Biotechnology Bulletin ›› 2024, Vol. 40 ›› Issue (6): 251-259.doi: 10.13560/j.cnki.biotech.bull.1985.2024-0034
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WU Ze-hang1(), YANG Zhong-yi1, YAN Yi-cheng1, JIA Yong-hong1, WU Yue-yan1, XIE Xiao-hong2()
Received:
2024-01-11
Online:
2024-06-26
Published:
2024-06-24
Contact:
XIE Xiao-hong
E-mail:wzh881018@163.com;zwuxxh@zwu.edu.cn
WU Ze-hang, YANG Zhong-yi, YAN Yi-cheng, JIA Yong-hong, WU Yue-yan, XIE Xiao-hong. Cloning and Functional Analysis of Flavonoid 3'-hydroxylase(F3'H)Gene in Rhododendron hybridum Hort[J]. Biotechnology Bulletin, 2024, 40(6): 251-259.
引物名称 Primer name | 引物序列 Primer sequence(5'-3') |
---|---|
F3'H-F1 | ATGACTTCTTCTTTGGCTCTTGTTC |
F3'H-R1 | TCAGCCCCGATACAGATGGG |
F3'H-F2 | GGGGACAAGTTTGTACAAAAAAGCAGGCTGCATGACTTCTTCTTTGGCTCTTGTTC |
F3'H-R2 | GGGGACCACTTTGTACAAGAAAGCTGGGTCGCCCCGATACAGATGGGC |
F3'H-F3 | AGTCCTAGCCAAAGCCCAAC |
F3'H-R3 | GAGAGAGAGCGGTGTCGATG |
Actin-F | CACTGGTGTCATGGTTGGGA |
Actin-R | CTCTTCAGGAGCAACACGGA |
F3'H-F4 | ACGGGGGACTCTTGACCATGGATGACTTCTTCTTTGGCTCTTGTTC |
F3'H-R4 | TACTAGTCAGATCTACCATGGGCCCCGATACAGATGGGC |
Table 1 Primers for RhF3'H gene cloning and expression analysis
引物名称 Primer name | 引物序列 Primer sequence(5'-3') |
---|---|
F3'H-F1 | ATGACTTCTTCTTTGGCTCTTGTTC |
F3'H-R1 | TCAGCCCCGATACAGATGGG |
F3'H-F2 | GGGGACAAGTTTGTACAAAAAAGCAGGCTGCATGACTTCTTCTTTGGCTCTTGTTC |
F3'H-R2 | GGGGACCACTTTGTACAAGAAAGCTGGGTCGCCCCGATACAGATGGGC |
F3'H-F3 | AGTCCTAGCCAAAGCCCAAC |
F3'H-R3 | GAGAGAGAGCGGTGTCGATG |
Actin-F | CACTGGTGTCATGGTTGGGA |
Actin-R | CTCTTCAGGAGCAACACGGA |
F3'H-F4 | ACGGGGGACTCTTGACCATGGATGACTTCTTCTTTGGCTCTTGTTC |
F3'H-R4 | TACTAGTCAGATCTACCATGGGCCCCGATACAGATGGGC |
Fig. 2 Alignment and phylogenetic tree analysis of F3'H protein in R. hybridum Hort and other species A: Conserved domain prediction of RhF3'H protein. B: F3'H protein sequence alignment;(a: F3'H protein membrane anchor site; b: substrate selection and binding sites; c: Heme-binding region.).C: Phylogenetic tree analysis of F3'H protein. Latin names and genes of other species:(Chrysanthemum morifolium,AB523844.1,CmF3'H),(Echinacea purpurea,OQ992545.1,EpF3'H),(Paeonia lactiflora,JQ070803.1,PlF3'H),(Dianthus caryophyllus,AB778537.1,DcF3'H),(Litchi chinensis,QRV61378.1,LcF3'H),(Oryza sativa,WGJ78734.1,OsF3'H),(Dimocarpus longan,QRM13299.1,DlF3'H),(Narcissus tazetta,AFP95893.1,NtF3'H),(Triadica sebifera,QOU08777.1,TsF3'H),(Arachis hypogaea,AEX07282.1,AhF3'H),(Gentiana triflora,UTD45114.1,GtF3'H),(Glycine max,NP_001237015.1,GmF3'H),(Prunus cerasifera,AKV89245.1,PcF3'H)
Fig. 3 Relative expressions of total anthocyanin content and F3'H in R. hybridum Hort. A:Total anthocyanin content of petals at different periods. B:Relative expression of F3'H at flowering stages and in different tissues. S1: Flower bud stage; S2: initial opening; S3: in full bloom; S4: decay period. Different lowercase letters indicate significant difference (P<0.05). The same below
Fig. 5 Transiently overexpressed total anthocyanins and relative expressions of RhF3'H gene A: Phenotypic diagram of petal via the transient overexpression. B: Diagram of total anthocyanin content changing via transient overexpression. C: Relative expression of RhF3'H via transient overexpression. CK: Not processed. p1302: Idle; p1302-RhF3'H: Gene of interest
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