Author:
Chen Yao,Zhu Panpan,Wu Shaoyuan,Lu Yan,Sun Jian,Cao Qinghe,Li Zongyun,Xu Tao
Abstract
Abstract
Background
GRAS gene is an important transcription factor gene family that plays a crucial role in plant growth, development, adaptation to adverse environmental condition. Sweet potato is an important food, vegetable, industrial raw material, and biofuel crop in the world, which plays an essential role in food security in China. However, the function of sweet potato GRAS genes remains unknown.
Results
In this study, we identified and characterised 70 GRAS members from Ipomoea trifida, which is the progenitor of sweet potato. The chromosome distribution, phylogenetic tree, exon-intron structure and expression profiles were analysed. The distribution map showed that GRAS genes were randomly located in 15 chromosomes. In combination with phylogenetic analysis and previous reports in Arabidopsis and rice, the GRAS proteins from I. trifida were divided into 11 subfamilies. Gene structure showed that most of the GRAS genes in I. trifida lacked introns. The tissue-specific expression patterns and the patterns under abiotic stresses of ItfGRAS genes were investigated via RNA-seq and further tested by RT-qPCR. Results indicated the potential functions of ItfGRAS during plant development and stress responses.
Conclusions
Our findings will further facilitate the functional study of GRAS gene and molecular breeding of sweet potato.
Funder
National Natural Science Foundation of China
Natural Science Foundation of Jiangsu Higher Education Institutions of China
Jiangsu Overseas Visiting Scholar Program for University Prominent Young & Middle-aged Teachers and Presidents
Priority Academic Program Development of Jiangsu Higher Education Institutions
China Agriculture Research System
National Key R&D Program of China
Publisher
Springer Science and Business Media LLC
Cited by
32 articles.
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