To explore the biological characteristics of Vascular plant One-Zinc finger(VOZ)gene family in Populus trichocarpa,this paper used bioinformatics to analyze the nucleotide sequences and protein sequences of four membe...To explore the biological characteristics of Vascular plant One-Zinc finger(VOZ)gene family in Populus trichocarpa,this paper used bioinformatics to analyze the nucleotide sequences and protein sequences of four members of VOZ gene family of P.trichocarpa.The results showed that the four PtVOZ genes of P.trichocarpa were evenly distributed on four chromosomes.The length and molecular weight of the encoded protein were almost the same,and the subcellular localization was located in the nucleus,belonging to the unstable acidic hydrophilic non-aliphatic soluble protein.The gene structures were all in the patterns of 4 exons and 3 introns.The proportion order of PtVOZ transcription factor secondary structure components was random coil>αhelix>extended strand>βsheets,and the tertiary structure was very similar in spatial conformation.The phylogenetic tree analysis showed that P.trichocarpa was more closely related to VOZ transcription factors of dicotyledons.The four PtVOZ genes of P.trichocarpa were expressed in seedlings and different tissues,but there were differences in the expression intensity.This study provided a necessary theoretical basis for further exploring the molecular biological function of PtVOZ genes.展开更多
KANADI(KAN)is a plant-specific gene that controlled the polarity development of lateral organs.It mainly acted on the abaxial characteristics of plants to make the lateral organs asymmetrical.However,it had been less ...KANADI(KAN)is a plant-specific gene that controlled the polarity development of lateral organs.It mainly acted on the abaxial characteristics of plants to make the lateral organs asymmetrical.However,it had been less identified in woody plants.In this study,the members of the KAN gene family in Populus trichocarpa were identified and analyzed using the bioinformatics method.The results showed that a total of 8 KAN family members were screened out,and each member contained the unique GARP domain and conserved region of the family proteins.Phylogenetic analysis and their gene structures revealed that all KAN genes from P.trichocarpa,Arabidopsis thaliana,and Nicotiana benthamiana could be divided into four subgroups,while the eight genes in P.trichocarpa were classified into three subgroups,respectively.The analysis of tissue-specific expression indicated that PtKAN1 was highly expressed in young leaves,PtKAN6 was highly expressed in young leaves and mature leaves,PtKAN2,PtKAN5,and PtKAN7 were highly expressed in nodes and internodes,PtKAN8 was highly expressed in roots,and PtKAN3 and PtKAN4 showed low expression levels in all tissues.Among them,PtKAN2 and PtKAN6,and PtKAN4 and PtKAN5 might have functional redundancy.Under high nitrogen concentrations,PtKAN2 and PtKAN8 were highly expressed in mature stems and leaves,respectively,while PtKAN4,PtKAN5,and PtKAN7 were highly expressed in roots.This study laid a theoretical foundation for further study of the KAN genemediated nitrogen effect on root development.展开更多
The biological function of the novel zinc-finger SWIM domain-containing protein family(ZSWIM)during embryonic development remains elusive.Here,we conducted a genome-wide analysis to explore the evolutionary processes ...The biological function of the novel zinc-finger SWIM domain-containing protein family(ZSWIM)during embryonic development remains elusive.Here,we conducted a genome-wide analysis to explore the evolutionary processes of the ZSWIM gene family members in mice,Xenopus tropicalis,zebrafish,and humans.We identified nine putative ZSWIM genes in the human and mouse genome,eight in the Xenopus genome,and five in the zebrafish genome.Based on multiple sequence alignment,three members,ZSWIM5,ZSWIM6,and ZSWIM8,demonstrated the highest homology across all four species.Using available RNA sequencing(RNAseq)data,ZSWIM genes were found to be widely expressed across different tissues,with distinct tissuespecific properties.To identify the functions of the ZSWIM protein family during embryogenesis,we examined temporal and spatial expression patterns of zswim family genes in Xenopus embryos.Quantitative real-time polymerase chain reaction(qRT-PCR)revealed that each member had a distinct expression profile.Whole-mount in situ hybridization showed that both zswim1 and zswim3 were maternally expressed genes;zswim5 and zswim6were expressed throughout embryogenesis and displayed dynamic expression in the brain,eyes,somite,and bronchial arch at the late tailbud stages;zswim7 was detected in the eye area;zswim8 showed a dynamic expression pattern during the tailbud stages,with expression detected in the brain,eyes,and somite;zswim9 was faintly expressed throughout embryonic development.This study provides a foundation for future research to delineate the functions of ZSWIM gene members.展开更多
文摘To explore the biological characteristics of Vascular plant One-Zinc finger(VOZ)gene family in Populus trichocarpa,this paper used bioinformatics to analyze the nucleotide sequences and protein sequences of four members of VOZ gene family of P.trichocarpa.The results showed that the four PtVOZ genes of P.trichocarpa were evenly distributed on four chromosomes.The length and molecular weight of the encoded protein were almost the same,and the subcellular localization was located in the nucleus,belonging to the unstable acidic hydrophilic non-aliphatic soluble protein.The gene structures were all in the patterns of 4 exons and 3 introns.The proportion order of PtVOZ transcription factor secondary structure components was random coil>αhelix>extended strand>βsheets,and the tertiary structure was very similar in spatial conformation.The phylogenetic tree analysis showed that P.trichocarpa was more closely related to VOZ transcription factors of dicotyledons.The four PtVOZ genes of P.trichocarpa were expressed in seedlings and different tissues,but there were differences in the expression intensity.This study provided a necessary theoretical basis for further exploring the molecular biological function of PtVOZ genes.
基金funded by the Natural Science Foundation of Heilongjiang Province,China(ZD2020C004)the Fundamental Research Funds for the Central Universities(2572019CT02).
文摘KANADI(KAN)is a plant-specific gene that controlled the polarity development of lateral organs.It mainly acted on the abaxial characteristics of plants to make the lateral organs asymmetrical.However,it had been less identified in woody plants.In this study,the members of the KAN gene family in Populus trichocarpa were identified and analyzed using the bioinformatics method.The results showed that a total of 8 KAN family members were screened out,and each member contained the unique GARP domain and conserved region of the family proteins.Phylogenetic analysis and their gene structures revealed that all KAN genes from P.trichocarpa,Arabidopsis thaliana,and Nicotiana benthamiana could be divided into four subgroups,while the eight genes in P.trichocarpa were classified into three subgroups,respectively.The analysis of tissue-specific expression indicated that PtKAN1 was highly expressed in young leaves,PtKAN6 was highly expressed in young leaves and mature leaves,PtKAN2,PtKAN5,and PtKAN7 were highly expressed in nodes and internodes,PtKAN8 was highly expressed in roots,and PtKAN3 and PtKAN4 showed low expression levels in all tissues.Among them,PtKAN2 and PtKAN6,and PtKAN4 and PtKAN5 might have functional redundancy.Under high nitrogen concentrations,PtKAN2 and PtKAN8 were highly expressed in mature stems and leaves,respectively,while PtKAN4,PtKAN5,and PtKAN7 were highly expressed in roots.This study laid a theoretical foundation for further study of the KAN genemediated nitrogen effect on root development.
基金supported by the National Key R&D Program of China,Synthetic Biology Research(2019YFA0904500)Research Grants Council of Hong Kong(14119120,14112618,and CRF C5033-19E to H.Z.)Additional support was provided by the Hong Kong Branch of CAS Center for Excellence in Animal Evolution and Genetics,Chinese University of Hong Kong。
文摘The biological function of the novel zinc-finger SWIM domain-containing protein family(ZSWIM)during embryonic development remains elusive.Here,we conducted a genome-wide analysis to explore the evolutionary processes of the ZSWIM gene family members in mice,Xenopus tropicalis,zebrafish,and humans.We identified nine putative ZSWIM genes in the human and mouse genome,eight in the Xenopus genome,and five in the zebrafish genome.Based on multiple sequence alignment,three members,ZSWIM5,ZSWIM6,and ZSWIM8,demonstrated the highest homology across all four species.Using available RNA sequencing(RNAseq)data,ZSWIM genes were found to be widely expressed across different tissues,with distinct tissuespecific properties.To identify the functions of the ZSWIM protein family during embryogenesis,we examined temporal and spatial expression patterns of zswim family genes in Xenopus embryos.Quantitative real-time polymerase chain reaction(qRT-PCR)revealed that each member had a distinct expression profile.Whole-mount in situ hybridization showed that both zswim1 and zswim3 were maternally expressed genes;zswim5 and zswim6were expressed throughout embryogenesis and displayed dynamic expression in the brain,eyes,somite,and bronchial arch at the late tailbud stages;zswim7 was detected in the eye area;zswim8 showed a dynamic expression pattern during the tailbud stages,with expression detected in the brain,eyes,and somite;zswim9 was faintly expressed throughout embryonic development.This study provides a foundation for future research to delineate the functions of ZSWIM gene members.