鸭胚胎发育中后期胸肌发育阻滞的RNA-seq分析 |
刘宏祥,徐文娟,朱春红,陶志云,宋卫涛,章双杰,李慧芳 |
RNA-seq Analysis on Development Arrest of Duck Pectoralis Muscle During Semi-Late Embryonic Period |
LIU HongXiang,XU WenJuan,ZHU ChunHong,TAO ZhiYun,SONG WeiTao,ZHANG ShuangJie,LI HuiFang |
图4 高邮鸭及金定鸭21胚龄和27胚龄mRNA差异表达基因GO功能分类图 B1:细胞成分运动(cellular component movement),B2:基于微管的过程(microtubule-based process),B3:基于微管的运动(microtubule-based movement),B4:细胞周期(cell cycle),B5:分解代谢过程的正向调控(positive regulation of catabolic process),B6:自噬调控(regulation of autophagy),B7:自噬正调控(positive regulation of autophagy),B8:细胞膜组织(cellular membrane organization),B9:(evasion or tolerance of host defenses by virus),B10:细胞分解过程的正向调控(positive regulation of cellular catabolic process),B11:宿主防御逃逸(avoidance of host defenses),B12:宿主防御回避或耐受(evasion or tolerance of host defenses),B13:其它共生互作生物的防御逃逸avoidance of defenses of other organism involved in symbiotic interaction),B14:其他共生互作生物的防御回避或耐受(evasion or tolerance of defenses of other organism involved in symbiotic interaction),B15:其他共生互作生物的防御响应(response to defenses of other organism involved in symbiotic interaction),B16:对宿主防御的响应(response to host defenses),B17:对宿主的响应(response to host) C1:线粒体(mitochondrion),C2:核糖体(ribosome),C3:核糖核蛋白复合物(ribonucleoprotein complex),C4:细胞外基质(extracellular matrix),C5:大分子复合物(macromolecular complex),C6:非膜结合细胞器(non-membrane-bounded organelle),C7:胞内非膜结合细胞器(intracellular non-membrane-bounded organelle) M1:核糖体结构成分(structural constituent of ribosome),M2:肌动活性(motor activity),M3:微管肌动活性(microtubule motor activity),M4:结构分子活性(structural molecule activity),M5:微管结合(microtubule binding),M6:细胞支架蛋白结合(cytoskeletal protein binding),M7:DNA依赖的ATP酶活性(DNA-dependent ATPase activity),M8:微管蛋白结合(tubulin binding),M9:焦磷酸酶活性(pyrophosphatase activity),M10:氧化还原酶活性(oxidoreductase activity),M11:作用于酸酐的水解酶活性(hydrolase activity, acting on acid anhydrides),M12:作用于含磷酸酐的水解酶活性(hydrolase activity, acting on acid anhydrides, in phosphorus-containing anhydrides),M13:核苷三磷酸酶活性(nucleoside-triphosphatase activity) |
Fig. 4 GO function classification of mRNA differentially expressed genes of GY and JD between 21 ed and 27 ed |
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