Genome-wide identification and characterization of bHLH family genes from Ginkgo biloba

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作者
Xian Zhou
Yongling Liao
Soo-Un Kim
Zexiong Chen
Gongping Nie
Shuiyuan Cheng
Jiabao Ye
Feng Xu
机构
[1] Yangtze University,College of Horticulture and Gardening
[2] Seoul National University,Department of Agricultural Biotechnology and Research Institute for Agricultural Sciences
[3] Chongqing University of Arts and Sciences,Research Institute for Special Plants
[4] Wuhan Polytechnic University,National R&D for Se
[5] National Selenium Rich Product Quality Supervision and Inspection Center,Rich Agricultural Products Processing Technology
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Basic helix–loop–helix (bHLH) proteins, one of the most important and largest transcription factor family in plants, play important roles in regulating growth and development, stress response. In recent years, many bHLH family genes have been identified and characterized in woody plants. However, a systematic analysis of the bHLH gene family has not been reported in Ginkgo biloba, the oldest relic plant species. In this study, we identifed a total of 85 GbbHLH genes from the genomic and transcriptomic databases of G. biloba, which were classified into 17 subfamilies based on the phylogenetic analysis. Gene structures analysis indicated that the number of exon–intron range in GbbHLHs from 0 to 12. The MEME analysis showed that two conserved motifs, motif 1 and motif 2, distributed in most GbbHLH protein. Subcellular localization analysis exhibited that most GbbHLHs located in nucleus and a few GbbHLHs were distributed in chloroplast, plasma membrane and peroxisome. Promoter cis-element analysis revealed that most of the GbbHLH genes contained abundant cis-elements that involved in plant growth and development, secondary metabolism biosynthesis, various abiotic stresses response. In addition, correlation analysis between gene expression and flavonoid content screened seven candidate GbbHLH genes involved in flavonoid biosynthesis, providing the targeted gene encoding transcript factor for increase the flavonoid production through genetic engineering in G. biloba.
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