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High‐throughput phenotyping accelerates the dissection of the dynamic genetic architecture of plant growth and yield improvement in rapeseed.

Authors :
Li, Haitao
Feng, Hui
Guo, Chaocheng
Yang, Shanjing
Huang, Wan
Xiong, Xiong
Liu, Jianxiao
Chen, Guoxing
Liu, Qian
Xiong, Lizhong
Liu, Kede
Yang, Wanneng
Source :
Plant Biotechnology Journal; Nov2020, Vol. 18 Issue 11, p2345-2353, 9p
Publication Year :
2020

Abstract

Summary: Rapeseed is the second most important oil crop species and is widely cultivated worldwide. However, overcoming the 'phenotyping bottleneck' has remained a significant challenge. A clear goal of high‐throughput phenotyping is to bridge the gap between genomics and phenomics. In addition, it is important to explore the dynamic genetic architecture underlying rapeseed plant growth and its contribution to final yield. In this work, a high‐throughput phenotyping facility was used to dynamically screen a rapeseed intervarietal substitution line population during two growing seasons. We developed an automatic image analysis pipeline to quantify 43 dynamic traits across multiple developmental stages, with 12 time points. The time‐resolved i‐traits could be extracted to reflect shoot growth and predict the final yield of rapeseed. Broad phenotypic variation and high heritability were observed for these i‐traits across all developmental stages. A total of 337 and 599 QTLs were identified, with 33.5% and 36.1% consistent QTLs for each trait across all 12 time points in the two growing seasons, respectively. Moreover, the QTLs responsible for yield indicators colocalized with those of final yield, potentially providing a new mechanism of yield regulation. Our results indicate that high‐throughput phenotyping can provide novel insights into the dynamic genetic architecture of rapeseed growth and final yield, which would be useful for future genetic improvements in rapeseed. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14677644
Volume :
18
Issue :
11
Database :
Complementary Index
Journal :
Plant Biotechnology Journal
Publication Type :
Academic Journal
Accession number :
146649825
Full Text :
https://doi.org/10.1111/pbi.13396