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Transcriptomic analysis reveals key regulators of mammogenesis and the pregnancy-lactation cycle 被引量:4
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作者 ZHOU YuanYuan GONG Wei +7 位作者 XIAO JingFa WU JiaYan PAN LinLin LI XiaoNuan WANG XuMin WANG WeiWei HU SongNian YU Jun 《Science China(Life Sciences)》 SCIE CAS 2014年第3期340-355,共16页
An organ unique to mammals, the mammary gland develops 90% of its mass after birth and experiences the pregnancy-lactation-involution cycle (PL cycle) during reproduction. To understand mammogenesis at the transcrip... An organ unique to mammals, the mammary gland develops 90% of its mass after birth and experiences the pregnancy-lactation-involution cycle (PL cycle) during reproduction. To understand mammogenesis at the transcriptomic level and using a ribo-minus RNA-seq protocol, we acquired greater than 50 million reads each for the mouse mammary gland during pregnancy (day 12 of pregnancy), lactation (day 14 of lactation), and involution (day 7 of involution). The pregnancy-, lacta- tion- and involution-related sequencing reads were assembled into 17344, 10160, and 13739 protein-coding transcripts and 1803, 828, and 1288 non-coding RNAs (ncRNAs), respectively. Differentially expressed genes (DEGs) were defined in the three samples, which comprised 4843 DEGs (749 up-regulated and 4094 down-regulated) from pregnancy to lactation and 4926 DEGs (4706 up-regulated and 220 down-regulated) from lactation to involution. Besides the obvious and substantive up- and down-regulation of the DEGs, we observe that lysosomal enzymes were highly expressed and that their expression coin- cided with milk secretion. Further analysis of transcription factors such as Trpsl, Gtf2i, Tcf712, Nuprl, Vdr, Rbl, and Aebpl, and ncRNAs such as mir-125b, Let7, mir-146a, and mir-15 has enabled us to identify key regulators in mammary gland de- velopment and the PL cycle. 展开更多
关键词 mouse mammary gland mammogenesis TRANSCRIPTOME rmrna-seq miRNAs transcription factors
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小鼠乳腺发育的转录组学研究--怀孕哺乳周期乳腺的关键调控基因 被引量:2
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作者 周媛媛 龚未 +7 位作者 肖景发 吴佳妍 潘林林 李小暖 王绪敏 王伟伟 胡松年 于军 《中国科学:生命科学》 CSCD 北大核心 2014年第3期291-306,共16页
乳腺是哺乳动物特有的器官,90%的发育过程集中在出生之后.此外,在生殖过程中乳腺发育会经历怀孕、哺乳和退化3个阶段(称为怀孕哺乳周期).为了在转录组水平上更好地了解乳腺发育的机制,利用核糖体RNA去除法构建了小鼠乳腺3个时期(怀孕12... 乳腺是哺乳动物特有的器官,90%的发育过程集中在出生之后.此外,在生殖过程中乳腺发育会经历怀孕、哺乳和退化3个阶段(称为怀孕哺乳周期).为了在转录组水平上更好地了解乳腺发育的机制,利用核糖体RNA去除法构建了小鼠乳腺3个时期(怀孕12天、哺乳14天和退化7天)的总RNA文库,每个文库产出的数据量均大于5×107条reads.3个文库分别得到17344,10160和13739个蛋白编码基因以及1803,828和1288个ncRNAs.其中,从怀孕期到哺乳期有4843个差异表达基因(包括749个上调表达的基因和4094个下调表达的基因);从哺乳期到退化期共有4926个差异表达基因(包括4706个上调表达和220个下调表达的基因).此外,还观察到与溶酶体酶相关的基因在哺乳期乳腺中有较高的表达.通过对转录因子及ncRNAs的分析,还得到一些可能在乳腺发育的不同时期有重要调控作用的调控因子基因(如转录因子基因Trps1,Gtf2i,Tcf7l2,Nupr1,Vdr,Rb1和Aebp1;miRNA基因mir-125b,Let-7,mir-146a和mir-15等). 展开更多
关键词 小鼠乳腺 乳腺发育 转录组 rmrnaseq MIRNAS 转录因子
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