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自动根系分泌物系统(ARES):一种在田间定期向土壤施加溶质的方法。

The Automated Root Exudate System (ARES): a method to apply solutes at regular intervals to soils in the field.

作者信息

Lopez-Sangil Luis, George Charles, Medina-Barcenas Eduardo, Birkett Ali J, Baxendale Catherine, Bréchet Laëtitia M, Estradera-Gumbau Eduard, Sayer Emma J

机构信息

Lancaster Environment Centre Lancaster University Lancaster LA1 4YQUK.

Centre for Ecology and Hydrology Wallingford OX10 8BB UK.

出版信息

Methods Ecol Evol. 2017 Sep;8(9):1042-1050. doi: 10.1111/2041-210X.12764. Epub 2017 Apr 11.

Abstract

Root exudation is a key component of nutrient and carbon dynamics in terrestrial ecosystems. Exudation rates vary widely by plant species and environmental conditions, but our understanding of how root exudates affect soil functioning is incomplete, in part because there are few viable methods to manipulate root exudates . To address this, we devised the Automated Root Exudate System (ARES), which simulates increased root exudation by applying small amounts of labile solutes at regular intervals in the field.The ARES is a gravity-fed drip irrigation system comprising a reservoir bottle connected via a timer to a micro-hose irrigation grid covering . 1 m; 24 drip-tips are inserted into the soil to 4-cm depth to apply solutions into the rooting zone. We installed two ARES subplots within existing litter removal and control plots in a temperate deciduous woodland. We applied either an artificial root exudate solution (RE) or a procedural control solution (CP) to each subplot for 1 min day during two growing seasons. To investigate the influence of root exudation on soil carbon dynamics, we measured soil respiration monthly and soil microbial biomass at the end of each growing season.The ARES applied the solutions at a rate of . 2 L m week without significantly increasing soil water content. The application of RE solution had a clear effect on soil carbon dynamics, but the response varied by litter treatment. Across two growing seasons, soil respiration was 25% higher in RE compared to CP subplots in the litter removal treatment, but not in the control plots. By contrast, we observed a significant increase in microbial biomass carbon (33%) and nitrogen (26%) in RE subplots in the control litter treatment.The ARES is an effective, low-cost method to apply experimental solutions directly into the rooting zone in the field. The installation of the systems entails minimal disturbance to the soil and little maintenance is required. Although we used ARES to apply root exudate solution, the method can be used to apply many other treatments involving solute inputs at regular intervals in a wide range of ecosystems.

摘要

根系分泌物是陆地生态系统中养分和碳动态的关键组成部分。分泌物速率因植物种类和环境条件而异,但我们对根系分泌物如何影响土壤功能的理解并不完整,部分原因是几乎没有可行的方法来操控根系分泌物。为解决这一问题,我们设计了自动根系分泌物系统(ARES),该系统通过在田间定期施加少量不稳定溶质来模拟根系分泌物增加。ARES是一种重力滴灌系统,由一个储水瓶组成,通过定时器连接到覆盖1平方米的微型软管灌溉网格。24个滴头插入土壤至4厘米深度,以便将溶液施用到生根区。我们在温带落叶林地现有的凋落物清除区和对照区中设置了两个ARES子地块。在两个生长季节中,我们每天向每个子地块施加人工根系分泌物溶液(RE)或程序对照溶液(CP)1分钟。为了研究根系分泌物对土壤碳动态的影响,我们每月测量土壤呼吸,并在每个生长季节结束时测量土壤微生物生物量。ARES以每周2升/平方米的速率施用溶液,而不会显著增加土壤含水量。RE溶液的施用对土壤碳动态有明显影响,但响应因凋落物处理而异。在两个生长季节中,在凋落物清除处理中,RE子地块的土壤呼吸比CP子地块高25%,但在对照地块中并非如此。相比之下,在对照凋落物处理中,我们观察到RE子地块中微生物生物量碳(33%)和氮(26%)显著增加。ARES是一种将实验溶液直接施用到田间生根区的有效、低成本方法。该系统的安装对土壤的干扰最小,所需维护也很少。虽然我们使用ARES来施用根系分泌物溶液,但该方法可用于在广泛的生态系统中定期施用许多其他涉及溶质输入的处理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5b5/5606508/eee5fe7651ac/MEE3-8-1042-g001.jpg

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