Functional genomics of Brassica napus: Progress, challenges, and perspectives

Author:

Tan Zengdong12ORCID,Han Xu1ORCID,Dai Cheng1ORCID,Lu Shaoping1ORCID,He Hanzi1ORCID,Yao Xuan12ORCID,Chen Peng1ORCID,Yang Chao1ORCID,Zhao Lun1ORCID,Yang Qing‐Yong12ORCID,Zou Jun1ORCID,Wen Jing1ORCID,Hong Dengfeng12ORCID,Liu Chao1,Ge Xianhong1ORCID,Fan Chuchuan1ORCID,Yi Bing1,Zhang Chunyu1ORCID,Ma Chaozhi1,Liu Kede1,Shen Jinxiong1ORCID,Tu Jinxing1ORCID,Yang Guangsheng1,Fu Tingdong1,Guo Liang12ORCID,Zhao Hu1ORCID

Affiliation:

1. National Key Laboratory of Crop Genetic Improvement, Hubei Hongshan Laboratory Huazhong Agricultural University Wuhan 430070 China

2. Yazhouwan National Laboratory Sanya 572025 China

Abstract

ABSTRACTBrassica napus, commonly known as rapeseed or canola, is a major oil crop contributing over 13% to the stable supply of edible vegetable oil worldwide. Identification and understanding the gene functions in the B. napus genome is crucial for genomic breeding. A group of genes controlling agronomic traits have been successfully cloned through functional genomics studies in B. napus. In this review, we present an overview of the progress made in the functional genomics of B. napus, including the availability of germplasm resources, omics databases and cloned functional genes. Based on the current progress, we also highlight the main challenges and perspectives in this field. The advances in the functional genomics of B. napus contribute to a better understanding of the genetic basis underlying the complex agronomic traits in B. napus and will expedite the breeding of high quality, high resistance and high yield in B. napus varieties.

Funder

National Science Fund for Distinguished Young Scholars

Publisher

Wiley

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