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The effect of nutrient enrichment on the growth, nucleic acid concentrations, and elemental stoichiometry of coral reef macroalgae

机译:营养物质富集对珊瑚礁大型藻类生长,核酸浓度和元素化学计量的影响

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AbstractThe growth rate hypothesis (GRH) links growth rates with organism elemental stoichiometry. Support for the GRH was found for many animal species, but less so for plants. This is the first study to test the GRH in macroalgae. Tropical coral reef macroalgae from three lineages, Caulerpa serrulata (Chlorophyta), Laurencia intricata (Rhodophyta), and Sargassum polyphyllum (Phaeophyceae) were grown enriched with nitrogen or phosphorous and under control conditions at Heron Island on the Great Barrier Reef, Australia. Growth rate, photosynthesis, nucleic acid composition, and elemental stoichiometry were measured. Nutrient enrichment had positive effects on photosynthetic rates and on investment in RNA. However, growth rate was not correlated with either photosynthetic rates or RNA content; thus, we did not find support for the GRH in tropical macroalgae. Macroalgae, especially L. intricata, accumulated P to very high levels (0.6% of dry weight). The growth rate response to tissue P concentrations was unimodal. Above 0.21%, P accumulation had negative effects on growth. Nitrogen was not stored, but evidence of futile cycling was observed. The capacity to store large amounts of P is probably an adaptation to the low and patchy nutrient environment of the tropical oceans.
机译:摘要增长率假设(GRH)将增长率与生物元素化学计量联系起来。已为许多动物物种提供了对GRH的支持,但对于植物却很少。这是测试大型藻类中GRH的第一项研究。在澳大利亚大堡礁的苍鹭岛上,在受控条件下,生长了富含氮或磷的三类热带珊瑚礁藻类(Caulerpa serrulata(Chlorophyta),Laurencia intricata(Rhodophyta)和Polygaslum(Phaeophyceae)。测量生长速率,光合作用,核酸组成和元素化学计量。营养富集对光合速率和对RNA的投资有积极影响。然而,生长速率与光合速率或RNA含量均无关。因此,我们没有发现热带大型藻类对GRH的支持。大型藻类,特别是复杂的L. intricata,将P积累到很高水平(>干重的0.6%)。对组织P浓度的生长速率反应是单峰的。高于0.21%,磷积累对生长有负面影响。没有储存氮,但是观察到无用循环的证据。储存大量P的能力可能是对热带海洋低而零星的营养环境的一种适应。

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