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ripply1在斑马鱼早期胚胎背腹发育中的作用 被引量:1
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作者 孟亚平 刘春业 石德利 《中国实验动物学报》 CAS CSCD 北大核心 2015年第5期446-452,共7页
目的探究ripply1基因在斑马鱼早期背腹轴发生过程中的作用。方法利用斑马鱼整封原位杂交技术揭示ripply1基因在斑马鱼早期胚胎发育过程中的表达模式,通过显微注射技术在胚胎1细胞期注射ripply1的mRNA来高表达Ripply1蛋白并在后期观察胚... 目的探究ripply1基因在斑马鱼早期背腹轴发生过程中的作用。方法利用斑马鱼整封原位杂交技术揭示ripply1基因在斑马鱼早期胚胎发育过程中的表达模式,通过显微注射技术在胚胎1细胞期注射ripply1的mRNA来高表达Ripply1蛋白并在后期观察胚胎背腹标记基因的变化及胚胎形态变化。利用Tol2转基因技术构建ripply1启动子驱动的GFP转基因鱼。结果原位杂交结果显示ripply1基因在斑马鱼原肠早期胚盾期特异表达在胚盾处,即预定的背部。高表达ripply1后,在胚盾期背部标记基因表达范围扩大,腹部标记基因表达减弱,受精后24小时胚胎表现出严重的背部化表型:头部增大,腹部卵黄延伸减弱,尾部躯干及尾部区域减少,有的甚至形成了第二个体轴。得到的转基因鱼揭示ripply1母源表达,并且转录起始位点上游1200个碱基驱动的GFP能模拟内源基因的表达图式。结论 ripply1可能参与斑马鱼胚胎早期背腹轴的发生。 展开更多
关键词 斑马鱼 ripply1 早期胚胎发育 背腹发生
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The Structure of Oryza Embryos and Their Dimorphic Cotyledons 被引量:2
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作者 徐雪宾 刘向东 +2 位作者 章崇玲 吴万春 韩惠珍 《Acta Botanica Sinica》 CSCD 2002年第1期15-21,共7页
It has been generally held in botany that Oryza sativa L. is a monocotyledon. Based on studies of rice embryo development we confirmed that rice embryo has two dimorphic cotyledons rather than just one cotyledo... It has been generally held in botany that Oryza sativa L. is a monocotyledon. Based on studies of rice embryo development we confirmed that rice embryo has two dimorphic cotyledons rather than just one cotyledon. In the present study we attempt to know if the morphology of embryos in other species of Oryza differs from O. sativa and if these embryos have dimorphic cotyledon. Two types of embryo structures were observed in 22 species and/or subspecies of genus Oryza under the scanning electron microscope. Type 1, the O.sativa type, which is characterized by ventral scale and lateral scales, was found in 16 species. Type 2, the O. meyeriana (Zoll. et Mor. ex Steud.) Baill. ssp. tuberculata W. C. Wu et Y. G. Lu, G. C. Wang type, with no ventral scale and lateral scales, was found in 6 species and subspecies. The embryogenic process of O.sativa and O.meyeriana sub. tuberculata showed that the scutellum primordium, coleorhiza primordium, coleoptile primordium and shoot apical meristem directly differentiate from proembryo. The former two later develop into the embryo envelope, which is the outside cotyledon; the coleoptile primordium develops into the coleoptile with the shape of inverted empty cone surrounding and covering the growth cone, which is the apical cotyledon. Both types of rice embryos have dimorphic cotyledons. The structural difference between them is that the scutellum primordium of the young embryo in type 2 does not differentiate ventral scale and lateral scales while the embryo of type 1 does. The dimorphic cotyledons of embryo of Oryza plants originate from the dorsiventrality of proembryo. 展开更多
关键词 genus Oryza EMBRYOGENESIS dimorphic cotyledon dorsiventrality embryonic envelope (outside cotyledon) scutellum and coleoptile (apical cotyledon)
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Physical Blocking Neural Tube Closure Affects Radial Intercalation and Neural Crest Midline-directed Migration in Xenopus Dorsal Explants
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作者 石宇 赵树华 毛炳宇 《Zoological Research》 CAS CSCD 北大核心 2009年第6期639-644,共6页
Neural tube defects (NTDs) are severe congenital malformation diseases, which occur in 1 out of 1000 births in human. In Xenopus, several tissue movements are involved in the neural tube closure process. Immediately... Neural tube defects (NTDs) are severe congenital malformation diseases, which occur in 1 out of 1000 births in human. In Xenopus, several tissue movements are involved in the neural tube closure process. Immediately after the neural tube fusion, the neural crest cells get monopolar protrusion toward dorsal midline and migrate to form the roof of the neural tube. At the same time, radial intercalation takes place from the ventral neural tube and forces it to be single-layered. Here, we physically block the neural tube closure to test the cell movements and the following patterning in Xenopus laevis explants. The results show that the single-layered neural tube fails to form and the neural crest cells remain at the lateral regions in the explants with NTDs. However, the patterning of the neural tube is not affected as indicated by the normal expression of the preneural genes. These results indicate a requirement of the neural tube fusion for the radial intercalation and the dorsal midline directed neural crest migration, but not for the dorsal-ventral patterning of the neural tube. 展开更多
关键词 Xenopus laevis Neural tube defect Neural tube closure Neural crest Morghogenesis Intercalation Dorsoventral patterning
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