首页> 外文期刊>Journal of Insect Physiology >Physiological approach to explain the ecological success of a~superclones' in aphids: Interplay between detoxification enzymes, metabolism and fitness
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Physiological approach to explain the ecological success of a~superclones' in aphids: Interplay between detoxification enzymes, metabolism and fitness

机译:解释超级克隆在蚜虫中的生态成功的生理方法:解毒酶,代谢和适应性之间的相互作用

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a~Superclones' are predominant and time-persistent genotypes, exhibiting constant fitness across different environments. However, causes of this ecological success are still unknown. Therefore, we studied the physiological mechanisms that could explain this success, evaluating the effects of wheat chemical defences on detoxification enzymes [cytochrome P450 monooxygenases (P450), glutathione S-transferases (GST), esterases (EST)], standard metabolic rate (SMR), and fitness-related traits [adult body mass and intrinsic rate of increase (r m )] of two a~superclones' (Sa1 and Sa2) of the grain aphid, Sitobion avenae. Additionally, we compared a~superclones' with a less-frequent genotype (Sa46). Genotypes were reared on three wheat cultivars with different levels of hydroxamic acids (Hx; wheat chemical defences). Detoxification enzymes and SMR did not differ between wheat hosts. However, GST and EST were different between a~superclones' and Sa46, while Sa1 showed a higher SMR than Sa2 or Sa46 (p =0.03). Differences between genotypes were found for r m , which was higher for Sa1 than for Sa2 or Sa46. For all cases, genotype-host interactions were non-significant, except for aphid body mass. In conclusion, a~superclones' exhibit a broad host range, flat energetic costs for non-induced detoxification enzymes, and low variation in their reproductive performance on different defended hosts. However, physiological specialization of a~superclones' that could explain their ecological success was not evident in this study.
机译:a〜Superclones'是占主导地位和时间持久的基因型,在不同环境中表现出恒定的适应性。然而,这种生态学成功的原因仍然未知。因此,我们研究了可以解释这一成功的生理机制,评估了小麦化学防御对排毒酶[细胞色素P450单加氧酶(P450),谷胱甘肽S-转移酶(GST),酯酶(EST)],标准代谢率(SMR)的影响。 ),以及谷物蚜虫(Sitobion avenae)的两个a〜超克隆(Sa1和Sa2)的健身相关性状[成人体重和内在增长率(rm)]。另外,我们将“超级克隆”和一个不太常见的基因型(Sa46)进行了比较。在具有不同水平异羟肟酸(Hx;小麦化学防御力)的三个小麦品种上培育基因型。小麦宿主之间的解毒酶和SMR没有差异。然而,超克隆和Sa46之间的GST和EST不同,而Sa1的SMR高于Sa2或Sa46(p = 0.03)。发现r m的基因型之间存在差异,Sa1的基因型高于Sa2或Sa46。对于所有情况,除蚜虫体重外,基因型与宿主的相互作用均不显着。总之,超克隆展示了广泛的宿主范围,对非诱导解毒酶的能量消耗较低,并且它们在不同防御宿主上的繁殖性能差异很小。然而,在本研究中,α超克隆的生理学专业化并不能解释其生态学成功。

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