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本实验通过探索胰岛素信号通路及其相关途径对茶足柄瘤蚜茧蜂蛹滞育的影响,从而方便寻找胰岛素替代物,为害虫防治提供新思路。利用RNA-Seq,对滞育组与非滞育组的茶足柄瘤蚜茧蜂进行转录组测序,结合生物信息学方法对转录组中胰岛素信号通路及其相关途径的差异表达基因进行了分析。与胰岛素信号通路相关差异表达基因共31个,重点分析的PI3K-Akt, FoxO, MAPK三条途径,差异表达基因分别为55, 21和28个。这些滞育关联基因呈现不同程度的上调或下调表达,发现Sos, FASN, TSC1, PRKAB等基因与茶足柄瘤蚜茧蜂滞育密切相关,共同影响茶足柄瘤蚜茧蜂的滞育。胰岛素信号通路及其相关途径对茶足柄瘤蚜茧蜂的滞育起着非常重要的作用,主要体现在影响虫体能量代谢、脂质积累、细胞增殖等方面。  相似文献   

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The regulation of porcine subcutaneous (SC) and intramuscular (IM) fat deposition significantly affects pork quality and the lean meat percentage of the carcass, respectively. The adipokine C1q/tumor necrosis factor-related protein 6 (CTRP6), plays a significant role in regulating animal fat deposition. The purpose of this study was to understand the effects of CTRP6 gene knockdown in IM and SC adipocytes by RNA-seq analysis. A total of 1830 and 2936 differentially expressed genes (DEGs) were identified in SC and IM adipocytes, respectively. 844 were down- and 2092 were upregulated in SC adipocytes, while 648 were down- and 1182 were upregulated in IM adipocytes. Furthermore, 1778 DEGs were detected only in SC adipocytes, 672 DEGs only in IM adipocytes, and 1158 DEGs in both types of adipocytes. GO analysis indicated that DEGs involved in adipocyte differentiation were significantly enriched in both SC and IM adipocytes following treatment with CTRP6-siRNA. Moreover, KEGG pathway enrichment analysis revealed differences of metabolic regulation between IM and SC adipocytes. With CTRP6-silencing, the signaling pathways related to Ras and arachidonic acid metabolism were significantly enriched in IM adipocytes, while four other signaling pathways, encompassing the TNF, MAPK, p53 and adipokine pathway were specifically enriched in SC adipocytes. Interestingly, the effect of CTRP6-siRNA treatment was attenuated by the specific Ras activator ML-097 in IM adipocytes, while the specific p53 activator SJ-172550 had the corresponding effect in SC adipocytes. Altogether, we suggest that CTRP6 may be a differential regulator of the development and metabolism of IM and SC adipose tissues.  相似文献   

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通过转录物组测序获得在贵妃鸡基础日粮中添加共轭亚油酸(CLA)对肌内脂肪代谢的差异表达基因,经生物信息学分析获得相关的信号通路及可能发挥重要作用的候选基因,为CLA对肌内脂肪沉积的分子机制奠定基础。本研究选用55日龄健康的贵妃鸡为试验动物,在基础日粮中添加CLA 0%、1%和2%,预饲期1周,正饲期6周。屠宰采集胸肌组织进行转录物组测序,对测序数据进行差异表达分析,差异表达基因GO功能和差异表达基因KEGG通路富集分析,筛选出与胸肌脂类代谢相关的差异表达基因,利用qRT-PCR对差异表达基因进行验证。结果显示,共获得1 065个差异表达基因,其中上调基因703个,下调基因362个。GO富集结果显示,差异表达基因主要富集在生物过程的细胞过程、单一生物过程、生物调节和代谢过程。KEGG信号通路富集显示,差异表达基因显著富集在黏着斑、不饱和脂肪酸生物合成、脂肪酸生物合成和类固醇生物合成等信号通路中,发现11个主要与肌内脂肪代谢相关的候选基因,分别是FADS1、FADS2、ELOVL5、ACOX2、SLC27A1、FABP5、LPL、LOC107050163、ENSGALG00000030996、ENSGALG00000005043和ENSGALG00000048882。并随机选取6个基因进行qRT-PCR验证,其相对表达量变化趋势与测序结果一致。本研究筛选到CLA影响贵妃鸡胸肌脂类代谢相关的差异表达基因,并对11个主要参与脂肪代谢相关的基因进行分析,为揭示CLA调控肌内脂肪沉积的分子机制奠定基础。  相似文献   

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油桐是我国重要的木本油料植物, 过去对油桐的研究主要集中于栽培和常规育种, 与油桐种仁油脂合成相关的分子机理研究还未见报道。文章采用RNA-seq技术对油桐种子油脂合成的3个不同时期的转录组进行比较, 获得了大量差异表达的Unigene序列。在此基础上, 通过GO分类和Pathway富集性分析将这些差异表达Unigene归类于128个代谢途径, 其中包含与油脂合成相关的脂肪酸生物合成和甘油磷脂代谢途径。桐酸经脂肪酸生物合成途径合成后通过甘油磷脂代谢途径以桐油的形式贮存。将这两个代谢途径的Unigene序列在KEGG数据库中进行比对, 获得了一些关键酶的同源蛋白质。文章通过对编码这些同源蛋白质的基因在油桐种子油脂合成期的表达模式进行分析, 以期为油桐油脂合成, 尤其是桐酸合成机理的解析提供理论参考, 并为油桐的遗传改良提供潜在的基因资源, 从而提高油桐的单位面积产量。  相似文献   

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