Co-Innovation Center for the Sustainable Forestry in Southern China, Nanjing Forestry University, Longpan Road 159, Xuanwu District, Nanjing, 210037, Jiangsu Province, China.
College of Forestry, Nanjing Forestry University, Nanjing, China.
BMC Genomics. 2022 Sep 10;23(1):646. doi: 10.1186/s12864-022-08858-1.
Heat Shock Proteins 70 (HSP70s) in insects act on a diverse range of substrates to assist with overcoming extreme high temperatures. MaltHSP70-2, a member of HSP70s, has been characterized to involve in the thermotolerance of Monochamus alternatus in vitro, while quantification and localization of MaltHSP70-2 in various tissues and its functional analysis in vivo remain unclear.
In this study, temporal expression of MaltHSP70-2 indicated a long-last inductive effect on MaltHSP70-2 expression maintained 48 hours after heat shock. MaltHSP70-2 showed a global response to heat exposure which occurring in various tissues of both males and females. Particularly in the reproductive tissues, we further performed the quantification and localization of MaltHSP70-2 protein using Western Blot and Immunohistochemistry, suggesting that enriched MaltHSP70-2 in the testis (specifically in the primary spermatocyte) must be indispensable to protect the reproductive activities (e.g., spermatogenesis) against high temperatures. Furthermore, silencing MaltHSP70-2 markedly influenced the expression of other HSP genes and thermotolerance of adults in bioassays, which implied a possible interaction of MaltHSP70-2 with other HSP genes and its role in thermal resistance of M. alternatus adults.
These findings shed new insights into thermo-resistant mechanism of M. alternatus to cope with global warming from the perspective of HSP70s functions.
昆虫中的热休克蛋白 70(HSP70s)可作用于多种底物,以帮助其克服极端高温。MaltHSP70-2 是 HSP70s 的一个成员,其在体外参与了松墨天牛的耐热性,然而 MaltHSP70-2 在不同组织中的定量和定位及其在体内的功能分析尚不清楚。
本研究中,MaltHSP70-2 的时间表达表明,其对 MaltHSP70-2 表达的诱导作用具有持久效应,在热激后 48 小时仍能维持。MaltHSP70-2 对热暴露表现出全身性反应,发生在雌雄两性的各种组织中。特别是在生殖组织中,我们进一步使用 Western Blot 和免疫组织化学对 MaltHSP70-2 蛋白进行了定量和定位,表明富含 MaltHSP70-2 的精巢(特别是初级精母细胞)对于保护生殖活动(例如精子发生)免受高温的影响是必不可少的。此外,沉默 MaltHSP70-2 显著影响了成虫中其他 HSP 基因的表达和对高温的耐受性,这表明 MaltHSP70-2 与其他 HSP 基因之间可能存在相互作用,以及它在松墨天牛成虫耐热性中的作用。
这些发现从 HSP70s 功能的角度为松墨天牛应对全球变暖的耐热机制提供了新的见解。