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环裂双翅目(原麻蝇属、果蝇属)早期胚胎发育中身体模式形成(区域化)的方式和时间

Mode and timing of body pattern formation (Regionalization) in the early embryonic development of cyclorrhaphic dipterans (Protophormia, Drosophila).

作者信息

Herth W, Sander K

机构信息

Biologisches Institut I (Zoologie) der Albert Ludwig-Universität Freiburg i. Br., Deutschland.

出版信息

Wilhelm Roux Arch Entwickl Mech Org. 1973 Mar;172(1):1-27. doi: 10.1007/BF00581882.

DOI:10.1007/BF00581882
PMID:28304739
Abstract
  1. Eggs of the blowflyProtophormia spec. were separated into anterior and posterior fragments of varying sizes. The operations were carried out between oviposition and the blastoderm stage. The partial larvae produced by the fragments were scored for the cuticular pattern they had formed. 2. The cuticle of the 1st instar larva carries 11 denticle belts which correspond to the anterior borders of the thoracic and abdominal body segments. These are considered the elements of a linear longitudinal pattern which starts with the head region. 3. Egg fragments of the sizes studied did not produce the complete cuticular pattern. 4. If denticle belts were present on the partial larvae formed in egg fragments, these always included the corresponding terminal pattern element (no. 1 in anterior, no. 11 in posterior fragments). Bigger partial patterns from anterior fragments may have any belt up to no. 10 as their most posterior belt, posterior partial patterns may start anteriorly with any belt up to no. 1, i.e. behind the head region. 5. After fragmentation during early stages of development, all eggs fail to form some pattern elements. Fragmentation thus causes a gap in the pattern. Extent and position within the pattern of this gap depend on level and stage of fragmentation. 6. With increasing egg age (developmental stage) at fragmentation, the gap in the cuticular pattern becomes progressively smaller. Eggs fragmented during or after formation of the blastodermal cell walls as a rule form all pattern elements. 7. The progressive reduction of the gap in the cuticular pattern is due to formation of bigger sets of pattern elements inboth partner fragments. I.e. on the average an anterior or posterior fragment of given size will produce more pattern elements if separated from the rest of the egg at a later stage than if separated early. 8. In order to produce a given set of pattern elements, a fragment needs to be bigger on the average when separated early than when separated later on. This applies to both anteriorand posterior fragments of the fragmentation levels studied. 9. According to these results, the egg ofProtophormia cannot be considered a mosaic of determinants for the different pattern elements at oviposition. The developmental fate of at least the more equatorial egg regions appears to become specified epigenetically during the period between oviposition and blastoderm formation. 10. Once the egg has become subdivided into blastoderm cells, it reacts as a developmental mosaic with respect to the pattern studied. 11. Preliminary results inDrosophila are compatible with these conclusions. 12. The results are compared to those obtained from other insect groups, and formal models for their interpretation are discussed. Pattern specification by interaction of terminal egg regions can be considered the common denominator for a number of egg types. 13. The results demonstrate that formally comparable processes of pattern formation occur in different insect egg types at different stages of development.
摘要
  1. 绿蝇属的Protophormia种的卵被分成大小各异的前部和后部片段。操作在产卵和胚盘阶段之间进行。对片段产生的部分幼虫形成的表皮图案进行评分。2. 一龄幼虫的表皮带有11条小齿带,它们对应于胸部和腹部体节的前缘。这些被认为是始于头部区域的线性纵向图案的元素。3. 所研究大小的卵片段没有产生完整的表皮图案。4. 如果在卵片段中形成的部分幼虫上有小齿带,这些小齿带总是包括相应的末端图案元素(前部片段中的第1条,后部片段中的第11条)。来自前部片段的较大部分图案可能以第10条带作为其最后一条带,后部部分图案可能从前部任何一条带(即头部区域后面的带)开始。5. 在发育早期阶段分割后,所有的卵都无法形成一些图案元素。因此,分割会导致图案出现缺口。这个缺口在图案中的范围和位置取决于分割的水平和阶段。6. 随着分割时卵龄(发育阶段)的增加,表皮图案中的缺口逐渐变小。在胚盘细胞壁形成期间或之后分割的卵通常会形成所有图案元素。7. 表皮图案中缺口的逐渐缩小是由于两个伙伴片段中形成了更大的图案元素集。也就是说,平均而言,给定大小的前部或后部片段如果在后期与卵的其余部分分离,将比早期分离产生更多的图案元素。8. 为了产生给定的一组图案元素,早期分离的片段平均需要比后期分离的片段更大。这适用于所研究分割水平的前部和后部片段。9. 根据这些结果,Protophormia的卵在产卵时不能被视为不同图案元素的决定因子镶嵌体。至少赤道附近的卵区域的发育命运似乎在产卵和胚盘形成之间的时期通过表观遗传方式确定。10. 一旦卵被细分为胚盘细胞,就所研究的图案而言,它就像一个发育镶嵌体一样起作用。11. 果蝇的初步结果与这些结论一致。12. 将结果与从其他昆虫类群获得的结果进行比较,并讨论用于解释它们的形式模型。卵末端区域相互作用产生的图案特化可被视为多种卵类型的共同特征。13. 结果表明,在不同昆虫卵类型的不同发育阶段发生形式上可比的图案形成过程。

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Genetic analysis of pattern-formation in the embryo ofDrosophila melanogaster : Characterization of the maternal-effect mutantBicaudal.黑腹果蝇胚胎模式形成的遗传分析:母体效应突变体双尾的特征描述
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6
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Wilehm Roux Arch Dev Biol. 1977 Mar;182(1):9-32. doi: 10.1007/BF00848084.
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Differential responses to ultraviolet irradiation of the polar cytoplasm ofDrosophila eggs: II. Response to dose.果蝇卵极性细胞质对紫外线照射的差异反应:II. 对剂量的反应。
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[Development of the malformation "double abdomen" in eggs of smittia parthenogenetica (dipt., chironomidae) partially irradiated by UV].[紫外线部分照射致孤雌生殖直突摇蚊(双翅目,摇蚊科)卵中“双腹”畸形的发育]
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Pattern formation in longitudinal halves of leaf hopper eggs (Homoptera) and some remarks on the definition of "Embryonic regulation".叶蝉卵(同翅目)纵半部分的模式形成及关于“胚胎调控”定义的一些评论
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Morphogenetic movements and segmentation of posterior egg fragmentsin vitro : Calliphora erythrocephala meig., diptera.体外培养中后段卵块的形态发生运动与分割:红头丽蝇,双翅目
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