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河口红树林越冬的大脑中的分子变化。

Molecular Changes in the Brain of the Wintering in the Mangroves of the Amazon River Estuary.

机构信息

Laboratório de Biologia Molecular e Neuroecologia, Campus Bragança, Instituto Federal de Educação, Ciência e Tecnologia do Pará, Bragança 68600-000, PA, Brazil.

Laboratório de Citogenética Humana, Universidade Federal do Pará, Belém 66075-110, PA, Brazil.

出版信息

Int J Mol Sci. 2023 Aug 12;24(16):12712. doi: 10.3390/ijms241612712.

Abstract

Migrant birds prepare differently to fly north for breeding in the spring and for the flight to lower latitudes during autumn, avoiding the cold and food shortages of the Northern Hemisphere's harsh winter. The molecular events associated with these fundamental stages in the life history of migrants include the differential gene expression in different tissues. Semipalmated sandpipers () are Arctic-breeding shorebirds that migrate to the coast of South America during the non-breeding season. In a previous study, we demonstrated that between the beginning and the end of the wintering period, substantial glial changes and neurogenesis occur in the brain of . These changes follow the epic journey of the autumn migration when a 5-day non-stop transatlantic flight towards the coast of South America and the subsequent preparation for the long-distance flight of the spring migration takes place. Here, we tested the hypothesis that the differential gene expressions observed in the brains of individuals captured in the autumn and spring windows are consistent with the previously described cellular changes. We searched for differential gene expressions in the brain of the semipalmated sandpiper, of recently arrived birds (RA) from the autumnal migration, and that of individuals in the premigratory period (PM) in the spring. All individuals were collected in the tropical coastal of northern Brazil in the mangrove region of the Amazon River estuary. We generated a de novo neurotranscriptome for individuals and compared the gene expressions across libraries. To that end, we mapped an RNA-Seq that reads to the neurotranscriptome in four brain samples of each group and found that the differential gene expressions in newly arrived and premigratory birds were related with neurogenesis, metabolic pathways (ketone body biosynthetic and the catabolic and lipid biosynthetic processes), and glial changes (astrocyte-dopaminergic neuron signaling, astrocyte differentiation, astrocyte cell migration, and astrocyte activation involved in immune response), as well as genes related to the immune response to virus infections (Type I Interferons), inflammatory cytokines (IL-6, IL-1β, TNF, and NF-κB), NLRP3 inflammasome, anti-inflammatory cytokines (IL-10), and cell death pathways (pyroptosis- and caspase-related changes).

摘要

候鸟在春季向北繁殖和秋季向低纬度迁徙时会做出不同的准备,以避开北半球冬季的严寒和食物短缺。与候鸟生命史的这些基本阶段相关的分子事件包括不同组织中的差异基因表达。半蹼鹬()是北极繁殖的滨鸟,在非繁殖季节迁徙到南美洲海岸。在之前的一项研究中,我们证明了在越冬期开始和结束之间,的大脑中会发生大量胶质细胞变化和神经发生。这些变化紧随秋季迁徙的史诗般的旅程而来,在这个旅程中,它们进行了为期 5 天的不间断跨大西洋飞行,前往南美洲海岸,随后为春季的长途迁徙做准备。在这里,我们检验了这样一个假设,即在秋季和春季窗口期捕获的个体的差异基因表达与之前描述的细胞变化一致。我们在半蹼鹬的大脑中搜索了差异基因表达,这些差异基因表达存在于秋季迁徙中最近到达的个体(RA)和春季迁徙前的个体(PM)中。所有个体都是在巴西北部的热带沿海地区、亚马逊河河口的红树林地区采集的。我们为 个个体生成了一个新的神经转录组,并比较了各个文库中的基因表达。为此,我们对每个组的四个大脑样本进行了 RNA-Seq 测序,并将其与神经转录组进行了映射,结果发现,新到达和迁徙前的鸟类的差异基因表达与神经发生、代谢途径(酮体生物合成和分解代谢以及脂质生物合成过程)以及胶质细胞变化(星形胶质细胞-多巴胺能神经元信号、星形胶质细胞分化、星形胶质细胞迁移和星形胶质细胞激活涉及免疫反应)有关,还有与病毒感染的免疫反应(I 型干扰素)、炎症细胞因子(IL-6、IL-1β、TNF 和 NF-κB)、NLRP3 炎症小体、抗炎细胞因子(IL-10)和细胞死亡途径(细胞焦亡和半胱天冬酶相关变化)有关的基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/394e/10454129/e3c8ca2fbc08/ijms-24-12712-g001.jpg

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