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Development of a Biomimetic Root Oxygen Bioavailability Sensor

机译:仿生根氧生物利用度传感器的开发

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摘要

Low oxygen availability in soil can impair root function, thereby decreasing agronomic productivity. Without oxygen to support mitochondrial respiration, energy levels in roots may limit mineral nutrient (N, P, K) transport. Traditional methods for measuring soil oxygenation include the use of redox electrodes and polarographic oxygen sensors. These approaches are limited to measuring oxygen concentrations at specific locations and cannot determine the bio-availability of that oxygen to a growing root. An innovative approach has been developed for direct measurement of oxygen bioavailability. Instead of building the sensor to measure oxygen concentrations, it is possible to construct an electrochemical system in a manner that makes it sensitive to changes in oxygen transport and availability in the soil. Furthermore, it is even possible to construct the sensor to match the oxygen consumption characteristics of a specific root tip, which is important because most metabolism and nutrient uptake occurs here. This is accomplished by using a conductive-gel membrane system that allows sensor profiles to be engineered to match the metabolic profiles of specific species. If constructed to these standards, the sensor will biomimetically replicate biophysical oxygen depletion profiles that are analogous to those found in the rhizosphere of a growing root tip. The biomimetic root oxygen bio-availability (ROB) sensor integrates all biotic and abiotic factors in the soil that limit oxygen transport to the root, while providing real-time sensing. This new sensor technology could be used as a research tool or as a closed-loop control system for field and greenhouse irrigation.
机译:土壤中的氧气供应量低会损害根系功能,从而降低农艺生产力。没有氧气来支持线粒体呼吸,根部的能量水平可能会限制矿质养分(N,P,K)的运输。测量土壤氧合作用的传统方法包括使用氧化还原电极和极谱氧传感器。这些方法仅限于测量特定位置的氧气浓度,无法确定该氧气对正在生长的根的生物利用度。已经开发出一种创新方法来直接测量氧气的生物利用度。代替构建用于测量氧气浓度的传感器,可以以使其对土壤中的氧气传输和可用性变化敏感的方式构建电化学系统。此外,甚至有可能构造传感器以匹配特定根尖的耗氧特性,这很重要,因为大多数代谢和养分吸收都在这里发生。这是通过使用导电凝胶膜系统完成的,该系统允许对传感器配置文件进行设计以匹配特定物种的代谢配置文件。如果按照这些标准构造,该传感器将仿生地复制生物物理耗氧曲线,该曲线类似于在生长的根尖的根际中发现的那些曲线。仿生根氧生物利用度(ROB)传感器整合了土壤中所有限制氧向根运输的生物和非生物因子,同时提供了实时感测。这项新的传感器技术可以用作研究工具,也可以用作田间和温室灌溉的闭环控制系统。

著录项

  • 来源
    《Biological Engineering》 |2008年第2期|p.219-227|共9页
  • 作者单位

    The authors are David Marshall Porterfield, ASABE Fellow, Associate Professor, Department of Agricultural and Biological Engineering, Department of Horticulture and Landscape Architecture, Weldon School of Biomedical Engineering, Bindley Bioscience Center-Physiological Sensing Facility, Purdue University, West Lafayette, Indiana;

    Steven S. French, Undergraduate Research Assistant, Department of Mechanical Engineering, University of Texas Pan-Am, Edinburg, Texas;

    and Andrew R. DeCarlo, Graduate Research Assistant , Department of Agricultural and Biological Engineering, Bindley Bioscience Center-Physiological Sensing Facility, Purdue University, West Lafayette, Indiana. Corresponding author: D. Marshall Porterfield, Department of Agricultural and Biological Engineering, Department of Horticulture and Landscape Architecture, Weldon School of Biomedical Engineering, Bindley Bioscience Center-Physiological Sensing Facility, Purdue University, 225 S. University St., West Lafayette, IN 47907;

    phone: 765-494-1190;

    fax: 765-496-1115;

    e-mail: porterf@purdue.edu.;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Aeration, Anoxia, Biomimetic, Biosensor, Hypoxia, Oxygen, Rhizosphere, Root, Soil.;

    机译:曝气;缺氧;仿生;生物传感器;缺氧;氧气;根际;根;土壤。;
  • 入库时间 2022-08-17 23:31:54

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