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植物表型组学中的近远程感应:20 年的进展、挑战与展望。

Proximal and remote sensing in plant phenomics: 20 years of progress, challenges, and perspectives.

机构信息

Plant Phenomics Research Centre, Academy for Advanced Interdisciplinary Studies, National Engineering and Technology Center for Information Agriculture, Collaborative Innovation Centre for Modern Crop Production co-sponsored by Province and Ministry, Nanjing Agricultural University, Address: No. 1 Weigang, Xuanwu District, Nanjing 210095, China.

The Key Laboratory of Oasis Eco-agriculture, Xinjiang Production and Construction Corps, Agriculture College, Shihezi University, Shihezi 832003, China.

出版信息

Plant Commun. 2022 Nov 14;3(6):100344. doi: 10.1016/j.xplc.2022.100344. Epub 2022 Jun 2.

Abstract

Plant phenomics (PP) has been recognized as a bottleneck in studying the interactions of genomics and environment on plants, limiting the progress of smart breeding and precise cultivation. High-throughput plant phenotyping is challenging owing to the spatio-temporal dynamics of traits. Proximal and remote sensing (PRS) techniques are increasingly used for plant phenotyping because of their advantages in multi-dimensional data acquisition and analysis. Substantial progress of PRS applications in PP has been observed over the last two decades and is analyzed here from an interdisciplinary perspective based on 2972 publications. This progress covers most aspects of PRS application in PP, including patterns of global spatial distribution and temporal dynamics, specific PRS technologies, phenotypic research fields, working environments, species, and traits. Subsequently, we demonstrate how to link PRS to multi-omics studies, including how to achieve multi-dimensional PRS data acquisition and processing, how to systematically integrate all kinds of phenotypic information and derive phenotypic knowledge with biological significance, and how to link PP to multi-omics association analysis. Finally, we identify three future perspectives for PRS-based PP: (1) strengthening the spatial and temporal consistency of PRS data, (2) exploring novel phenotypic traits, and (3) facilitating multi-omics communication.

摘要

植物表型组学(PP)已被认为是研究基因组学和环境对植物相互作用的瓶颈,限制了智能育种和精准栽培的发展。由于性状的时空动态,高通量植物表型分析具有挑战性。由于在多维数据采集和分析方面的优势,近程和远程传感(PRS)技术越来越多地用于植物表型分析。在过去的二十年中,PRS 在 PP 中的应用取得了实质性的进展,本文从跨学科的角度,基于 2972 篇文献对其进行了分析。这一进展涵盖了 PRS 在 PP 中的应用的大多数方面,包括全球空间分布和时间动态的模式、特定的 PRS 技术、表型研究领域、工作环境、物种和性状。随后,我们展示了如何将 PRS 与多组学研究联系起来,包括如何实现多维 PRS 数据的采集和处理,如何系统地整合各种表型信息并得出具有生物学意义的表型知识,以及如何将 PP 与多组学关联分析联系起来。最后,我们确定了基于 PRS 的 PP 的三个未来展望:(1)加强 PRS 数据的时空一致性,(2)探索新的表型特征,(3)促进多组学交流。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c5a3/9700174/568f646f9bbe/gr1.jpg

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