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Inheritance of Diapause in Crosses between the Northernmost and the Southernmost Strains of the Asian Corn Borer Ostrinia furnacalis

机译:滞育遗传在亚洲玉米BorOstrinia furnacalis最北端和最南端菌株之间的杂交中

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摘要

The northernmost Harbin strain (N strain) of the Asian corn borer, Ostrinia furnacalis enters facultative diapause as fully grown larvae in response to short daylengths; whereas the southernmost Ledong strain (S strain) exhibits almost no diapause under the same light conditions. In the present study, we examined the inheritance of diapause induction and termination by crossing the two strains under a range of environmental conditions. The N strain showed a typical long-day response with a critical daylength of approximately15.88 h at 22°C, 15.72 h at 25°C and 15.14 h at 28°C, whereas the S strain showed a weak photoperiodic response at 22°C. The F1 progeny also showed a long-day response at 22, 25 and 28°C. However, the critical daylengths in S ♀ × N ♂ crosses were significantly longer than those in N ♀ × S ♂ crosses, indicating a sex linkage in the inheritance of diapause induction, with the male parent having more influence on the following F1 progeny. The incidence of diapause in S ♀ × N ♂ crosses was the same as in the N strain under short daylengths of 11-13 h, indicating that diapause trait is completely dominant over the non-diapause trait. The critical daylength in backcross to N was significantly longer than it was in backcross to S, showing a grandfather gene effect. Whether the inheritance of diapause fits an additive hypothesis or not was dependent on the rearing photoperiod, and the capacity for diapause was transmitted genetically in the manner of incomplete dominance. The duration of diapause for the reciprocal crosses under different diapause-terminating conditions showed different patterns of inheritance. The results in this study reveal that genetic and genetic-environmental interactions are involved in diapause induction and termination in O. furnacalis.
机译:亚洲玉米bore的最北端哈尔滨品系(N品系)因白天短而完全成年的幼虫进入兼性滞育。而最南端的乐东菌株(S菌株)在相同光照条件下几乎没有滞育。在本研究中,我们通过在一定环境条件下杂交这两种菌株来检查滞育诱导和终止的遗传。 N菌株表现出典型的长日响应,在22°C下临界日长约为15.88 h,在25°C下为15.72 h,在28°C下约为15.14 h,而S菌株在22°C下表现出较弱的光周期响应C。 F1子代在22、25和28°C下也表现出了长日响应。但是,S××N杂交的临界日长显着长于N××S杂交的临界日长,表明滞育诱导的遗传中存在性别联系,而雄性亲本对随后的F1后代影响更大。在短短的11-13 h内,S♀×N♂杂交的滞育发生率与N品系相同,表明滞育性状比非滞育性状完全占优势。与N回交的临界日长显着长于与S回交的临界日长,显示出祖父基因效应。滞育的遗传是否符合加性假设取决于饲养的光周期,而滞育的能力以不完全优势的方式遗传传递。在不同的滞育终止条件下,互作的滞育持续时间显示出不同的遗传模式。这项研究的结果表明,遗传和遗传-环境相互作用参与了O. furnacalis的滞育诱导和终止。

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