...
首页> 外文期刊>Integrative and Comparative Biology >Cross-tolerance and Cross-talk in the Cold: Relating Low Temperatures to Desiccation and Immune Stress in Insects
【24h】

Cross-tolerance and Cross-talk in the Cold: Relating Low Temperatures to Desiccation and Immune Stress in Insects

机译:寒冷中的交叉耐受和串扰:将低温与昆虫的干燥和免疫应激相关

获取原文
获取原文并翻译 | 示例
           

摘要

Multiple stressors, both abiotic and biotic, often are experienced simultaneously by organisms in nature. Responses to these stressors may share signaling pathways ("cross-talk") or protective mechanisms ("cross-tolerance"). Temperate and polar insects that must survive the winter experience low temperatures accompanied by additional abiotic stressors, such as low availability of water. Cold and desiccation have many similar effects at a cellular level, and we present evidence that the cellular mechanisms that protect against cold stress also protect against desiccation, and that the responses to cold and dehydration likely evolved as cross-tolerance. By contrast, there are several lines of evidence suggesting that low temperature stress elicits an upregulation of immune responses in insects (and vice versa). Because there is little mechanistic overlap between cold stress and immune stress at the cellular level, we suggest that this is cross-talk. Both cross-talk and cross-tolerance may be adaptive and likely evolved in response to synchronous stressors; however, we suggest that cross-talk and cross-tolerance may lead to different responses to changes in the timing and severity of multiple stress interactions in a changing world. We present a framework describing the potentially different responses of cross-tolerance and cross-talk to a changing environment and describe the nature of these impacts using interaction of cold-desiccation and cold-immunity in overwintering insects as an example.
机译:自然界的生物通常同时经历多种非生物和生物应激源。对这些压力源的响应可能共享信号传导途径(“串扰”)或保护机制(“交叉耐受”)。必须在冬季生存的温带和极地昆虫会经历低温,并伴有其他非生物胁迫因素,例如水供应不足。寒冷和干燥在细胞水平上具有许多相似的作用,并且我们提供证据表明,防止寒冷胁迫的细胞机制也可以防止干燥,并且对寒冷和脱水的反应可能会以交叉耐受的方式发生。相比之下,有几条证据表明低温胁迫引起昆虫免疫反应的上调(反之亦然)。由于在细胞水平上冷应激和免疫应激之间几乎没有机械重叠,因此我们建议这是串扰。串扰和交叉容差都可能是自适应的,并且可能会响应同步压力源而演变;但是,我们建议,在不断变化的世界中,串扰和交叉容忍可能导致对多种压力交互作用的时间和严重性变化的不同响应。我们提出了一个框架,该框架描述了交叉容忍和串扰对变化的环境的潜在不同响应,并以越冬昆虫中的冷干燥和冷免疫相互作用为例,描述了这些影响的性质。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号