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改变烟草的昼夜节律不会改变其对专食性食草动物烟草天蛾的抗性。

Shifting Nicotiana attenuata's diurnal rhythm does not alter its resistance to the specialist herbivore Manduca sexta.

作者信息

Herden Jasmin, Meldau Stefan, Kim Sang-Gyu, Kunert Grit, Joo Youngsung, Baldwin Ian T, Schuman Meredith C

机构信息

Department of Molecular Ecology, Max Planck Institute for Chemical Ecology, Hans-Knoell-Strasse 8, 07745 Jena, Germany.

Department of Biochemistry, Max Planck Institute for Chemical Ecology, Hans-Knoell-Strasse 8, 07745 Jena, Germany.

出版信息

J Integr Plant Biol. 2016 Jul;58(7):656-68. doi: 10.1111/jipb.12458. Epub 2016 Feb 23.

Abstract

Arabidopsis thaliana plants are less resistant to attack by the generalist lepidopteran herbivore Trichoplusia ni when plants and herbivores are entrained to opposite, versus identical diurnal cycles and tested under constant conditions. This effect is associated with circadian fluctuations in levels of jasmonic acid, the transcription factor MYC2, and glucosinolate contents in leaves. We tested whether a similar effect could be observed in a different plant-herbivore system: the wild tobacco Nicotiana attenuata and its co-evolved specialist herbivore, Manduca sexta. We measured larval growth on plants under both constant and diurnal conditions following identical or opposite entrainment, profiled the metabolome of attacked leaf tissue, quantified specific metabolites known to reduce M. sexta growth, and monitored M. sexta feeding activity under all experimental conditions. Entrainment did not consistently affect M. sexta growth or plant defense induction. However, both were reduced under constant dark conditions, as was M. sexta feeding activity. Our data indicate that the response induced by M. sexta in N. attenuata is robust to diurnal cues and independent of plant or herbivore entrainment. We propose that while the patterns of constitutive or general damage-induced defense may undergo circadian fluctuation, the orchestration of specific induced responses is more complex.

摘要

当植物和食草动物被同步到相反的昼夜周期(而非相同的昼夜周期)并在恒定条件下进行测试时,拟南芥植株对多食性鳞翅目食草动物烟芽夜蛾的抵抗力较弱。这种效应与茉莉酸水平、转录因子MYC2以及叶片中芥子油苷含量的昼夜波动有关。我们测试了在不同的植物 - 食草动物系统中是否能观察到类似的效应:野生烟草渐狭叶烟草及其共同进化的专食性食草动物烟草天蛾。我们测量了在相同或相反同步处理后,在恒定和昼夜条件下烟草天蛾幼虫在植株上的生长情况,分析了受攻击叶片组织的代谢组,对已知会降低烟草天蛾生长的特定代谢物进行了定量,并监测了在所有实验条件下烟草天蛾的取食活动。同步处理并未始终如一地影响烟草天蛾的生长或植物防御诱导。然而,在持续黑暗条件下,烟草天蛾的生长、植物防御诱导以及取食活动均有所降低。我们的数据表明,烟草天蛾在渐狭叶烟草中诱导的反应对昼夜线索具有较强的适应性,且与植物或食草动物的同步处理无关。我们提出,虽然组成型或一般损伤诱导的防御模式可能会经历昼夜波动,但特定诱导反应的调控更为复杂。

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