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在同时选择更快的幼体发育和延长寿命的情况下,黑腹果蝇种群中生化适应的健身后果。

Fitness consequences of biochemical adaptation in Drosophila melanogaster populations under simultaneous selection for faster pre-adult development and extended lifespan.

机构信息

Evolutionary Biology Laboratory, Department of Zoology, University of Delhi, Delhi, India.

出版信息

Sci Rep. 2021 Aug 12;11(1):16434. doi: 10.1038/s41598-021-95951-2.

Abstract

In holometabolous insects like Drosophila melanogaster, critical size is an important time point during larval life, for irreversible commitment to metamorphosis. Here, we studied the impact of restricted growth duration in terms of selection for faster pre-adult development in Drosophila melanogaster populations which resulted in the evolution of reduced critical size on adult life history traits. Selection for faster pre-adult development resulted in biochemical adaptation in larval physiology with no compromise in major biomolecules at critical size time point. The flies from the selected populations seem to not only commit to metamorphosis on the attainment of critical size but also seem to channelize resources to reproduction as indicated by similar life-time fecundity of CS and NS flies from selected populations, while the Control CS flies significantly lower life-time fecundity compared to Control NS flies. The flies from selected populations seem to achieve longevity comparable to control flies despite being significantly smaller in size-thus resource constrained due to faster pre-adult development.

摘要

在完全变态的昆虫(如黑腹果蝇)中,临界大小是幼虫期的一个重要时间点,因为它决定了是否不可逆地进入变态。在这里,我们研究了限制生长时间对黑腹果蝇种群中成年生活史特征的选择的影响,这种选择导致了临界大小的减小。为了更快地发育为成虫,对幼虫生理进行了生化适应,在临界大小时间点没有牺牲主要生物分子。选择更快地发育为成虫的结果是,所选种群的幼虫在达到临界大小时不仅会进行变态,而且似乎会将资源转移到繁殖上,这表明来自所选种群的 CS 和 NS 苍蝇的终生繁殖力相似,而 CS 苍蝇的寿命明显低于 NS 苍蝇。与对照组相比,尽管选择种群的苍蝇体型明显较小,但由于预成虫发育较快,资源受到限制,它们的寿命与对照组相似。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/61b3/8361192/0ce260b5ff9c/41598_2021_95951_Fig1_HTML.jpg

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