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核受体 HR3 在赤拟谷盗蜕皮过程中调节几丁质代谢基因的转录调控。

Nuclear receptor HR3 mediates transcriptional regulation of chitin metabolic genes during molting in Tribolium castaneum.

机构信息

Department of Integrative Food, Bioscience and Biotechnology, Chonnam National University, Gwangju, South Korea.

Department of Applied Biology, Chonnam National University, Gwangju, South Korea.

出版信息

Pest Manag Sci. 2022 Oct;78(10):4377-4387. doi: 10.1002/ps.7056. Epub 2022 Jul 12.

Abstract

BACKGROUND

Chitin, a major component of insect cuticles, plays a critical role in insect molting and morphogenesis. Thus, coordination of chitin remodeling during insect development requires tight transcriptional control of the chitin metabolism genes involved in chitin synthesis, assembly and degradation. However, the molecular mechanism underlying transcriptional coordination of chitin metabolism genes during beetle development is not yet completely understood.

RESULTS

We cloned the full-length cDNA encoding hormone receptor 3 (TcHR3) from Tribolium castaneum and showed a critical role of TcHR3 in modulating chitin metabolism gene expression during molting. Genome-wide transcriptome analysis of HR3-deficient old larvae using RNA sequencing analysis revealed a positive correlation between TcHR3 and transcription of chitin metabolism genes involved in chitin synthesis and degradation. In addition, HR3 overexpression significantly induced the gene promoter activity of N-acetylglucosaminidase 1 (NAG1) involved in chitin degradation and UDP-N-acetylglucosamine pyrophosphorylase 1 (UAP1) involved in chitin synthesis. Chromatin immunoprecipitation analysis revealed that HR3 could directly bind to HR3-response element of NAG1 and UAP1 promoters. Finally, HR3-deficient late instar larvae and prepupae exhibited defects in larval-larval and larval-pupal molting, respectively, leading to eventual larval death because developing larvae were trapped inside the old cuticle as a result of abnormal chitin metabolism.

CONCLUSION

TcHR3 is a transcriptional regulator of chitin metabolic genes for molting of T. castaneum. Controlling the molting system by TcHR3 might be a new management strategy for selective control of red flour beetle infestation. © 2022 Society of Chemical Industry.

摘要

背景

几丁质是昆虫外骨骼的主要成分,在昆虫蜕皮和形态发生中起着关键作用。因此,昆虫发育过程中几丁质重塑的协调需要对参与几丁质合成、组装和降解的几丁质代谢基因进行严格的转录控制。然而,甲虫发育过程中几丁质代谢基因转录协调的分子机制尚不完全清楚。

结果

我们从赤拟谷盗中克隆了激素受体 3(TcHR3)的全长 cDNA,并证明了 TcHR3 在蜕皮过程中调节几丁质代谢基因表达中的关键作用。使用 RNA 测序分析对 HR3 缺陷型老幼虫进行全基因组转录组分析表明,TcHR3 与参与几丁质合成和降解的几丁质代谢基因的转录之间存在正相关。此外,HR3 过表达显著诱导了参与几丁质降解的 N-乙酰氨基葡萄糖苷酶 1(NAG1)和参与几丁质合成的 UDP-N-乙酰氨基葡萄糖焦磷酸化酶 1(UAP1)的基因启动子活性。染色质免疫沉淀分析表明,HR3 可以直接结合到 NAG1 和 UAP1 启动子的 HR3 反应元件上。最后,HR3 缺陷型后期幼虫和预蛹分别表现出幼虫-幼虫和幼虫-蛹蜕皮缺陷,最终由于异常的几丁质代谢,发育中的幼虫被困在旧外骨骼内而死亡。

结论

TcHR3 是赤拟谷盗几丁质代谢基因蜕皮的转录调节剂。通过 TcHR3 控制蜕皮系统可能是一种新的管理策略,可用于选择性控制红粉甲虫的侵害。 © 2022 化学工业学会。

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