Yu Wang
Articles written in Journal of Genetics
Volume 90 Issue 2 August 2011 pp 339-342 Research Note
Lihua Cao Fang Liu Yu Wang Jian Ma Shusen Wang Libo Wang Yang Zhang Chen Chen Yang Luo Hongwei Ma
Volume 90 Online resources 2011 pp e44-e46
Polymorphic microsatellite loci in Chinese piebald odorous frog (
Volume 94 Issue 3 September 2015 pp 377-390 Research Article
Genomewide identification, classification and analysis of NAC type gene family in maize
Xiaojian Peng Yang Zhao Xiaoming Li Min Wu Wenbo Chai Lei Sheng Yu Wang Qing Dong Haiyang Jiang Beijiu Cheng
NAC transcription factors comprise a large plant-specific gene family. Increasing evidence suggests that members of this family have diverse functions in plant growth and development. In this study, we performed a genomewide survey of NAC type genes in maize (
Volume 95 Issue 3 September 2016 pp 691-704 RESEARCH ARTICLE
HUASHENG ZHU JIANDONG WU YINGLI JIANG JING JIN WEI ZHOU YU WANG GUOMIN HAN YANG ZHAO BEIJIU CHENG
Multidrug and toxic compound extrusion (MATE) proteins are a group of secondary active transporters, which widely exist in all living organisms and play important role in the detoxication of endogenous secondary metabolites and exogenous agents. However, to date, no systematic and comprehensive study of this family is reported in maize. Here, a total of 49 MATE genes (ZmMATE) were identified and divided into seven groups by phylogenetic analysis. Conserved intro–exon structures and motif compositions were investigated in these genes. Results by gene locations indicated that these genes were unevenly distributed among all 10 chromosomes. Tandem and segmental duplications appeared to contribute to the expansion and evolution of this gene family. The Ka / Ks ratios suggested that the ZmMATE has undergone large-scale purifying selection on the maize genome. Interspecies microsynteny analysis revealed that there were independent gene duplication events of 10 ZmMATE. In addition, most maize MATE genes exhibited different expression profiles in diverse tissues and developmental stages. Sixteen MATE genes were chosen for further quantitative real-time polymerase chain reaction analysis showed differential expression patterns in response to aluminum treatment. These results provide a useful clue for future studies on the identification of MATE genes and functional analysis of MATE proteins in maize
Volume 102, 2023
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