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菜粉蝶正常发育和滞育期间翅成虫盘内的多聚腺苷酸(+)mRNA代谢

Poly A (+) mRNA metabolism in wing imaginal discs during normal development and diapause in Pieris brassicae.

作者信息

Tarroux P, Berreur P

出版信息

Biochimie. 1983 Feb;65(2):105-14. doi: 10.1016/s0300-9084(83)80180-1.

Abstract

Poly A (+)mRNA synthesis was analyzed during the nymphal stage and the diapause in the wing discs of the Lepidopteran Pieris brassicae. The main events of differentiation, i.e. scale formation, adult cuticle elaboration and pigment deposition, occurred during the period studied. We only detected one phase of synthesis for poly A (+)mRNA molecules, 48-72 hours after the nymphal moult. This synthesis was found to be related to that of late proteins at 120-140 hours. Examination of mRNA metabolism in discs treated with cordycepin (3' dA) showed a decline in mRNA stability. This decline corresponded to a turn-over phase followed by a period of stabilization which preceded mRNA translation. In diapausing animals, poly A (+)mRNA metabolism was unexpectedly high, and many messengers were synthesized and rapidly destroyed. These messengers were found to be slightly heavier than the mRNAs produced during normal development, suggesting a blocking at some step in their maturation. We developed a mathematical model for mRNA metabolism which enabled us to calculate the effects of synthesis and degradation on the quantity of mRNAs, from the poly A (+)mRNA concentration and the turnover time in the mRNA pool. In addition determination phases associated with embryological events and terminal differentiation are clearly distinguished. This feature offers opportunities to investigate the commitment events which take place during the end of the larval stage and the beginning of the nymphal stage.

摘要

对鳞翅目粉纹夜蛾翅盘若虫期和滞育期间的多聚腺苷酸(Poly A)(+)mRNA合成进行了分析。在所研究的时期内发生了主要的分化事件,即鳞片形成、成虫表皮形成和色素沉积。我们仅在若虫蜕皮后48 - 72小时检测到多聚腺苷酸(Poly A)(+)mRNA分子的一个合成阶段。发现这种合成与120 - 140小时时晚期蛋白质的合成有关。用虫草素(3' - dA)处理翅盘后的mRNA代谢检测显示mRNA稳定性下降。这种下降对应于一个周转阶段,随后是在mRNA翻译之前的一段稳定期。在滞育动物中,多聚腺苷酸(Poly A)(+)mRNA代谢意外地高,许多信使RNA被合成并迅速降解。发现这些信使RNA比正常发育期间产生的mRNA略重,这表明在其成熟的某个步骤中存在阻断。我们建立了一个mRNA代谢的数学模型,该模型使我们能够根据多聚腺苷酸(Poly A)(+)mRNA浓度和mRNA池中的周转时间来计算合成和降解对mRNA数量的影响。此外,与胚胎学事件和终末分化相关的测定阶段也得到了明确区分。这一特征为研究幼虫期结束和若虫期开始期间发生的定向事件提供了机会。

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