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害虫螨类——毁灭嗜卷叶螨的夏季滞育强度受亲代和子代环境条件的影响。

Summer diapause intensity influenced by parental and offspring environmental conditions in the pest mite, Halotydeus destructor.

作者信息

Cheng Xuan, Hoffmann Ary A, Maino James L, Umina Paul A

机构信息

School of BioSciences, The University of Melbourne, Victoria 3010, Australia.

School of BioSciences, The University of Melbourne, Victoria 3010, Australia.

出版信息

J Insect Physiol. 2019 Apr;114:92-99. doi: 10.1016/j.jinsphys.2019.02.011. Epub 2019 Feb 22.

Abstract

The regulation of active and dormant stages of arthropods is critical for surviving unfavourable seasonal conditions, and for many species depends on the diapause intensity (DI). There is substantial information on diapause strategies of arthropods under winter conditions; however, most cases of summer diapause are poorly understood despite its importance in most geographic regions of the world. Here we show how complex interactions with the environment drive DI involving multiple summer diapause forms of the mite Halotydeus destructor. This invasive pest in Australia is only active in cooler months but enters diapause at the egg stage which can survive hot and dry summer conditions. Recent research points to two forms of diapause egg, a typical form with a thick chorion and a cryptic form without this chorion which is morphologically similar to non-diapause eggs. Compared with typical diapause eggs which are produced in late spring, cryptic diapause eggs could be produced together with non-diapause eggs earlier in the season with relatively cooler temperatures and shorter daylength, reflecting an advanced bet-hedging strategy. Fitness trade-offs in this strategy are investigated in this study as variability of DI of the typical and cryptic diapause forms under different environmental factors for incubating diapause eggs (temperature) and rearing parental mites (different daylength, temperature and soil moisture). With the exception of daylength, all factors impacted hatchability of diapause eggs. Higher mortality of cryptic diapause eggs indicated relatively shallower DI than typical diapause eggs, likely reflecting a fitness penalty of this bet-hedging strategy under some conditions. Hatchability of cryptic diapause eggs revealed thermal and moisture stresses have opposite and complementary effects between parental and filial generations. Although DI of filial eggs decreased in hot and dry summer conditions, parental mites reared in hotter and drier conditions increased the DI of offspring. A bet-hedging strategy involving cryptic diapause might be replaced by typical diapause under consistently stressful conditions because of higher survival, regardless of additional production costs that might be required. These findings highlight a complex set of plastic responses to summer conditions in H. destructor that undoubtedly contribute to the success of this invasive pest under a range of environments.

摘要

节肢动物活跃期和休眠期的调节对于在不利季节条件下生存至关重要,并且对许多物种而言取决于滞育强度(DI)。关于节肢动物在冬季条件下的滞育策略已有大量信息;然而,尽管夏季滞育在世界大多数地理区域都很重要,但大多数情况下人们对其了解甚少。在此,我们展示了与环境的复杂相互作用如何驱动涉及螨类有害生物毁灭嗜卷叶螨多种夏季滞育形式的滞育强度。这种澳大利亚的入侵害虫仅在较凉爽的月份活跃,但在卵期进入滞育,其卵能够在炎热干燥的夏季条件下存活。最近的研究指出有两种滞育卵形式,一种是具有厚卵壳的典型形式,另一种是没有这种卵壳的隐蔽形式,后者在形态上与非滞育卵相似。与在春末产生的典型滞育卵相比,隐蔽滞育卵可以在季节早期、温度相对较低且日照时间较短时与非滞育卵一起产生,这反映了一种提前的风险对冲策略。本研究调查了该策略中的适应性权衡,即典型和隐蔽滞育形式的滞育强度在孵化滞育卵(温度)和饲养亲代螨(不同日照时间、温度和土壤湿度)的不同环境因素下的变异性。除日照时间外,所有因素都影响滞育卵的孵化率。隐蔽滞育卵较高的死亡率表明其滞育强度比典型滞育卵相对较浅,这可能反映了这种风险对冲策略在某些条件下的适应性代价。隐蔽滞育卵的孵化率表明,热应激和水分胁迫在亲代和子代世代之间具有相反且互补的作用。尽管子代卵的滞育强度在炎热干燥的夏季条件下降低,但在更炎热干燥条件下饲养的亲代螨会增加后代的滞育强度。由于具有更高存活率,无论可能需要额外的生产成本如何,在持续压力条件下,涉及隐蔽滞育的风险对冲策略可能会被典型滞育所取代。这些发现突出了毁灭嗜卷叶螨对夏季条件的一系列复杂的可塑性反应,这无疑有助于这种入侵害虫在一系列环境下的成功。

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