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首页> 外文期刊>BMC Genomics >Testes and brain gene expression in precocious male and adult maturing Atlantic salmon (Salmo salar)
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Testes and brain gene expression in precocious male and adult maturing Atlantic salmon (Salmo salar)

机译:早熟的成年雄性和成年大西洋鲑(Salmo salar)的睾丸和脑基因表达

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Background The male Atlantic salmon generally matures in fresh water upon returning after one or several years at sea. Some fast-growing male parr develop an alternative life strategy where they sexually mature before migrating to the oceans. These so called 'precocious' parr or 'sneakers' can successfully fertilise adult female eggs and so perpetuate their line. We have used a custom-built cDNA microarray to investigate gene expression changes occurring in the salmon gonad and brain associated with precocious maturation. The microarray has been populated with genes selected specifically for involvement in sexual maturation (precocious and adult) and in the parr-smolt transformation. Results Immature and mature parr collected from a hatchery-reared stock in January were significantly different in weight, length and condition factor. Changes in brain expression were small - never more than 2-fold on the microarray, and down-regulation of genes was much more pronounced than up-regulation. Significantly changing genes included isotocin, vasotocin, cathepsin D, anamorsin and apolipoprotein E. Much greater changes in expression were seen in the testes. Among those genes in the testis with the most significant changes in expression were anti-Mullerian hormone, collagen 1A, and zinc finger protein (Zic1), which were down-regulated in precocity and apolipoproteins E and C-1, lipoprotein lipase and anti-leukoproteinase precursor which were up-regulated in precocity. Expression changes of several genes were confirmed in individual fish by quantitative PCR and several genes (anti-Mullerian hormone, collagen 1A, beta-globin and guanine nucleotide binding protein (G protein) beta polypeptide 2-like 1 (GNB2L1) were also examined in adult maturing testes. Down-regulation of anti-Mullerian hormone was judged to be greater than 160-fold for precocious males and greater than 230-fold for November adult testes in comparison to July testes by this method. For anti-Mullerian hormone and guanine nucleotide binding protein beta polypeptide 2-like 1 expression changes in precocious males mirrored mature adults (November) but for collagen 1A and beta-globin the pattern was more complex. Conclusions Expression changes in the fish brain during the process of precocious sexual maturation were small compared to those in the testes. Microarray analysis suggested down-regulation of housekeeping functions and up-regulation of a small number of specific processes. Transcriptional changes in the testes were much more pronounced with anti-Mullerian hormone playing a major role. Expression profiles for mature parr and maturing adult testes indicate subtle differences in gene expression between these two related groups.
机译:背景技术雄性大西洋鲑鱼在海上航行一年或几年后返回时通常会在淡水中成熟。一些成长迅速的雄性帕尔(parr)发展出另一种生活策略,使他们在移居到海洋之前先性成熟。这些所谓的“早熟”的parr或“运动鞋”可以成功地使成年雌性卵受精,从而使它们的品系得以延续。我们已使用定制的cDNA微阵列来研究与性早熟相关的鲑鱼性腺和大脑中发生的基因表达变化。该微阵列已填充有专门选择用于参与性成熟(早熟和成年)和par-smolt转化的基因。结果1月份从孵化场饲养的种群中收集的未成熟和成熟的幼鱼在重量,长度和条件因子方面存在显着差异。脑表达的变化很小-在微阵列上从未超过2倍,基因下调比上调更明显。显着变化的基因包括同位素,血管生成素,组织蛋白酶D,氨基酸和载脂蛋白E。睾丸中的表达变化更大。在睾丸中表达变化最大的那些基因中,抗穆勒激素,胶原蛋白1A和锌指蛋白(Zic1)在早熟和载脂蛋白E和C-1,脂蛋白脂肪酶和抗在早熟中上调的白蛋白蛋白酶前体。通过定量PCR证实了个别鱼中几种基因的表达变化,并在大肠杆菌中检查了几种基因(抗穆勒激素,胶原1A,β-球蛋白和鸟嘌呤核苷酸结合蛋白(G蛋白)β多肽2样1(GNB2L1)。通过这种方法,与早产男性相比,早熟男性的抗-Mullerian激素下调被确定为大于160倍,11月成年男性的下调大于230倍。早熟成年男性(11月)的核苷酸结合蛋白β多肽2-like 1表达变化,但对于胶原蛋白1A和β-珠蛋白,其模式更为复杂。结论性早熟过程中鱼脑中的表达变化很小与睾丸中的睾丸相比,微阵列分析提示了管家功能的下调和少量特定过程的上调。在抗睾丸激素的主要作用下,​​睾丸的局部变化更为明显。成熟的parr和成熟的成人睾丸的表达谱表明这两个相关组之间的基因表达存在细微的差异。

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