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Multielement stoichiometry of submerged macrophytes across Yunnan plateau lakes (China)

机译:云南高原湖泊中淹没植物的多元素化学计量(中国)

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摘要

Stoichiometric homeostasis of element composition is one of the central concepts of ecological stoichiometry. We analyzed concentrations of macroelements (C, N, P, Ca, K, Mg, S), microelements (Cu, Fe, Mn, Mo, Ni, Zn) and beneficial elements (Na, Se, Si) in submerged macrophytes, water and sediments across 20 Yunnan plateau lakes. We predicted that tissue element composition in submerged macrophytes is affected by lake trophic level and taxonomy, and submerged macrophytes have weak stoichiometric homeostasis for all above 16 elements. Canonical discriminant analyses successfully discriminated among trophic level groups and taxa groups. Of all the elements, C, N, P and S most effectively discriminated among trophic level groups across 20 lakes, revealing lake trophic level mostly affect tissue macroelement composition in submerged macrophytes; while Ca, K and Se most effectively discriminated among submerged macrophytes taxa groups, suggesting taxonomy mostly affect compositions of macroelements and beneficial elements in submerged macrophytes. In addition, the stoichiometric homeostatic coefficient of 1/HCa:C for all five taxa of submerged macrophytes were less than zero, suggesting submerged macrophytes in Yunnan plateau lakes have strong Ca stoichiometric homeostasis. Our findings, not only broaden the knowledge of multielement stoichiometric homeostasis, but also help to choose most appropriate lake management strategy.
机译:元素组成的化学计量稳态是生态化学计量的核心概念之一。我们分析了淹没水生植物,水中大型元素(C,N,P,Ca,K,Mg,S),微量元素(Cu,Fe,Mn,Mo,Ni,Zn)和有益元素(Na,Se,Si)的浓度和沉积物跨越20个云南高原湖泊。我们预测,淹没植物的组织元素组成受湖泊营养水平和分类学的影响,而淹没植物对上述16种元素的化学计量稳态均较弱。典型判别分析成功地区分了营养级别组和分类组。在所有元素中,C,N,P和S最有效地区分了20个湖泊的营养级别组,这表明湖泊的营养级别主要影响淹没大型植物的组织大型元素组成。而Ca,K和Se可以最有效地区分淹没大型植物类群,这表明分类学主要影响淹没大型植物中的常量元素和有益元素的组成。此外,淹没植物的所有五个类群的1 / HCa:C化学计量稳态系数均小于零,这表明云南高原湖泊的淹没植物具有很强的Ca化学计量稳态。我们的发现,不仅拓宽了多元素化学计量稳态的知识,而且有助于选择最合适的湖泊管理策略。

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