Precise Phenotyping for Improved Crop Quality and Management in Protected Cropping: A Review

GM crops Pub Date : 2022-09-22 DOI:10.3390/crops2040024
Chelsea Maier, Zhongwen Chen, C. Cazzonelli, D. Tissue, O. Ghannoum
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引用次数: 2

Abstract

Protected cropping produces more food per land area than field-grown crops. Protected cropping includes low-tech polytunnels utilizing protective coverings, medium-tech facilities with some environmental control, and high-tech facilities such as fully automated glasshouses and indoor vertical farms. High crop productivity and quality are maintained by using environmental control systems and advanced precision phenotyping sensor technologies that were first developed for broadacre agricultural and can now be utilized for protected-cropping applications. This paper reviews the state of the global protected-cropping industry and current precision phenotyping methodology and technology that is used or can be used to advance crop productivity and quality in a protected growth environment. This review assesses various sensor technologies that can monitor and maintain microclimate parameters, as well as be used to assess plant productivity and produce quality. The adoption of precision phenotyping technologies is required for sustaining future food security and enhancing nutritional quality.
精确表型在改良作物品质和管理中的应用研究进展
保护作物每片土地生产的粮食比大田作物多。保护性种植包括利用保护性覆盖物的低技术含量的综合隧道,具有一定环境控制的中等技术含量的设施,以及全自动温室和室内垂直农场等高科技设施。通过使用环境控制系统和先进的精确表型传感器技术来保持高作物生产力和质量,这些技术最初是为大面积农业开发的,现在可用于保护作物应用。本文综述了全球保护性作物产业的现状,以及目前用于或可用于提高保护性生长环境中作物生产力和质量的精确表型方法和技术。这篇综述评估了各种传感器技术,它们可以监测和维持小气候参数,以及用于评估植物生产力和产品质量。采用精确表型技术是维持未来粮食安全和提高营养质量的必要条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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