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首页> 外文期刊>The Journal of Experimental Biology >PPAR expression, muscle size and metabolic rates across the gray catbird's annual cycle are greatest in preparation for fall migration
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PPAR expression, muscle size and metabolic rates across the gray catbird's annual cycle are greatest in preparation for fall migration

机译:PACT表达,肌肉大小和灰色Catbird的年度周期的代谢率最大,准备秋季迁移

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摘要

Phenotypic flexibility across the annual cycle allows birds to adjust to fluctuating ecological demands. Varying energetic demands associated with time of year have been demonstrated to drive metabolic and muscle plasticity in birds, but it remains unclear what molecular mechanisms control this flexibility. We sampled gray catbirds at five stages across their annual cycle: tropical overwintering (January), northward spring (late) migration (early May), breeding (mid June), the fall pre-migratory period (early August) and southward fall (early) migration (end September). Across the catbird's annual cycle, cold-induced metabolic rate ((V) over dot(O2summit)) was highest during migration and lowest during tropical wintering. Flight muscles exhibited significant hypertrophy and/or hyperplasia during fall migratory periods compared with breeding and the fall pre-migratory period. Changes in heart mass were driven by the tropical wintering stage, when heart mass was lowest. Mitochondrial content of the heart and pectoralis remained constant across the annual cycle as quantified by aerobic enzyme activities (CS, CCO), as did lipid catabolic capacity (HOAD). In the pectoralis, transcription factors PPAR alpha, PPAR delta and ERR beta, coactivators PGC-1 alpha and beta, and genes encoding proteins associated with fat uptake (FABPpm, Plin3) were unexpectedly upregulated in the tropical wintering stage, whereas those involved in fatty acid oxidation (ATGL, LPL, MCAD) were downregulated, suggesting a preference for fat storage over utilization. Transcription factors and coactivators were synchronously upregulated during pre-migration and fall migration periods in the pectoralis but not the heart, suggesting that these pathways are important in preparation for and during early migration to initiate changes to phenotypes that facilitate long-distance migration.
机译:每年周期的表型灵活性使鸟类能够调整到波动的生态需求。已经证明与一年中的时间相关的有关的能量需求,以推动鸟类的代谢和肌肉可塑性,但仍然尚不清楚可防止的分子机制控制这种灵活性。我们在年度周期中的五个阶段采样了灰色的刺鸟:热带越冬(1月),北方春天(晚5月初),繁殖(6月中旬),秋季迁徙期(8月初)和南部秋季(早) )移民(9月底)。在Catbird的年度周期中,在热带越冬期间,冷诱导的代谢率((v)过点(o2summit))最高,在热带越冬期间最低。与繁殖和秋季迁徙期间相比,飞行肌肉在秋季迁徙期间表现出显着的肥大和/或增生。当心脏质量最低时,心脏质量的变化由热带越冬阶段驱动。通过有氧酶活性(CS,CCO)量化的年度循环中,心脏和胸肌的线粒体含量保持恒定,如脂质分解代谢容量(海湾)。在Pectoralis,转录因子PPARα,PPARδ和errβ,共酰变变剂PGC-1α和β,以及编码与脂肪摄取相关的蛋白质(FABPPM,PLIN3)的基因在热带越冬阶段,而那些参与脂肪的人下调酸性氧化(ATGL,LPL,MCAD),表明脂肪储存过度利用的偏好。转录因子和共催光剂在胸部的迁移前和迁移期间同时上调,但不是心脏,表明这些途径在准备期间和早期迁移期间是对促进长途迁移的表型的变化很重要。

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