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代谢标度的变化能否预测饮食质量与体型之间的协同进化?

Can shifts in metabolic scaling predict coevolution between diet quality and body size?

作者信息

Pequeno Pedro A C L, Graça Márlon B, Oliveira João R, Šobotník Jan, Acioli Agno N S

机构信息

Roraima Research Nucleus, National Institute for Amazonia Research, R. Cel. Pinto, 315, Centro, Boa Vista - RR, CEP:, 69301-150, Brazil.

Federal Institute for Education, Science and Technology of Amazonas, Estr. Coari Itapeua, s/n - Itamarati, Coari - AM, CEP:, 69460-000, Brazil.

出版信息

Evolution. 2021 Jan;75(1):141-148. doi: 10.1111/evo.14128. Epub 2020 Nov 27.

DOI:10.1111/evo.14128
PMID:33196103
Abstract

Larger species tend to feed on abundant resources, which nonetheless have lower quality or degradability, the so-called Jarman-Bell principle. The "eat more" hypothesis posits that larger animals compensate for lower quality diets through higher consumption rates. If so, evolutionary shifts in metabolic scaling should affect the scope for this compensation, but whether this has happened is unknown. Here, we investigated this issue using termites, major tropical detritivores that feed along a humification gradient ranging from dead plant tissue to mineral soil. Metabolic scaling is shallower in termites with pounding mandibles adapted to soil-like substrates than in termites with grinding mandibles adapted to fibrous plant tissue. Accordingly, we predicted that only larger species of the former group should have more humified, lower quality diets, given their higher scope to compensate for such a diet. Using literature data on 65 termite species, we show that diet humification does increase with body size in termites with pounding mandibles, but is weakly related to size in termites with grinding mandibles. Our findings suggest that evolution of metabolic scaling may shape the strength of the Jarman-Bell principle.

摘要

体型较大的物种往往以丰富的资源为食,然而这些资源的质量或可降解性较低,即所谓的贾曼-贝尔原理。“多吃”假说认为,较大的动物通过更高的摄食率来弥补低质量的食物。如果是这样,代谢标度的进化变化应该会影响这种补偿的范围,但这种情况是否发生尚不清楚。在这里,我们以白蚁为研究对象探讨了这个问题,白蚁是主要的热带食腐动物,它们沿着从死植物组织到矿质土壤的腐殖化梯度觅食。与适应纤维状植物组织的研磨型口器白蚁相比,适应类土壤基质的敲击型口器白蚁的代谢标度更平缓。因此,我们预测,鉴于前一组白蚁有更高补偿这种食物的能力,只有体型较大的物种才应该有腐殖化程度更高、质量更低的食物。利用关于65种白蚁物种的文献数据,我们发现,对于敲击型口器白蚁,食物的腐殖化程度确实会随着体型增大而增加,但对于研磨型口器白蚁,食物腐殖化程度与体型的关系较弱。我们的研究结果表明,代谢标度的进化可能会影响贾曼-贝尔原理的强度。

相似文献

1
Can shifts in metabolic scaling predict coevolution between diet quality and body size?代谢标度的变化能否预测饮食质量与体型之间的协同进化?
Evolution. 2021 Jan;75(1):141-148. doi: 10.1111/evo.14128. Epub 2020 Nov 27.
2
Nitrous Oxide (N2O) Emissions by Termites: Does the Feeding Guild Matter?白蚁排放的一氧化二氮(N₂O):取食类群有影响吗?
PLoS One. 2015 Dec 10;10(12):e0144340. doi: 10.1371/journal.pone.0144340. eCollection 2015.
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Diet is the primary determinant of bacterial community structure in the guts of higher termites.饮食是高等白蚁肠道中细菌群落结构的主要决定因素。
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Termites in the hominin diet: a meta-analysis of termite genera, species and castes as a dietary supplement for South African robust australopithecines.古人类饮食中的白蚁:对作为南非粗壮傍人饮食补充剂的白蚁属、种和品级的荟萃分析。
J Hum Evol. 2014 Jun;71:94-104. doi: 10.1016/j.jhevol.2013.07.015. Epub 2014 Mar 5.
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Assessing the Jarman-Bell Principle: Scaling of intake, digestibility, retention time and gut fill with body mass in mammalian herbivores.评估贾尔曼-贝尔原理:哺乳动物食草动物的摄入量、消化率、滞留时间和肠道填充与体重的比例。
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A Natural High-Sugar Diet Has Different Effects on the Prokaryotic Community Structures of Lower and Higher Termites (Blattaria).天然高糖饮食对低等和高等白蚁(蜚蠊目)原核生物群落结构有不同影响。
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Remodeling of the juvenile hormone pathway through caste-biased gene expression and positive selection along a gradient of termite eusociality.通过偏向于特定等级的基因表达以及沿着白蚁社会性梯度的正选择作用,对保幼激素通路进行重塑。
J Exp Zool B Mol Dev Evol. 2018 Jul;330(5):296-304. doi: 10.1002/jez.b.22805. Epub 2018 May 29.

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Termite dispersal is influenced by their diet.白蚁的扩散受其饮食影响。
Proc Biol Sci. 2022 May 25;289(1975):20220246. doi: 10.1098/rspb.2022.0246.
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The evolution of body size in termites.白蚁体型的演变。
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