Plant phenomics and high-throughput phenotyping accelerating rice functional genomics using multidisciplinary technologies
Yang, W. N.
2013
Source PublicationCurrent Opinion in Plant Biology
ISSN1369-5266
Volume16Issue:2Pages:180-187
AbstractThe functional analysis of the rice genome has entered into a high-throughput stage, and a project named RICE2020 has been proposed to determine the function of every gene in the rice genome by the year 2020. However, as compared with the robustness of genetic techniques, the evaluation of rice phenotypic traits is still performed manually, and the process is subjective, inefficient, destructive and error-prone. To overcome these limitations and help rice phenomics more closely parallel rice genomics, reliable, automatic, multifunctional, and high-throughput phenotyping platforms should be developed. In this article, we discuss the key plant phenotyping technologies, particularly photonics-based technologies, and then introduce their current applications in rice (wheat or barley) phenomics. We also note the major challenges in rice phenomics and are confident that these reliable high-throughput phenotyping tools will give plant scientists new perspectives on the information encoded in the rice genome.
Language英语
Document Type期刊论文
Identifierhttps://ir.xtbg.ac.cn/handle/353005/8589
Collection公共技术服务中心主要仪器相关文献_植物活体成像系统
Recommended Citation
GB/T 7714
Yang, W. N.. Plant phenomics and high-throughput phenotyping accelerating rice functional genomics using multidisciplinary technologies[J]. Current Opinion in Plant Biology,2013,16(2):180-187.
APA Yang, W. N..(2013).Plant phenomics and high-throughput phenotyping accelerating rice functional genomics using multidisciplinary technologies.Current Opinion in Plant Biology,16(2),180-187.
MLA Yang, W. N.."Plant phenomics and high-throughput phenotyping accelerating rice functional genomics using multidisciplinary technologies".Current Opinion in Plant Biology 16.2(2013):180-187.
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