期刊论文详细信息
PeerJ
Characterization of genes encoding small heat shock proteins from Bemisia tabaci and expression under thermal stress
article
Jing Bai1  Xiao-Na Liu1  Ming-Xing Lu1  Yu-Zhou Du1 
[1] College of Horticulture and Plant Protection & Institute of Applied Entomology, Yangzhou University;Joint International Research Laboratory of Agriculture and Agri-Product Safety, the Ministry of Education, Yangzhou University
关键词: sHSPs;    Bemisia tabaci;    Developmental stage;    Expression pattern;    Thermal stress;   
DOI  :  10.7717/peerj.6992
学科分类:社会科学、人文和艺术(综合)
来源: Inra
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【 摘 要 】

Small heat shock proteins (sHSPs) are probably the most diverse in structure and function among the various super-families of stress proteins, and they play essential roles in various biological processes. The sweet potato whitefly, Bemisia tabaci (Gennadius), feeds in the phloem, transmits several plant viruses, and is an important pest on cotton, vegetables and ornamentals. In this research, we isolated and characterized three α-crystallin/sHSP family genes (Bthsp19.5, Bthsp19.2, and Bthsp21.3) from Bemisia tabaci. The three cDNAs encoded proteins of 171, 169, and 189 amino acids with calculated molecular weights of 19.5, 19.2, and 21.3 kDa and isoelectric points of 6.1, 6.2, and 6.0, respectively. The deduced amino acid sequences of the three genes showed strong similarity to sHSPs identified in Hemiptera and Thysanoptera insects species. All three sHSPs genes from Bemisia tabaci lacked introns. Quantitative real-time PCR analyses revealed that the three BtsHSPs genes were significantly up-regulated in Bemisia tabaci adults and pupae during high temperature stress (39, 41, 43, and 45 °C) but not in response to cold temperature stress (−6, −8, −10, and −12 °C). The expression levels of Bthsp19.2 and Bthsp21.3 in pupae was higher than adults in response to heat stress, while the expression level of Bthsp19.5 in adults was higher than pupae. In conclusion, this research results show that the sHSP genes of Bemisia tabaci had shown differential expression changes under thermal stress.

【 授权许可】

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