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LysipheN:一种用于近实时高频作物表型分析的重量法物联网设备:以普通豆类为例

LysipheN: a gravimetric IoT device for near real-time high-frequency crop phenotyping: a case study on common beans.

作者信息

Pineda-Castro Duvan, Diaz Harold, Soto Jonatan, Urban Milan Oldřich

机构信息

The Alliance of Bioversity International and CIAT, Km 17 Recta Cali-Palmira, Apartado Aereo 7613, Cali, 763537, Colombia.

出版信息

Plant Methods. 2024 Mar 14;20(1):39. doi: 10.1186/s13007-024-01170-x.

Abstract

Climate instability directly affects agro-environments. Water scarcity, high air temperature, and changes in soil biota are some factors caused by environmental changes. Verified and precise phenotypic traits are required for assessing the impact of various stress factors on crop performance while keeping phenotyping costs at a reasonable level. Experiments which use a lysimeter method to measure transpiration efficiency are often expensive and require complex infrastructures. This study presents the development and testing process of an automated, reliable, small, and low-cost prototype system using IoT with high-frequency potential in near-real time. Because of its waterproofness, our device-LysipheN-assesses each plant individually and can be deployed for experiments in different environmental conditions (farm, field, greenhouse, etc.). LysipheN integrates multiple sensors, automatic irrigation according to desired drought scenarios, and a remote, wireless connection to monitor each plant and device performance via a data platform. During testing, LysipheN proved to be sensitive enough to detect and measure plant transpiration, from early to ultimate plant developmental stages. Even though the results were generated on common beans, the LysipheN can be scaled up/adapted to other crops. This tool serves to screen transpiration, transpiration efficiency, and transpiration-related physiological traits. Because of its price, endurance, and waterproof design, LysipheN will be useful in screening populations in a realistic ecological and breeding context. It operates by phenotyping the most suitable parental lines, characterizing genebank accessions, and allowing breeders to make a target-specific selection using functional traits (related to the place where LysipheN units are located) in line with a realistic agronomic background.

摘要

气候不稳定直接影响农业环境。水资源短缺、气温升高和土壤生物群变化是环境变化导致的一些因素。在将表型分析成本保持在合理水平的同时,评估各种胁迫因素对作物性能的影响需要经过验证的精确表型性状。使用蒸渗仪方法测量蒸腾效率的实验通常成本高昂,且需要复杂的基础设施。本研究展示了一种自动化、可靠、小型且低成本的原型系统的开发和测试过程,该系统利用物联网,具有近实时的高频潜力。由于具备防水性能,我们的设备LysipheN可对每株植物进行单独评估,并可部署用于不同环境条件(农场、田地、温室等)下的实验。LysipheN集成了多个传感器,可根据所需干旱情景进行自动灌溉,并通过数据平台实现远程无线连接,以监测每株植物和设备的性能。在测试过程中,LysipheN被证明足够灵敏,能够检测和测量从植物发育早期到最终阶段的蒸腾作用。尽管结果是在普通豆上得出的,但LysipheN可以扩大规模/适用于其他作物。该工具用于筛选蒸腾作用、蒸腾效率以及与蒸腾相关的生理性状。由于其价格、耐用性和防水设计,LysipheN在现实的生态和育种环境中筛选群体时将很有用。它通过对最合适的亲本系进行表型分析、对基因库种质进行特征描述,并允许育种者根据现实的农艺背景,利用功能性状(与LysipheN装置所在位置相关)进行目标特异性选择来运作。

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