Wang Ying, Wang Ruiqi, Jiang Hong, Tan Mingtao, Zhang Aoying, He Yubin, Yue Fusen, Yan Shanchun, Jiang Dun
School of Forestry, Northeast Forestry University, Harbin, P. R. China.
Key Laboratory of Sustainable Forest Ecosystem Management-Ministry of Education, Northeast Forestry University, Harbin, P. R. China.
Insect Mol Biol. 2025 Aug 2. doi: 10.1111/imb.70003.
Heavy metals are prevalent environmental pollutants in habitats of phytophagous insects. This study investigates the tolerance of Lymantria dispar larvae to cadmium (Cd) and the associated mechanisms involving the ZIP family. Cd stress reduced larval body weight and extended the development duration without causing significant mortality. A significantly up-regulated expression of apoptosis genes Caspase-1, Caspase-3 and Caspase-7 was observed in Cd-exposed larvae. In Cd-exposed larvae, the expression of the apoptosis-inhibitory factor Bcl-2 in the mitochondrial pathway decreased, while apoptosis-inducing factors Bax and AIFM increased. Cd stress markedly elevated the expression of CHOP and Bip, key genes in the endoplasmic reticulum stress pathway. Among the ZIP family genes, LdZIP7 showed the highest up-regulation in response to Cd treatment. Silencing LdZIP7 intensified the negative impacts of Cd stress on L. dispar larvae and significantly reduced the tolerance of L. dispar larvae to Cd. The main manifestations were a further significant decrease in larval body weight, a further significant extension of developmental duration, and the further activation of the mitochondrial pathway and the endoplasmic reticulum stress pathway-triggered apoptosis in Cd-treated larvae. At the Sf9 cell level, LdZIP7 predominantly localises in the nuclear membrane and cell membrane. Overexpression of LdZIP7 mitigates Cd-induced cytotoxicity by inhibiting the Ca-MPTP opening degree-mitochondrial membrane potential-apoptosis pathway. Overall, LdZIP7 plays a pivotal role in alleviating the biotoxic effects of Cd and is a significant regulatory gene for Cd tolerance in L. dispar larvae.
重金属是植食性昆虫栖息地中普遍存在的环境污染物。本研究调查了舞毒蛾幼虫对镉(Cd)的耐受性以及涉及ZIP家族的相关机制。镉胁迫降低了幼虫体重并延长了发育时间,但未导致显著死亡率。在暴露于镉的幼虫中观察到凋亡基因Caspase-1、Caspase-3和Caspase-7的表达显著上调。在暴露于镉的幼虫中,线粒体途径中凋亡抑制因子Bcl-2的表达下降,而凋亡诱导因子Bax和AIFM增加。镉胁迫显著提高了内质网应激途径中的关键基因CHOP和Bip的表达。在ZIP家族基因中,LdZIP7在响应镉处理时上调幅度最大。沉默LdZIP7加剧了镉胁迫对舞毒蛾幼虫的负面影响,并显著降低了舞毒蛾幼虫对镉的耐受性。主要表现为幼虫体重进一步显著下降、发育时间进一步显著延长,以及镉处理幼虫中线粒体途径和内质网应激途径触发的凋亡进一步激活。在Sf9细胞水平上,LdZIP7主要定位于核膜和细胞膜。LdZIP7的过表达通过抑制Ca-MPTP开放度-线粒体膜电位-凋亡途径减轻镉诱导的细胞毒性。总体而言,LdZIP7在减轻镉的生物毒性作用中起关键作用,是舞毒蛾幼虫镉耐受性的重要调控基因。