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中国美利奴羊羊毛弯曲相关microRNA的筛选 被引量:1
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作者 于丽娟 张艳花 +3 位作者 拉扎特·艾尼瓦尔 徐新明 玛尔孜娅·亚森 狄江 《新疆农业科学》 CAS CSCD 北大核心 2021年第3期573-580,共8页
【目的】研究miRNA在不同羊毛弯曲中国美利奴羊皮肤组织中的表达差异及其可能参与的调控通路,筛选出与中国美利奴羊羊毛弯曲相关的miRNA,为进一步探究细毛羊羊毛弯曲性状的调控机理提供理论依据。【方法】运用高通量测序技术对羊毛弯曲... 【目的】研究miRNA在不同羊毛弯曲中国美利奴羊皮肤组织中的表达差异及其可能参与的调控通路,筛选出与中国美利奴羊羊毛弯曲相关的miRNA,为进一步探究细毛羊羊毛弯曲性状的调控机理提供理论依据。【方法】运用高通量测序技术对羊毛弯曲频率有极端差异表型值(大弯曲组与小弯曲组)细毛羊个体皮肤的miRNA组进行测序与比较分析。【结果】共鉴定出425个miRNAs,其中包括143个已知miRNAs和282个新发现的miRNAs。在大弯曲组与小弯曲组共筛选到8个上调和17个下调的miRNAs。对差异miRNA的预测靶基因进行简单的Gene Ontology与KEGG Pathway富集分析。差异表达的miRNA的靶基因主要参与跨膜信号受体活动、信号转导活动、分子转导活动、膜的组成等过程。15761个靶基因注释到252个信号通路。【结论】筛选出了25个与细毛羊羊毛弯曲性状相关的候选miRNAs。 展开更多
关键词 中国美利奴羊 羊毛弯曲 皮肤组织 MIRNA
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Genome Array on Differentially Expressed Genes of Skin Tissue in Cashmere Goat at Early Anagen of Cashmere Growth Cycle Using DNA Microarray 被引量:2
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作者 DI Jiang XU Xin-ming +7 位作者 lazate ainiwaer ZHANG Yan-hua TIAN Ke-chuan YU Li-juan WU Wei-wei Hanikezi Tulafu FU Xue-feng Marzeya Yasen 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2014年第10期2243-2252,共10页
In order to study the molecular mechanism involved in cashmere regeneration, this study investigated the gene expression profile of skin tissue at various stages of the cashmere growth cycle and screen differentially ... In order to study the molecular mechanism involved in cashmere regeneration, this study investigated the gene expression profile of skin tissue at various stages of the cashmere growth cycle and screen differentially expressed genes at proangen in 10 cashmere goats at 2 years of age using agilent sheep oligo microarray. Significance analysis of microarray (SAM) methods was used to identify the differentially expressed genes, Hierarchical clustering was performed to clarify these genes in association with different cashmere growth stages, and GO (Gene ontology) and the pathway analyses were con-ducted by a free web-based Molecular Annotation System3.0 (MAS 3.0). Approximately 10200 probe sets were detected in skin tissue of 2-yr-old cashmere goat. After SAM analysis of the microarray data, totally 417 genes were shown to be differentially expressed at different cashmere growth stages, and 24 genes are significantly up-regulated (21) or down-regulated (3) at proangen concurrently compared to angen and telogen. Hierarchical clustering analysis clearly distinguished the differentially expressed genes of each stage. GO analysis indicated that these altered genes at proangen were predominantly involved in collagen fibril organization, integrin-mediated signaling pathway, cell-matrix adhesion, cell adhesion, transforming growth factor-β (TGF-β) receptor signaling pathway, regulation of cell growth. Kyoto encyclopedia of genes and genomes (KEGG) analysis showed that the significant pathways involved mainly included focal adhesion and extracellular matrixc (ECM)-receptor interaction. Some important genes involved in these biological processes, such as COL1A1, COL1A2, COL3A1, SPARC, CYR61 and CTGF, were related to tissue remolding and repairing and detected by more than one probe with similar expression trends at different stages of cashmere growth cycle. The different expression of these genes may contribute to understanding the molecular mechanism of cashmere regeneration. 展开更多
关键词 CASHMERE growth cycle REGENERATION gene expression MICROARRAY
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