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首页> 外文期刊>Journal of genetics >The costae presenting in high-temperature-induced vestigial wings of Drosophila: implications for anterior wing margin formation
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The costae presenting in high-temperature-induced vestigial wings of Drosophila: implications for anterior wing margin formation

机译:果蝇在果蝇高温诱导的残余翅中出现:对前翅边缘形成的影响

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It has long been noted that high temperature produces great variation in wing forms of the vestigial mutant of Drosophila. Most of the wings have defects in the wing blade and partially formed wing margin, which are the result of autonomous cell death in the presumptive wing blade or costal region of the wing disc. The vestigial gene ($vg$) and the interaction of Vg protein with other gene products are well understood. With this biochemical knowledge, reinvestigations of the high-temperature-induced vestigial wings and the elucidation of the molecular mechanism underlying the large-scale variation of the wing forms may provide insight into further understanding of development of the wing of Drosophila. As a first step of such explorations, I examined high-temperature-induced (29?°C) vestigial wings. In the first part of this paper, I provide evidences to show that the proximal and distal costae in these wings exhibit regular and continuous variation, which suggests different developmental processes for the proximal and distal costal sections. Judging by the costae presenting in the anterior wing margin, I propose that the proximal and distal costal sections are independent growth units. The genes that regulate formation of the distal costal section also strongly affect proliferation of cells nearby; however, the same phenomenon has not been found in the proximal costal section. The distal costal section seems to be an extension of the radius vein. vestigial, one of the most intensely researched temperature-sensitive mutations, is a good candidate for the study of marginal vein formation. In the second part of the paper, I regroup the wing forms of these wings, chiefly by comparison of venation among these wings, and try to elucidate the variation of the wing forms according to the results of previous work and the conclusions reached in the first part of this paper, and provide clues for further researches.
机译:长期以来,人们一直注意到高温会导致果蝇残留突变体的翅形发生很大变化。大多数机翼在机翼叶片中都有缺陷,并且部分形成了机翼边缘,这是在推测的机翼叶片或翼片的肋骨区域中自主细胞死亡的结果。残留基因($ vg $)和Vg蛋白与其他基因产物的相互作用是众所周知的。有了这些生化知识,对高温诱导的残余翅的重新研究以及对翅形大范围变化背后的分子机制的阐明,可能会为深入了解果蝇翅的发展提供洞察力。作为此类探索的第一步,我检查了高温引起的(29°C)残留翼。在本文的第一部分中,我提供了证据显示这些翼中的近端和远端肋骨呈现规则且连续的变化,这表明近端和远端肋骨部分的发育过程不同。从前翼缘的肋骨来看,我建议近端和远端肋骨部分是独立的生长单位。调节远端肋节形成的基因也强烈影响附近细胞的增殖。但是,在近端肋骨部分尚未发现相同的现象。远端肋段似乎是the静脉的延伸。痕迹是研究最深入的温度敏感性突变之一,是研究边缘静脉形成的良好候选者。在本文的第二部分中,我主要通过比较这些机翼之间的通风性来重新组合这些机翼的机​​翼形式,并尝试根据先前工作的结果和在第一篇中得出的结论来阐明机翼形式的变化。本文的一部分,并为进一步的研究提供线索。

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