Ecological stoichiometric characteristics of Carbon in leaf, root, stem, and soil in four wetland plants communities in Shengjin Lake, China

Ecological stoichiometric should be incorporated into management and nutrient impacted ecosystems dynamic to understand the status of ecosystems and ecological interaction. The present study focused on ecological stoichiometric characteristics of soil, and leaves, stems, and roots of different macro...

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Veröffentlicht in:PloS one 2020-08, Vol.15 (8)
Hauptverfasser: Dibar, Dagne Tafa, Zhang, Kun, Yuan, Suqiang, Zhang, Jinyu, Zhou, Zhongze, Ye, Xiaoxin
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Sprache:eng
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Zusammenfassung:Ecological stoichiometric should be incorporated into management and nutrient impacted ecosystems dynamic to understand the status of ecosystems and ecological interaction. The present study focused on ecological stoichiometric characteristics of soil, and leaves, stems, and roots of different macrophytes after the banning of seine fishing in Shengjin Lake. For C, N, and P analysis from leaves, stems, roots, and soil to explore their stoichiometric ratio and deriving environmental forces, four dominant plant communities (Vallisneria natans, Zizania latifolia, Trapa natans and Carex schmidtii) were collected. The concentration of C, N, P and C: N: P ratio in leaves, stems, roots, and soil among the plant communities varied significantly. Along the depth gradient high C: N was measured in C.schmidtii soil (7.08±1.504) but not vary significantly (P >0.05). High C: P result was found in T.natans (81.14±43.88) and in V.natans soil (81.40±42.57) respectively with no significant difference (p>0.05). Besides, N: P ratio measured high in V. natans (13.7±4.05) and showed significant variation (P
ISSN:1932-6203
1932-6203
DOI:10.1371/journal.pone.0230089