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Communication

Linking Histone Methylation States and hsp Transcriptional Regulation in Thermo-Tolerant and Thermo-Susceptible A. mellifera L. Subspecies in Response to Heat Stress

by
Yehya Z. Alattal
* and
Ahmad A. Alghamdi
Department of Plant Protection, College of Food and Agriculture Sciences, King Saud University, Riyadh 11451, Saudi Arabia
*
Author to whom correspondence should be addressed.
Insects 2023, 14(3), 225; https://doi.org/10.3390/insects14030225
Submission received: 5 February 2023 / Revised: 20 February 2023 / Accepted: 21 February 2023 / Published: 24 February 2023
(This article belongs to the Topic Advanced in Honey Bee and Apitherapy)

Simple Summary

Upregulation of heat shock proteins (hsp) is a key mechanism to diminish heat stress in Apis mellifera. In this study, we investigated how histone methylation states present an epigenetic layer of hsp regulation in response to heat stress in two honeybee subspecies: A. m. jemenetica, a thermo-tolerant honeybee subspecies native to the Arabian Peninsula, and A. m. carnica, a subspecies occurring naturally in temperate regions of Central Europe. The results revealed significant changes in most histone methylation states of hsp investigated. The results also revealed higher variation in histone methylation states associated with hsp in A. m. carnica compared to A. m. jemenetica after exposure to moderately high temperature. This confirms that the response threshold is lower for A. m. carnica compared to A. m. jemenetica. We concluded that changes in histone methylation states play a key role in regulation of hsp in both A. mellifera subspecies.

Abstract

Genetic and epigenetic responses to environmental cues of worker honeybees mediate hsp synthesis, a key mechanism to tolerate high ambient temperatures in Apis mellifera. In this study, the chromatin immunoprecipitation assay followed by qPCR were used to determine alterations in histone methylation states (H3K27me2, H3K27me3, H3K4me2, and H3K4me3) associated with hsp/hsc/trx in A. m. jemenetica (thermo-tolerant subspecies) and A. m. carnica (thermo-susceptible subspecies) after heat treatment. The results revealed significant changes in enrichment folds of histone methylation states associated with hsp/hsc/trx. Indeed, the enrichment of H3K27me2 decreased strongly in response to heat stress. Changes in histone methylation states were significantly higher in A. m. carnica samples compared to A. m. jemenitica samples. Our study provides a new perception on linking histone post-translational methylation as an epigenetic mechanism of gene regulation with hsp/hsc/trx in A. mellifera subspecies exposed to heat stress.
Keywords: A. m. jemenetica; A. m. carnica; ChIP; qPCR; histone methylation; epigenetic A. m. jemenetica; A. m. carnica; ChIP; qPCR; histone methylation; epigenetic

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MDPI and ACS Style

Alattal, Y.Z.; Alghamdi, A.A. Linking Histone Methylation States and hsp Transcriptional Regulation in Thermo-Tolerant and Thermo-Susceptible A. mellifera L. Subspecies in Response to Heat Stress. Insects 2023, 14, 225. https://doi.org/10.3390/insects14030225

AMA Style

Alattal YZ, Alghamdi AA. Linking Histone Methylation States and hsp Transcriptional Regulation in Thermo-Tolerant and Thermo-Susceptible A. mellifera L. Subspecies in Response to Heat Stress. Insects. 2023; 14(3):225. https://doi.org/10.3390/insects14030225

Chicago/Turabian Style

Alattal, Yehya Z., and Ahmad A. Alghamdi. 2023. "Linking Histone Methylation States and hsp Transcriptional Regulation in Thermo-Tolerant and Thermo-Susceptible A. mellifera L. Subspecies in Response to Heat Stress" Insects 14, no. 3: 225. https://doi.org/10.3390/insects14030225

APA Style

Alattal, Y. Z., & Alghamdi, A. A. (2023). Linking Histone Methylation States and hsp Transcriptional Regulation in Thermo-Tolerant and Thermo-Susceptible A. mellifera L. Subspecies in Response to Heat Stress. Insects, 14(3), 225. https://doi.org/10.3390/insects14030225

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