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1.
J Genet Genomics ; 51(8): 790-800, 2024 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-38734136

RESUMO

Crop phenomics enables the collection of diverse plant traits for a large number of samples along different time scales, representing a greater data collection throughput compared with traditional measurements. Most modern crop phenomics use different sensors to collect reflective, emitted, and fluorescence signals, etc., from plant organs at different spatial and temporal resolutions. Such multi-modal, high-dimensional data not only accelerates basic research on crop physiology, genetics, and whole plant systems modeling, but also supports the optimization of field agronomic practices, internal environments of plant factories, and ultimately crop breeding. Major challenges and opportunities facing the current crop phenomics research community include developing community consensus or standards for data collection, management, sharing, and processing, developing capabilities to measure physiological parameters, and enabling farmers and breeders to effectively use phenomics in the field to directly support agricultural production.


Assuntos
Produtos Agrícolas , Fenômica , Melhoramento Vegetal , Produtos Agrícolas/genética , Produtos Agrícolas/crescimento & desenvolvimento , Melhoramento Vegetal/métodos , Agricultura , Fenótipo
2.
Methods Mol Biol ; 2787: 3-38, 2024.
Artigo em Inglês | MEDLINE | ID: mdl-38656479

RESUMO

In this chapter, we explore the application of high-throughput crop phenotyping facilities for phenotype data acquisition and the extraction of significant information from the collected data through image processing and data mining methods. Additionally, the construction and outlook of crop phenotype databases are introduced and the need for global cooperation and data sharing is emphasized. High-throughput crop phenotyping significantly improves accuracy and efficiency compared to traditional measurements, making significant contributions to overcoming bottlenecks in the phenotyping field and advancing crop genetics.


Assuntos
Produtos Agrícolas , Mineração de Dados , Processamento de Imagem Assistida por Computador , Fenótipo , Produtos Agrícolas/genética , Produtos Agrícolas/crescimento & desenvolvimento , Mineração de Dados/métodos , Processamento de Imagem Assistida por Computador/métodos , Gerenciamento de Dados/métodos , Ensaios de Triagem em Larga Escala/métodos
3.
Curr Opin Plant Biol ; 67: 102220, 2022 06.
Artigo em Inglês | MEDLINE | ID: mdl-35489163

RESUMO

Climate change and exponential population growth are exposing an immediate need for developing future crops that are highly resilient and adaptable to changing environments to maintain global food security in the next decade. Rigorous selection from long domestication history has rendered cultivated crops genetically disadvantaged, raising concerns in their ability to adapt to these new challenges and limiting their usefulness in breeding programmes. As a result, future crop improvement efforts must rely on integrating various genomic strategies ranging from high-throughput sequencing to machine learning, in order to exploit germplasm diversity and overcome bottlenecks created by domestication, expansive multi-dimensional phenotypes, arduous breeding processes, complex traits and big data.


Assuntos
Produtos Agrícolas , Melhoramento Vegetal , Mudança Climática , Produtos Agrícolas/genética , Domesticação , Genômica , Melhoramento Vegetal/métodos
4.
Mol Plant ; 13(2): 187-214, 2020 02 03.
Artigo em Inglês | MEDLINE | ID: mdl-31981735

RESUMO

Since whole-genome sequencing of many crops has been achieved, crop functional genomics studies have stepped into the big-data and high-throughput era. However, acquisition of large-scale phenotypic data has become one of the major bottlenecks hindering crop breeding and functional genomics studies. Nevertheless, recent technological advances provide us potential solutions to relieve this bottleneck and to explore advanced methods for large-scale phenotyping data acquisition and processing in the coming years. In this article, we review the major progress on high-throughput phenotyping in controlled environments and field conditions as well as its use for post-harvest yield and quality assessment in the past decades. We then discuss the latest multi-omics research combining high-throughput phenotyping with genetic studies. Finally, we propose some conceptual challenges and provide our perspectives on how to bridge the phenotype-genotype gap. It is no doubt that accurate high-throughput phenotyping will accelerate plant genetic improvements and promote the next green revolution in crop breeding.


Assuntos
Produtos Agrícolas/genética , Fenômica , Fenótipo , Genoma de Planta , Genômica , Genótipo , Melhoramento Vegetal
5.
Front Plant Sci ; 10: 714, 2019.
Artigo em Inglês | MEDLINE | ID: mdl-31214228

RESUMO

Reliable, automatic, multifunctional, and high-throughput phenotypic technologies are increasingly considered important tools for rapid advancement of genetic gain in breeding programs. With the rapid development in high-throughput phenotyping technologies, research in this area is entering a new era called 'phenomics.' The crop phenotyping community not only needs to build a multi-domain, multi-level, and multi-scale crop phenotyping big database, but also to research technical systems for phenotypic traits identification and develop bioinformatics technologies for information extraction from the overwhelming amounts of omics data. Here, we provide an overview of crop phenomics research, focusing on two parts, from phenotypic data collection through various sensors to phenomics analysis. Finally, we discussed the challenges and prospective of crop phenomics in order to provide suggestions to develop new methods of mining genes associated with important agronomic traits, and propose new intelligent solutions for precision breeding.

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