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Comparative ecology of submersed freshwater macrophytes in acidic environments: Responses to dissolved inorganic carbon availability.

机译:酸性环境中淹没的淡水大型植物的比较生态学:对溶解的无机碳有效性的响应。

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摘要

Submersed macrophyte species from acidic and circumneutral lakes were grown in the greenhouse at low and high dissolved inorganic carbon (DIC) concentrations at pH 6 to determine (a) if species vary in their response to DIC enrichment, (b) if response to DIC enrichment was related to the DIC source used for photosynthesis (free CO2, both bicarbonate (HCO3 -) and free CO2, or sediment CO2 and free CO2), and (c) if sediment type influenced response to DIC enrichment. A survey of acidic lakes was also undertaken to characterize variability of DIC spatially and temporally within the growing season as well as to characterize sediment properties that could influence macrophyte growth and community structure.;Variability in species response to DIC enrichment occurred at two levels---among individual species and among groups of species based on form of DIC used in photosynthesis. Bicarbonate users showed a significantly greater response to DIC enrichment than either species restricted to free CO2 or species also able to use sediment CO2. Bicarbonate users may therefore behave as a functional group in their response to DIC enrichment.;In contrast to response to DIC enrichment, submersed macrophyte species were largely unresponsive to sediment resources. This may partly be a function of a plant's ability to obtain resources from the water column as well as from the sediment.;Lake chemistry data show that substantial spatial variation in DIC and sediment characteristics exists not only among lakes, but within lakes, often at a relatively small scale. This was particularly true of DIC, which differed along a vertical gradient within a particular site as well as among sites within the same lake. Because submersed macrophytes respond differently to carbon availability, variations in the DIC regime have the clear potential to influence community composition in the manner predicted by our greenhouse studies.;Environmental variation among acidic habitats suggests that effects of acidification on macrophyte growth and community structure will not be uniform. Understanding patterns of response to environmental variability can help us predict the types of macrophyte communities that may develop in different lake systems as environmental conditions change due to acidification.
机译:将酸性和周围中性湖泊的沉水大型植物物种在pH值为6的低和高溶解无机碳(DIC)浓度的温室中生长,以确定(a)物种对DIC富集的响应是否不同,(b)对DIC富集的响应是否变化与光合作用的DIC来源(游离的CO2,碳酸氢盐(HCO3-)和游离的CO2,或沉积物的CO2和游离的CO2)有关,并且(c)如果沉积物类型影响了对DIC富集的响应。还对酸性湖泊进行了调查,以表征DIC在生长期内的时空分布特征,并表征可能影响大型植物生长和群落结构的沉积物特性;物种对DIC富集响应的变化发生在两个层次上- -基于光合作用中DIC的形式,在单个物种之间和物种组之间。碳酸氢盐使用者显示出对DIC富集的反应比限制为游离CO2的物种或也能够使用沉积物CO2的物种更大。因此,碳酸氢盐使用者可能在其对DIC富集的响应中充当一个官能团。与DIC富集的响应相反,淹没的大型植物物种对沉积物资源基本无响应。这可能部分取决于植物从水柱和沉积物中获取资源的能力。湖泊化学数据表明,DIC和沉积物特征的实质性空间变化不仅存在于湖泊之间,而且在湖泊内部,通常在规模相对较小。 DIC尤其如此,DIC沿特定站点内以及同一湖泊内站点之间的垂直梯度不同。由于淹没的大型植物对碳有效性的反应不同,因此DIC方案的变化具有明显的潜力,可以按照我们的温室研究预测的方式影响群落组成。;酸性生境之间的环境变异表明,酸化对大型植物生长和群落结构的影响不会要统一。理解对环境变化的响应方式可以帮助我们预测随着环境条件由于酸化而变化的不同湖泊系统中可能形成的大型植物群落类型。

著录项

  • 作者

    Pagano, Angela Marie.;

  • 作者单位

    State University of New York at Binghamton.;

  • 授予单位 State University of New York at Binghamton.;
  • 学科 Ecology.;Limnology.;Botany.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 114 p.
  • 总页数 114
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水产、渔业;
  • 关键词

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