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首页> 外文期刊>Developmental biology >even-skipped has gap-like, pair-rule-like, and segmental functions in the cricket Gryllus bimaculatus, a basal, intermediate germ insect (Orthoptera).
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even-skipped has gap-like, pair-rule-like, and segmental functions in the cricket Gryllus bimaculatus, a basal, intermediate germ insect (Orthoptera).

机译:在基G中生germ昆虫(直翅目)GGryllus bimaculatus中具有均匀的缺口,成对规则和分段功能。

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摘要

Developmental mechanisms of segmentation appear to be varied among insects in spite of their conserved body plan. Although the expression patterns of the segment polarity genes in all insects examined imply well conserved function of this class of genes, expression patterns and function of the pair-rule genes tend to exhibit diversity. To gain further insights into the evolution of the segmentation process and the role of pair-rule genes, we have examined expression and function of an ortholog of the Drosophila pair-rule gene even-skipped (eve) in a phylogenetically basal insect, Gryllus bimaculatus (Orthoptera, intermediate germ cricket). We find that Gryllus eve (Gb'eve) is expressed as stripes in each of the prospective gnathal, thoracic, and abdominal segments and as a broad domain in the posterior growth zone. Dynamics of stripe formation vary among Gb'eve stripes, representing one of the three modes, the segmental, incomplete pair-rule, and complete pair-rule mode. Furthermore, we find that RNAi suppression of Gb'eve results in segmentation defects in both anterior and posterior regions of the embryo. Mild depletion of Gb'eve shows a pair-rule-like defect in anterior segments, while stronger depletion causes a gap-like defect showing deletion of anterior and posterior segments. These results suggest that Gb'eve acts as a pair-rule gene at least during anterior segmentation and also has segmental and gap-like functions. Additionally, Gb'eve may be involved in the regulation of hunchback and Kruppel expression. Comparisons with eve functions in other species suggest that the Gb'eve function may represent an intermediate state of the evolution of pair-rule patterning by eve in insects.
机译:尽管昆虫的身体计划保守,但昆虫的分割发育机制似乎有所不同。尽管检查的所有昆虫中的节段极性基因的表达模式都暗示了这类基因的保守功能,但成对规则基因的表达模式和功能却倾向于表现出多样性。为了进一步了解分段过程的进化和成对规则基因的作用,我们研究了系统发育基础昆虫格里乌斯bimaculatus中均匀跳过的果蝇成对规则基因直系同源基因的表达和功能。 (直翅目,中间germ)。我们发现,Gryllus前夕(Gb'eve)在每个预期的咬合,胸和腹节中均以条纹表示,在后部生长区中以宽域表示。条带形成的动力学在Gb'eve条带之间变化,代表了三种模式之一,即分段,不完整的成对规则和完整的成对规则模式。此外,我们发现RNAi抑制Gb'eve会导致胚胎前部和后部的节段缺陷。 Gb'eve的轻度耗竭在前节显示成对规则状的缺陷,而更强的耗竭则引起间隙状缺损,显示前节和后节的缺失。这些结果表明,Gb'eve至少在前切过程中作为成对规则基因起作用,并且还具有节段和缺口样功能。另外,Gb'eve可能参与了驼背和Kruppel表达的调节。与其他物种的eve功能的比较表明,Gb'eve功能可能代表昆虫中eve的成对规则构图进化的中间状态。

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