Rao Zhongchen, Cao Li, Wu Hua, Han Richou
Guangdong Key Laboratory of Animal Conservation and Resource Utilization, Guangdong Public Laboratory of Wild Animal Conservation and Utilization, Institute of Zoology, Guangdong Academy of Sciences, Guangzhou 510260, China.
Department of Plants and Crops, Faculty of Bioscience Engineering, Ghent University, 9000 Ghent, Belgium.
Insects. 2021 Jun 25;12(7):577. doi: 10.3390/insects12070577.
Aggressive behavior in animals is important for survival and reproduction. It is well studied in adult insects, such as flies, ants, honey bees, and crickets. However, the larvae of Lepidopteran insects are also aggressive, studies of which are still lacking. Here, RNA-seq was used to generate a high-quality database for the aggressive behavior of toward conspecifics and heterospecifics. Although there was similar aggressive behavior between the conspecific group and heterospecific group, significant differences were identified at the transcriptional level. When there was aggressive behavior toward conspecifics, trended toward higher expression at the respiratory chain, while cuticle development and metabolism may have interfered. On the other hand, when there was aggressive behavior toward , genes related to neuron and cuticle development, cellular processes, and its regulated signaling pathways were significantly upregulated, while the genes associated with oxidation-reduction and metabolism were downregulated. Weighted gene co-expression networks analysis (WGCNA) was performed, and two modules with properties correlating to the aggressive behavior of were identified. Several hub genes were predicted and confirmed by qRT-PCR, such as , , , and . This study provides a global view and potential key genes for the aggressive behavior of toward conspecifics and heterospecifics. Further investigation of the hub genes would help us to better understand the aggressive behavior of insects.
动物的攻击行为对于生存和繁殖至关重要。在成年昆虫中,如苍蝇、蚂蚁、蜜蜂和蟋蟀,对其已有充分研究。然而,鳞翅目昆虫的幼虫也具有攻击性,但相关研究仍较为缺乏。在此,利用RNA测序生成了一个高质量数据库,用于研究[昆虫名称]对同种和异种的攻击行为。尽管同种组和异种组之间存在相似的攻击行为,但在转录水平上发现了显著差异。当对同种表现出攻击行为时,[昆虫名称]在呼吸链上呈现出较高的表达趋势,而表皮发育和代谢可能受到了干扰。另一方面,当对[异种名称]表现出攻击行为时,与神经元和表皮发育、细胞过程及其调控信号通路相关的基因显著上调,而与氧化还原和代谢相关的基因则下调。进行了加权基因共表达网络分析(WGCNA),并鉴定出了两个与[昆虫名称]攻击行为相关的模块。通过qRT-PCR预测并证实了几个枢纽基因,如[基因名称1]、[基因名称2]、[基因名称3]和[基因名称4]。本研究为[昆虫名称]对同种和异种的攻击行为提供了全局视角和潜在的关键基因。对枢纽基因的进一步研究将有助于我们更好地理解昆虫的攻击行为。