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1. Genome-wide identification and expression analysis of auxin response factor (ARF) gene family in strawberry (Fragaria vesca)
WANG Shao-xi, SHI Feng-yan, DONG Xiang-xiang, LI Yu-xiang, ZHANG Zhi-hong, LI He
Journal of Integrative Agriculture    2019, 18 (7): 1587-1603.   DOI: 10.1016/S2095-3119(19)62556-6
摘要218)      PDF    收藏
Auxin signaling plays a significant role in the whole process of plant growth and development from embryogenesis to senescence. Auxin response factors (ARFs) are reported to regulate the expression of auxin response genes by binding to auxin response elements. ARF is the most critical transcription factor family which has been released in most species, but few reports in strawberry. In this study, the structure characterization of 12 FvARF genes in strawberry, their expression patterns at different development stages, different organizations, and different indole-3-acetic acid (IAA) treatments were analyzed. The expression of 12 FvARFs was found in all experiment tissues and showed almost the same trend during fruit development. All FvARFs respond to the treatment of IAA. Our study provides comprehensive information on ARF family in strawberry, including gene structures, chromosome locations, phylogenetic relationships and expression patterns. The information on FvARF genes paves the way for future research on strawberry ARF genes. Keywords:
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2. Genomic Analysis of Mitochondrial Carrier Genes in the Bombyx mori
CAO Jun, SHI Feng
Journal of Integrative Agriculture    2012, 12 (10): 1707-1713.   DOI: 10.1016/S1671-2927(00)8704
摘要1294)      PDF    收藏
This study is performed to investigate the mitochondrial carrier gene family in silkworm genome. In total, 30 genes are identified and claded into eight well-conserved groups. Gene duplication contributes to the expansion and complexity of this family. Diverse expression patterns suggest their functional differentiation. Analyses of the sitespecific profiles reveal critical amino acid residues for functional divergence. This study highlights the molecular evolution of the mitochondrial carrier gene family in silkworm and may provide a starting point for further experimental verification.
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