Rhodes Emma M, Yap Kang Nian, Mesquita Paulo H C, Parry Hailey A, Kavazis Andreas N, Krause Jesse S, Hill Geoffrey E, Hood Wendy R
Department of Biological Sciences, Auburn University, Auburn, USA.
Department of Biology, Norwegian University of Science and Technology, Trondheim, Norway.
Sci Rep. 2024 Apr 24;14(1):9456. doi: 10.1038/s41598-024-59715-y.
Migration is one of the most energy-demanding behaviors observed in birds. Mitochondria are the primary source of energy used to support these long-distance movements, yet how mitochondria meet the energetic demands of migration is scarcely studied. We quantified changes in mitochondrial respiratory performance in the White-crowned Sparrow (Zonotrichia leucophrys), which has a migratory and non-migratory subspecies. We hypothesized that the long-distance migratory Gambel's subspecies (Z. l. gambelii) would show higher mitochondrial respiratory performance compared to the non-migratory Nuttall's subspecies (Z. l. nuttalli). We sampled Gambel's individuals during spring pre-migration, active fall migration, and a period with no migration or breeding (winter). We sampled Nuttall's individuals during periods coinciding with fall migration and the winter period of Gambel's annual cycle. Overall, Gambel's individuals had higher citrate synthase, a proxy for mitochondrial volume, than Nuttall's individuals. This was most pronounced prior to and during migration. We found that both OXPHOS capacity (state 3) and basal respiration (state 4) of mitochondria exhibit high seasonal flexibility within Gambel's individuals, with values highest during active migration. These values in Nuttall's individuals were most similar to Gambel's individuals in winter. Our observations indicate that seasonal changes in mitochondrial respiration play a vital role in migration energetics.
迁徙是鸟类表现出的最消耗能量的行为之一。线粒体是用于支持这些长距离移动的主要能量来源,然而线粒体如何满足迁徙的能量需求却鲜有研究。我们对白冠雀(Zonotrichia leucophrys)的线粒体呼吸性能变化进行了量化,该物种有一个迁徙亚种和一个非迁徙亚种。我们假设,与非迁徙的纳氏亚种(Z. l. nuttalli)相比,长途迁徙的甘贝尔亚种(Z. l. gambelii)会表现出更高的线粒体呼吸性能。我们在春季迁徙前、秋季活跃迁徙期间以及无迁徙或繁殖期(冬季)对甘贝尔亚种的个体进行了采样。我们在与甘贝尔亚种年度周期中的秋季迁徙和冬季同期对纳氏亚种的个体进行了采样。总体而言,甘贝尔亚种个体的柠檬酸合酶(线粒体体积的一个指标)含量高于纳氏亚种个体。这在迁徙前和迁徙期间最为明显。我们发现,甘贝尔亚种个体中线粒体的氧化磷酸化能力(状态3)和基础呼吸(状态4)都表现出很高的季节灵活性,在活跃迁徙期间数值最高。纳氏亚种个体的这些数值与甘贝尔亚种个体在冬季的数值最为相似。我们的观察结果表明,线粒体呼吸的季节性变化在迁徙能量学中起着至关重要的作用。