Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.

The polyphagous agromyzid fly, Liriomyza trifolii, is a significant and important insect pest of ornamental and vegetable crops worldwide. The adaptation of insects to different environments is facilitated by heat shock proteins (HSPs), which play an important role in acclimation to thermal stress....

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Main Authors: Ya-Wen Chang, Jing-Yun Chen, Ming-Xing Lu, Yuan Gao, Zi-Hua Tian, Wei-Rong Gong, Chang-Sheng Dong, Yu-Zhou Du
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5519154?pdf=render
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spelling doaj-7fb7b622e9e94304aaa35add2830c4ce2020-11-25T01:20:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-01127e018135510.1371/journal.pone.0181355Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.Ya-Wen ChangJing-Yun ChenMing-Xing LuYuan GaoZi-Hua TianWei-Rong GongChang-Sheng DongYu-Zhou DuThe polyphagous agromyzid fly, Liriomyza trifolii, is a significant and important insect pest of ornamental and vegetable crops worldwide. The adaptation of insects to different environments is facilitated by heat shock proteins (HSPs), which play an important role in acclimation to thermal stress. In this study, we cloned and characterized five HSP-encoding genes of L. trifolii (Lthsp20, Lthsp40, Lthsp60, Lthsp70, and Lthsp90) and monitored their expression under different thermal stresses using real-time quantitative PCR. Pupae of L. trifolii were exposed to 19 different temperatures ranging from -20 to 45°C. The results revealed that Lthsp20, Lthsp40, Lthsp70 and Lthsp90 were significantly upregulated in response to both heat and cold stress, while Lthsp60 was induced only by heat temperatures. The temperatures of the onset (Ton) and maximal (Tmax) expression of the five Lthsps were also determined and compared with published Ton and Tmax values of homologous genes in L. sativae and L. huidobrensis. Although L. trifolii occurs primarily in southern China, it has cold tolerance comparable with the other two Liriomyza species. Based on the heat shock proteins expression patterns, L. trifolii has the capacity to tolerate extreme temperatures and the potential to disseminate to northern regions of China.http://europepmc.org/articles/PMC5519154?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Ya-Wen Chang
Jing-Yun Chen
Ming-Xing Lu
Yuan Gao
Zi-Hua Tian
Wei-Rong Gong
Chang-Sheng Dong
Yu-Zhou Du
spellingShingle Ya-Wen Chang
Jing-Yun Chen
Ming-Xing Lu
Yuan Gao
Zi-Hua Tian
Wei-Rong Gong
Chang-Sheng Dong
Yu-Zhou Du
Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.
PLoS ONE
author_facet Ya-Wen Chang
Jing-Yun Chen
Ming-Xing Lu
Yuan Gao
Zi-Hua Tian
Wei-Rong Gong
Chang-Sheng Dong
Yu-Zhou Du
author_sort Ya-Wen Chang
title Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.
title_short Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.
title_full Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.
title_fullStr Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.
title_full_unstemmed Cloning and expression of genes encoding heat shock proteins in Liriomyza trifolii and comparison with two congener leafminer species.
title_sort cloning and expression of genes encoding heat shock proteins in liriomyza trifolii and comparison with two congener leafminer species.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description The polyphagous agromyzid fly, Liriomyza trifolii, is a significant and important insect pest of ornamental and vegetable crops worldwide. The adaptation of insects to different environments is facilitated by heat shock proteins (HSPs), which play an important role in acclimation to thermal stress. In this study, we cloned and characterized five HSP-encoding genes of L. trifolii (Lthsp20, Lthsp40, Lthsp60, Lthsp70, and Lthsp90) and monitored their expression under different thermal stresses using real-time quantitative PCR. Pupae of L. trifolii were exposed to 19 different temperatures ranging from -20 to 45°C. The results revealed that Lthsp20, Lthsp40, Lthsp70 and Lthsp90 were significantly upregulated in response to both heat and cold stress, while Lthsp60 was induced only by heat temperatures. The temperatures of the onset (Ton) and maximal (Tmax) expression of the five Lthsps were also determined and compared with published Ton and Tmax values of homologous genes in L. sativae and L. huidobrensis. Although L. trifolii occurs primarily in southern China, it has cold tolerance comparable with the other two Liriomyza species. Based on the heat shock proteins expression patterns, L. trifolii has the capacity to tolerate extreme temperatures and the potential to disseminate to northern regions of China.
url http://europepmc.org/articles/PMC5519154?pdf=render
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