Cargando…

Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance

Significant research progress has recently been made on establishing the roles of tps46 in rice defense. (E)-β-farnesene (Eβf) is a major product of tps46 activity but its physiological functions and potential mechanisms against Chilo suppressalis have not yet been clarified. In the present study, C...

Descripción completa

Detalles Bibliográficos
Autores principales: Yang, Lei, Yao, Xiaomin, Liu, Baosheng, Han, Yangchun, Ji, Rui, Ju, Jiafei, Zhang, Xiaona, Wu, Shuwen, Fang, Jichao, Sun, Yang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9196309/
https://www.ncbi.nlm.nih.gov/pubmed/35711319
http://dx.doi.org/10.3389/fphys.2022.904482
_version_ 1784727158628810752
author Yang, Lei
Yao, Xiaomin
Liu, Baosheng
Han, Yangchun
Ji, Rui
Ju, Jiafei
Zhang, Xiaona
Wu, Shuwen
Fang, Jichao
Sun, Yang
author_facet Yang, Lei
Yao, Xiaomin
Liu, Baosheng
Han, Yangchun
Ji, Rui
Ju, Jiafei
Zhang, Xiaona
Wu, Shuwen
Fang, Jichao
Sun, Yang
author_sort Yang, Lei
collection PubMed
description Significant research progress has recently been made on establishing the roles of tps46 in rice defense. (E)-β-farnesene (Eβf) is a major product of tps46 activity but its physiological functions and potential mechanisms against Chilo suppressalis have not yet been clarified. In the present study, C. suppressalis larvae were artificially fed a diet containing 0.8 g/kg Eβf and the physiological performance of the larvae was evaluated. In response to Eβf treatment, the average 2nd instar duration significantly increased from 4.78 d to 6.31 d while that of the 3rd instar significantly increased from 5.70 d to 8.00 d compared with the control. There were no significant differences between the control and Eβf-fed 4th and 5th instars in terms of their durations. The mortalities of the 2nd and 3rd Eβf-fed instars were 21.00-fold and 6.39-fold higher, respectively, than that of the control. A comparative transcriptome analysis revealed that multiple differentially expressed genes are involved in insect hormone biosynthesis. An insect hormone assay on the 3rd instars disclosed that Eβf disrupted the balance between the juvenile hormone and ecdysteroid levels. Eβf treatment increased the juvenile hormones titers but not those of the ecdysteroids. The qPCR results were consistent with those of the RNA-Seq. The foregoing findings suggested that Eβf impairs development and survival in C. suppressalis larvae by disrupting their hormone balance. Moreover, Eβf altered the pathways associated with carbohydrate and xenobiotic metabolism as well as those related to cofactors and vitamins in C. suppressalis larvae. The discoveries of this study may contribute to the development and implementation of an integrated control system for C. suppressalis infestations in rice.
format Online
Article
Text
id pubmed-9196309
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-91963092022-06-15 Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance Yang, Lei Yao, Xiaomin Liu, Baosheng Han, Yangchun Ji, Rui Ju, Jiafei Zhang, Xiaona Wu, Shuwen Fang, Jichao Sun, Yang Front Physiol Physiology Significant research progress has recently been made on establishing the roles of tps46 in rice defense. (E)-β-farnesene (Eβf) is a major product of tps46 activity but its physiological functions and potential mechanisms against Chilo suppressalis have not yet been clarified. In the present study, C. suppressalis larvae were artificially fed a diet containing 0.8 g/kg Eβf and the physiological performance of the larvae was evaluated. In response to Eβf treatment, the average 2nd instar duration significantly increased from 4.78 d to 6.31 d while that of the 3rd instar significantly increased from 5.70 d to 8.00 d compared with the control. There were no significant differences between the control and Eβf-fed 4th and 5th instars in terms of their durations. The mortalities of the 2nd and 3rd Eβf-fed instars were 21.00-fold and 6.39-fold higher, respectively, than that of the control. A comparative transcriptome analysis revealed that multiple differentially expressed genes are involved in insect hormone biosynthesis. An insect hormone assay on the 3rd instars disclosed that Eβf disrupted the balance between the juvenile hormone and ecdysteroid levels. Eβf treatment increased the juvenile hormones titers but not those of the ecdysteroids. The qPCR results were consistent with those of the RNA-Seq. The foregoing findings suggested that Eβf impairs development and survival in C. suppressalis larvae by disrupting their hormone balance. Moreover, Eβf altered the pathways associated with carbohydrate and xenobiotic metabolism as well as those related to cofactors and vitamins in C. suppressalis larvae. The discoveries of this study may contribute to the development and implementation of an integrated control system for C. suppressalis infestations in rice. Frontiers Media S.A. 2022-05-30 /pmc/articles/PMC9196309/ /pubmed/35711319 http://dx.doi.org/10.3389/fphys.2022.904482 Text en Copyright © 2022 Yang, Yao, Liu, Han, Ji, Ju, Zhang, Wu, Fang and Sun. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Physiology
Yang, Lei
Yao, Xiaomin
Liu, Baosheng
Han, Yangchun
Ji, Rui
Ju, Jiafei
Zhang, Xiaona
Wu, Shuwen
Fang, Jichao
Sun, Yang
Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance
title Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance
title_full Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance
title_fullStr Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance
title_full_unstemmed Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance
title_short Caterpillar-Induced Rice Volatile (E)-β-Farnesene Impairs the Development and Survival of Chilo suppressalis Larvae by Disrupting Insect Hormone Balance
title_sort caterpillar-induced rice volatile (e)-β-farnesene impairs the development and survival of chilo suppressalis larvae by disrupting insect hormone balance
topic Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9196309/
https://www.ncbi.nlm.nih.gov/pubmed/35711319
http://dx.doi.org/10.3389/fphys.2022.904482
work_keys_str_mv AT yanglei caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT yaoxiaomin caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT liubaosheng caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT hanyangchun caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT jirui caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT jujiafei caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT zhangxiaona caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT wushuwen caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT fangjichao caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance
AT sunyang caterpillarinducedricevolatileebfarneseneimpairsthedevelopmentandsurvivalofchilosuppressalislarvaebydisruptinginsecthormonebalance