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尿酸代谢调节幼虫对种内竞争的饮食依赖性反应。

Uric acid metabolism modulates diet-dependent responses to intraspecific competition in larvae.

作者信息

Morimoto Juliano

机构信息

School of Biological Sciences, University of Aberdeen, Zoology Building, Tillydrone Avenue, Aberdeen AB24 2TZ, UK.

Programa de Pós-graduação em Ecologia e Conservação, Universidade Federal do Paraná, Curitiba 82590-300, Brazil.

出版信息

iScience. 2022 Nov 15;25(12):105598. doi: 10.1016/j.isci.2022.105598. eCollection 2022 Dec 22.

Abstract

Intraspecific competition drives ecological specialization, and niche expansion. In holometabolous insects, larval intraspecific competition ("crowding") has lasting fitness consequences for individuals and shapes adaptive responses. However, our understanding of the molecular profile of larval crowding responses remains allusive. Here, I used a genetic construct in with disrupted uric acid metabolism ( ) to demonstrate the role of the uric acid metabolism-and its interactive effects with larval crowding, diet, and urea concentration-on female oviposition and larval development. larvae developed faster in sugar-rich diets. However, larvae pupated at lower heights in protein- and sugar-rich diets in crowded larval conditions and showed slower development in protein-rich mixed-genotype environments. did not affect female oviposition nor larval pupation success. Overall, this study provides the first step toward an integrated understanding of the molecular pathways underpinning the responses to intraspecific competition in holometabolous insects.

摘要

种内竞争推动生态特化和生态位扩张。在全变态昆虫中,幼虫的种内竞争(“拥挤”)对个体具有持久的适合度影响,并塑造适应性反应。然而,我们对幼虫拥挤反应的分子特征仍知之甚少。在此,我使用尿酸代谢被破坏的基因构建体来证明尿酸代谢的作用及其与幼虫拥挤、饮食和尿素浓度的相互作用对雌性产卵和幼虫发育的影响。 幼虫在富含糖的饮食中发育更快。然而, 在拥挤的幼虫条件下,在富含蛋白质和糖的饮食中, 幼虫在较低高度化蛹,并且在富含蛋白质的混合基因型环境中发育较慢。 不影响雌性产卵和幼虫化蛹成功率。总体而言,本研究为全面理解全变态昆虫对种内竞争反应的分子途径迈出了第一步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e22/9706702/246a4970c1db/fx1.jpg

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