关系。我们发现,在物种内部和物种之间以及跨生态系统都存在显著的叶片碳 - 钙权衡。这种基本关系可以通过细胞尺度上细胞壁木质素和果胶投资份额的变化来解释。碳 - 钙权衡主要受土壤pH值、年平均温度和降水量的驱动,这表明随着土壤pH值升高以及温度和降水量降低,叶片以较少的碳和较多的钙构建更为经济。然而,我们在不同生物组织水平上未检测到碳 - 氮和碳 - 镁之间的一致模式,这表明氮和镁在细胞器、细胞原生质体和细胞壁之间的分布具有很大的可塑性。我们观察到大量营养素分化的两个主要轴:由无蛋白碳和钙组成的细胞壁结构轴以及由磷和钾组成的原生质代谢轴,这突出了与细胞壁固有相连的结构和代谢元素与原生质投资策略的解耦。我们得出结论,叶片碳与钙之间的权衡突出了碳如何分配到叶片结构功能中,并表明这可能暗示了物种的生物地球化学生态位分化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fa1d/8226226/297672fec786/fpls-12-674932-g0001.jpg

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