白蚁共生研究的一个世纪的协同作用:将过去与新的基因组见解联系起来。

IF 15 1区 农林科学 Q1 ENTOMOLOGY
Michael E Scharf, Brittany F Peterson
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引用次数: 12

摘要

长期以来,人们一直在研究白蚁与肠道微生物的共生关系。在19世纪后期,人们对这种关系知之甚少,并引起了约瑟夫·莱迪等寄生虫学家的兴趣;这项研究导致了20世纪生物学家和昆虫学家的研究,包括克利夫兰、亨盖特、特雷格和莱彻尔。早期的见解来自显微镜、有机体和腐烂研究,这些研究导致了对存在的微生物的描述,对共生体在木质纤维素消化中的作用的描述,以及对宿主白蚁利用能源气体的早期见解。然后重点发展到依赖培养的微生物学和寄主-共生体互补的生化研究,揭示了共生体对特定微生境的需求和共生的非纤维素机制(例如N2固定)。今天,由于基因组学技术揭示了共生体的身份、功能和相互依存关系,以及宿主-共生体互补的复杂性,关于白蚁共生的知识呈指数级增长。展望未来,将20世纪的经典方法与不断发展的基因组学工具相结合,应该会对宿主-共生体的相互作用提供更深入的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Century of Synergy in Termite Symbiosis Research: Linking the Past with New Genomic Insights.

Termites have long been studied for their symbiotic associations with gut microbes. In the late nineteenth century, this relationship was poorly understood and captured the interest of parasitologists such as Joseph Leidy; this research led to that of twentieth-century biologists and entomologists including Cleveland, Hungate, Trager, and Lüscher. Early insights came via microscopy, organismal, and defaunation studies, which led to descriptions of microbes present, descriptions of the roles of symbionts in lignocellulose digestion, and early insights into energy gas utilization by the host termite. Focus then progressed to culture-dependent microbiology and biochemical studies of host-symbiont complementarity, which revealed specific microhabitat requirements for symbionts and noncellulosic mechanisms of symbiosis (e.g., N2 fixation). Today, knowledge on termite symbiosis has accrued exponentially thanks to omic technologies that reveal symbiont identities, functions, and interdependence, as well as intricacies of host-symbiont complementarity. Moving forward, the merging of classical twentieth-century approaches with evolving omic tools should provide even deeper insights into host-symbiont interplay.

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来源期刊
Annual review of entomology
Annual review of entomology 生物-昆虫学
CiteScore
45.70
自引率
0.80%
发文量
46
期刊介绍: The Annual Review of Entomology, a publication dating back to 1956, offers comprehensive reviews of significant developments in the field of entomology.The scope of coverage spans various areas, including:biochemistry and physiology, morphology and development, behavior and neuroscience, ecology, agricultural entomology and pest management, biological control, forest entomology, acarines and other arthropods, medical and veterinary entomology, pathology, vectors of plant disease, genetics, genomics, and systematics, evolution, and biogeography.
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