...
首页> 外文期刊>Journal of Thermal Biology >Developmental plasticity of thermal ecology traits in reptiles: Trends, potential benefits, and research needs
【24h】

Developmental plasticity of thermal ecology traits in reptiles: Trends, potential benefits, and research needs

机译:爬行动物中热生态性状的发育可塑性:趋势,潜在的益处和研究需求

获取原文
获取原文并翻译 | 示例
           

摘要

A variety of phenotypic traits in reptiles are affected by conditions during embryonic development, a phenomenon known as developmental plasticity. In particular, many traits in which expression changes with temperature, such as locomotor performance or growth rates, are also developmentally plastic. However, much less is known about the extent to which traits associated with thermal ecology, such as thermal tolerance and behavioral thermoregulation, are developmentally plastic. Here, we review the literature on developmental plasticity in physiological and behavioral traits associated with thermal ecology in reptiles. Most studies on developmental plasticity of thermal traits have assessed plasticity in behavioral traits, such as selected temperature or time spent basking, and these studies have found mixed support for the presence of developmental plasticity in behavioral thermal traits. In contrast, very few studies have assessed developmental plasticity in physiological traits, yet these studies generally support a developmentally plastic basis for thermal tolerance. Most studies have only tested for developmental plasticity in thermal ecology traits at the hatchling stage, which limits our understanding of the benefits of developmental plasticity to individuals, or the adaptive significance of developmental plasticity in populations. We recommend that research on developmental plasticity in reptile thermal ecology be expanded to include incubation conditions other than mean temperature, consider traits associated with cold-tolerance, and endeavor to understand how developmental plasticity in thermal ecology traits is beneficial. In particular, determining how long differences persist over ontogeny, and testing for benefits of developmental plasticity across multiple life stages, are crucial first steps towards understanding the adaptive significance of developmental plasticity in thermal ecology traits.
机译:在胚胎发育期间,爬行动物中的各种表型特征受到胚胎发育期间的条件的影响,该现象称为发育可塑性。特别是,许多表达式的特征,其中温度变化,例如运动性能或生长速率,也是发育塑料。然而,关于与热生态学相关的程度的程度,诸如热耐受性和行为温度调节的程度的程度越来越少。在这里,我们审查了与爬行动物热生态相关的生理和行为性状的发育可塑性的文献。大多数关于热性状发育可塑性的研究已经评估了行为性状的可塑性,例如所选温度或花费晒的时间,并且这些研究发现了对行为热性状的发育可塑性存在的混合载体。相比之下,很少有研究评估了生理性状的发育可塑性,但这些研究通常支持出现的耐热性塑性基础。大多数研究仅对孵化阶段的热生态性状的发育可塑性进行了测试,这限制了我们对人群发育可塑性的益处的理解,或者在种群中发育可塑性的适应性意义。我们建议扩大爬行动物热生态学中发育可塑性的研究,以包括平均温度以外的孵育条件,考虑与耐冷耐力相关的特征,并努力了解热生态性状的发育可塑性是有益的。特别是,确定差异持续存在的差异多长时间,并且对多个寿命的发育可塑性的益处测试是一种至关重要的第一步,了解发育可塑性在热生态特征中的适应性意义。

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