豇豆种子甲虫(Callosobruchus maculatus)胚胎和胚胎后发育温度依赖性的分期解析(f)

IF 2.2 2区 环境科学与生态学 Q1 Agricultural and Biological Sciences
D. Kutcherov
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引用次数: 4

摘要

背景生命史特征的热塑性在近年来的生物学文献中受到广泛关注。在所研究的所有温度依赖性性状中,外胚层的发育速率尤其经常被提及,但令人惊讶的是,人们对胚胎对温度的反应知之甚少,包括早期发育过程中热阈值和热敏性的变化。即使是许多神秘存在的物种的胚胎后发育,充其量也只是表面上的理解。结果本研究首次估算了豇豆种子甲虫C.maculatus在20至32°C的五个允许恒定温度下从产卵到成虫羽化的确切发育阶段持续时间。通过破坏性采样和随后的荧光染色标本共聚焦成像来跟踪和记录早期胚胎发育。利用破坏性取样和光学显微镜研究了胚胎晚期和幼虫早期的发育。基于数千个胚胎的时间序列可以精确地确定以下发育事件的时间:胚胎胚的形成;芽带的形成、伸长和回缩;背侧闭合;角质层硬化的开始和完成;并使一龄幼虫进入豇豆种子。通过种皮上的切口直接观察到幼芽和成虫羽化。黄斑C.maculatus的热表型在个体发育过程中存在差异,不同阶段的热表型与温度不成比例,但也简要讨论了与单个阶段相对持续时间分析相关的陷阱和注意事项。结论当研究设计需要实验胚胎之间的高度同步时,或者当对该领域特定阶段的发生感兴趣时,以及在任何其他需要精确估计发育时间的情况下,发育持续时间随温度的不成比例的变化可能具有重要意义。这项工作提供了胚胎学技术与生态生理学概念相结合的第一个例子,并有望在未来推动类似的项目。虽然果蝇实验仍然是动物发育信息的主要来源,但对其他模式物种的了解有助于建立更广泛的发育现象。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stagewise resolution of temperature-dependent embryonic and postembryonic development in the cowpea seed beetle Callosobruchus maculatus (F.)
Background The thermal plasticity of life-history traits receives wide attention in the recent biological literature. Of all the temperature-dependent traits studied, developmental rates of ectotherms are especially often addressed, and yet surprisingly little is known about embryonic responses to temperature, including changes in the thermal thresholds and thermal sensitivity during early development. Even postembryonic development of many cryptically living species is understood superficially at best. Results This study is the first to estimate the exact durations of developmental stages in the cowpea seed beetle C. maculatus from oviposition to adult emergence at five permissive constant temperatures from 20 to 32 °C. Early embryonic development was tracked and documented by means of destructive sampling and subsequent confocal imaging of fluorescently stained specimens. Late embryonic and early larval development was studied with the use of destructive sampling and light microscopy. Well-resolved temporal series based on thousands of embryos allowed precise timing of the following developmental events: formation of the blastoderm; formation, elongation, and retraction of the germ band; dorsal closure; the onset and completion of sclerotization of the cuticle; hatching, and penetration of the first-instar larva into the cowpea seed. Pupation and adult eclosion were observed directly through an incision in the seed coat. The thermal phenotype of C. maculatus was found to vary in the course of ontogeny and different stages scaled disproportionately with temperature, but pitfalls and caveats associated with analyses of relative durations of individual stages are also briefly discussed. Conclusion Disproportionate changes in developmental durations with temperature may have important implications when study design requires a high degree of synchronization among experimental embryos or when the occurrence of particular stages in the field is of interest, as well as in any other cases when development times need to be estimated with precision. This work provides one of the first examples of integration of embryological techniques with ecophysiological concepts and will hopefully motivate similar projects in the future. While experiments with Drosophila continue to be the main source of information on animal development, knowledge on other model species is instrumental to building a broader picture of developmental phenomena.
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来源期刊
BMC Ecology
BMC Ecology ECOLOGY-
CiteScore
5.80
自引率
4.50%
发文量
0
审稿时长
22 weeks
期刊介绍: BMC Ecology is an open access, peer-reviewed journal that considers articles on environmental, behavioral and population ecology as well as biodiversity of plants, animals and microbes.
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