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首页> 外文期刊>Evolution: International Journal of Organic Evolution >Evolutionary endocrinology of juvenile hormone esterase: Functional relationship with wing polymorphism in the cricket, Gryllus firmus
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Evolutionary endocrinology of juvenile hormone esterase: Functional relationship with wing polymorphism in the cricket, Gryllus firmus

机译:幼年激素酯酶的进化内分泌学:与,,翼果的翼多态性的功能关系

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摘要

The existence, nature, and physiological consequences of genetic variation for juvenile hormone esterase (JHE) activity was studied in the wing-polymorphic cricket, Gryllus firmus. Hemolymph (blood) JHE activity was sixfold lower in nascent short-winged (SW) females, relative to nascent long-winged (LW) females, during the last juvenile stadium (stage). Morph-associated genetic variation for JHE activity had two causes, variation in loci: (1) regulating whole-organism enzyme activity; and (2) controlling the degree to which JHE is secreted into the blood. Reduced JHE activity in nascent SW-selected individuals was associated with reduced in vivo juvenile hormone catabolism. This suggests that variation in JHE activity during juvenile development may have important physiological consequences with respect to the regulation of blood levels of juvenile hormone and consequent specification of wing morph. This is the first definitive demonstration of genetic variation for hormonal metabolism in any insect and a genetic association between hormone metabolism and the subsequent expression of morphological variation (wing morph). However, we have not yet firmly established whether these associations represent causal relationships. In contrast to the clear association between JHE activity and wing morph development, we observed no evidence indicating that variation in JHE activity plays any direct or indirect role in causing the dramatic differences in ovarian growth between adult wing morphs. Variation in JHE activity also does not appear to be important in coordinating the development of wing morph with the subsequent expression of reproductive differences between adult morphs. Finally, genetic variation for the developmental profiles of JHE activity during juvenile and adult stages are remarkably similar in three Gryllus species. This suggests that genetic correlations between JHE activities during different periods of development, which underlie these activity profiles, have been conserved since the divergence of the three Gryllus species.
机译:研究了机翼多态坚硬的ry的遗传变异对少年激素酯酶(JHE)活性的存在,性质和生理后果。在最后一个少年体育场内(阶段),新生的短翅(SW)雌性的血淋巴(血液)JHE活性比新生的长翅(LW)雌性低六倍。 JHE活性的与形态相关的遗传变异有两个原因,即基因座变异:(1)调节全生物酶活性; (2)控制JHE分泌到血液中的程度。初选SW的个体JHE活性降低与体内少年激素分解代谢降低有关。这表明,在青少年发育过程中,JHE活性的变化可能对血液中幼体激素水平的调节和随之而来的机翼形态规范具有重要的生理后果。这是任何昆虫体内激素代谢的遗传变异的首次明确证明,也是激素代谢与随后的形态变异表达(翼形)之间的遗传关联。但是,我们尚未确定这些关联是否代表因果关系。与JHE活性和机翼形态发育之间的明确关联相反,我们没有观察到任何证据表明JHE活性的变化在导致成年机翼形态之间卵巢生长的显着差异中起任何直接或间接的作用。 JHE活性的变化在协调机翼形态的发育与成年形态之间生殖差异的后续表达方面似乎也不重要。最后,在三个幼龄种群中,JHE活性在青少年和成年阶段的发育概况的遗传变异非常相似。这表明自三个灰嘴猴物种的分化以来,在不同发育时期的JHE活性之间的遗传相关一直是保守的,这些相关性是这些活性谱的基础。

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