首页> 外文学位 >Uptake, Localization, and Speciation of Iron and Boron in the Brown Algae Ectocarpus siliculosus and Macrocystis pyrifera.
【24h】

Uptake, Localization, and Speciation of Iron and Boron in the Brown Algae Ectocarpus siliculosus and Macrocystis pyrifera.

机译:褐藻赤藓皮和大孢子藻中铁和硼的吸收,定位和形态。

获取原文
获取原文并翻译 | 示例

摘要

This work is divided into two parts: (I) cell surface binding, uptake, and storage of iron in brown algae, and (II) boron uptake, localization, and speciation in brown algae.;Iron is an essential element for all living organisms due to its ubiquitous role in redox and other enzymes, especially in the context of respiration and photosynthesis. Although the iron uptake and storage mechanisms of terrestrial/higher plants have been well-studied, the corresponding systems in marine algae have received far less attention. Chapter I focuses on these mechanisms in two brown seaweeds: Ectocarpus siliculosus and Macrocystis pyrifera. Through the course of experiments, it was found that a significant amount of iron was bound extracellularly. While this phenomenon is widely recognized and has prompted the development of experimental protocols to eliminate its contribution to iron uptake studies, its potential biological significance as a concentrated iron source for marine algae is only now being recognized. In this study, using an interdisciplinary array of techniques, we explore the nature of the extensive and powerful iron binding on the surface of both laboratory and environmental samples of Ectocarpus and Macrocystis. We propose that the surface binding properties of Ectocarpus and Macrocystis allow it to function as a quasi-biological metal ion "buffer" facilitating iron uptake under the widely varying external iron concentrations found in coastal marine environments. Short-term radiolabeled iron uptake studies verified that iron is taken up in a time- and concentration-dependent manner consistent with an active transport process. Using a combination of Mossbauer and XAS spectroscopies, a mineral core has been identified as the likely storage form. Genomic and microscopic analyses indicate that this iron store is more likely vacuolar-based than of protein origin.;In chapter II, I describe boron uptake, speciation, localization and possible biological function in Macrocystis and Ectocarpus. In contrast to the generally boron-poor terrestrial environment, the concentration of boron in the marine environment is relatively high (0.4 mM) and while there has been extensive interest in its use as a surrogate of pH in paleoclimate studies in the context of climate change-related questions, the relatively depth independent, and the generally non-nutrient-like concentration profile of this element have led to boron being neglected as a potentially biologically relevant element in the ocean. Results herein indicate that boron is taken up by a facilitated diffusion mechanism against a considerable concentration gradient. Furthermore, in both Ectocarpus and Macrocystis some boron is most likely bound to the cell wall constituent alginate and the photoassimilate mannitol located in sieve cells. These results indicate possible biological roles for boron as an osmoprotectant and/or metabolite transporter.
机译:这项工作分为两个部分:(I)细胞表面结合,褐藻中铁的吸收和储存,以及(II)褐藻中硼的吸收,局部化和形态形成。铁是所有活生物体必不可少的元素。由于其在氧化还原和其他酶中的普遍作用,特别是在呼吸和光合作用的背景下。尽管已经很好地研究了陆地/高等植物的铁吸收和存储机制,但海藻中的相应系统受到的关注却很少。第一章着重介绍了两种棕色海藻中的这些机制:Ectocarpus siliculosus和Pyrocystis pyrifera。通过实验过程,发现大量的铁结合在细胞外。尽管这种现象已得到广泛认可,并促使人们开发实验方案以消除其对铁吸收研究的贡献,但直到现在,人们才意识到其作为海藻浓缩铁源的潜在生物学意义。在这项研究中,我们使用跨学科的技术,探索了赤皮果和大囊藻的实验室和环境样品表面上广泛而有力的铁结合的性质。我们提出,赤皮果和Macrocystis的表面结合特性使其可以作为准生物金属离子“缓冲剂”,促进沿海海洋环境中广泛变化的外部铁浓度下的铁吸收。短期放射性标记的铁吸收研究证实,铁的吸收与时间和浓度有关,且与转运过程一致。使用Mossbauer和XAS光谱学的组合,已经确定了一种矿物芯是可能的储存形式。基因组学和微观分析表明,这种铁储存更可能是基于液泡的而不是蛋白质来源的。;在第二章中,我描述了Macrocystis和Ectocarpus中硼的吸收,形态,定位以及可能的生物学功能。与一般的贫硼陆地环境相比,海洋环境中的硼浓度相对较高(0.4 mM),并且在气候变化的背景下,人们广泛地将其用作替代古气候研究中的pH值有关元素的问题,相对独立的深度以及该元素的一般非营养性浓度分布,已导致硼被忽略为海洋中潜在的生物学相关元素。本文的结果表明,硼通过促进的扩散机制吸收了相当大的浓度梯度。此外,在赤果皮和Macrocystis中,一些硼最有可能与筛壁细胞壁中的藻酸盐和光同化甘露醇结合。这些结果表明硼作为渗透保护剂和/或代谢物转运蛋白的可能生物学作用。

著录项

  • 作者

    Miller, Eric Paul.;

  • 作者单位

    University of California, San Diego.;

  • 授予单位 University of California, San Diego.;
  • 学科 Chemistry.;Inorganic chemistry.;Analytical chemistry.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 163 p.
  • 总页数 163
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:52:34

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号