首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Mountain Pine Beetle Seasonal Timing and Constraints to Bivoltinism (A Comment on Mitton and Ferrenberg, 'Mountain Pine Beetle Develops an Unprecedented Summer Generation in Response to Climate Warming')
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Mountain Pine Beetle Seasonal Timing and Constraints to Bivoltinism (A Comment on Mitton and Ferrenberg, 'Mountain Pine Beetle Develops an Unprecedented Summer Generation in Response to Climate Warming')

机译:山松甲虫的季节性时机和对两性主义的制约(评论米顿和费伦贝格,“山松甲虫发展出前所未有的夏季代以应对气候变暖”)

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Mountain pine beetle tree colonization typically occurs in July and August, with completion of a generation one (univoltinism) or two (semivoltinism) years later. In a 2012 publication, Mitton and Ferrenberg suggested that climate change resulted in an unprecedented generation between June and September (a summer generation), with a concomitant shift to two generations in one year (bivoltinism). Although summer generations are not uncommon in this species, completion of a second generation across winter, between September and June, would be required for bivoltinism, a phenomenon not previously observed. Mitton and Ferrenberg showed that a summer generation can occur, but they failed to adequately track cohorts and provided no compelling evidence for bivoltinism. We demonstrate that a winter generationand hence bivoltinismwould have been physiologically impossible at the high-elevation site used in Mitton and Ferrenberg due to lower thermal developmental thresholds. The mountain pine beetle is indeed being influenced by climate change. To address the challenges of future population outbreaks of this significant tree mortality agent, however, it is imperative to consider evolved, thermally dependent traits that serve to maintain seasonality.
机译:山松甲虫树定植通常发生在七月和八月,并在第一年(单电压)或第二年(半电压)完成。 Mitton和Ferrenberg在2012年的出版物中指出,气候变化导致6月至9月之间出现了空前的一代(夏季一代),并伴随着一年内向两代转变(bivoltinism)。尽管在这个物种中夏季世代并不少见,但双伏论认为需要在冬季完成第二代,即9月至6月之间,这是以前没有发现的现象。米顿(Mitton)和费伦贝格(Ferrenberg)表明可以发生夏季世代,但他们未能充分追踪同类人群,也没有提供有力的证据证明两性主义。我们证明,由于较低的热发育阈值,在米顿和费伦贝格使用的高海拔地区,冬季一代以及因此出现的两性恋在生理上是不可能的。确实,山松甲虫正受到气候变化的影响。然而,为了应对这种重要的树木死亡因子的未来种群暴发的挑战,必须考虑有助于维持季节性的进化的,与热有关的性状。

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