Chinese Journal of Applied Entomology ›› 2020, Vol. 57 ›› Issue (4): 898-910.doi: 10.7679/j.issn.2095-1353.2020.092
• Research Articles • Previous Articles
Zheng-Quan WANG(), Ning-Na YIN, Ning ZHAO, Nai-Yong LIU***()
Received:
2019-11-11
Accepted:
2020-02-12
Online:
2020-07-27
Published:
2020-09-02
Contact:
Nai-Yong LIU
E-mail:1835949501@qq.com;Naiyong_2013@163.com
Zheng-Quan WANG, Ning-Na YIN, Ning ZHAO, Nai-Yong LIU. Identification and expression characterization of UDP-glucosyltransferase genes in Rhaphuma horsfieldi[J]. Chinese Journal of Applied Entomology, 2020, 57(4): 898-910.
Fig. 1 Multiple alignment of UGT amino acid sequences in Rhaphuma horsfieldi Triangle represents key catalytic residues (H, histidine and D, aspartic acid). 1, 2 and 3 represent nucleotide, phosphate and glucoside interacting residues, respectively.
Fig. 3 Expression pattern of RhorUGT genes in different tissues of Rhaphuma horsfieldi adults FA: Female antennae; FTa: Female tarsi; FB: Female bodies without antennae and tarsi; MA: Male antennae; MTa: Male tarsi; MB: Male bodies without antennae and tarsi.
Fig. 4 Three-dimensional (3D) structure of Rhaphuma horsfieldi UGT17 A. Alignment of RhorUGT17 and HsapUGT2B7 amino acid sequences; B. 3D model of RhorUGT17 (left) and superimposition of RhorUGT17 and HsapUGT2B7 structures (right). Key residues (S, W, Q, T, H, E, D and H/Q) and UDP-glucose binding cavities of RhorUGT17 and HsapUGT2B7 are labeled on the structures, respectively. Donor binding domains (DBR1 and DBR2) are highlighted in yellow. Nt, Ct, α1-7 and β1-6 represent N-terminus, C-terminus, seven α-helixes and six β-sheets, respectively.
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