Barczak-Brzyżek A K, Kiełkiewicz M, Gawroński P, Kot K, Filipecki M, Karpińska B
Warsaw University of Life Sciences - SGGW, Warsaw, Poland.
Centre for Plant Sciences, School of Biology, Faculty of Biological Sciences, University of Leeds, Leeds, UK.
Exp Appl Acarol. 2017 Oct;73(2):177-189. doi: 10.1007/s10493-017-0187-x. Epub 2017 Nov 8.
Little is known about how plants deal with arthropod herbivores under the fluctuating light intensity and spectra which occur in natural environments. Moreover, the role of simultaneous stress such as excess light (EL) in the regulation of plant responses to herbivores is poorly characterized. In the current study, we focused on a mite-herbivore, specifically, the two-spotted spider mite (TSSM), which is one of the major agricultural pests worldwide. Our results showed that TSSM-induced leaf damage (visualized by trypan blue staining) and oviposition rate (measured as daily female fecundity) decreased after EL pre-treatment in wild-type Arabidopsis plants, but the observed responses were not wavelength specific. Thus, we established that EL pre-treatment reduced Arabidopsis susceptibility to TSSM infestation. Due to the fact that a portion of EL energy is dissipated by plants as heat in the mechanism known as non-photochemical quenching (NPQ) of chlorophyll fluorescence, we tested an Arabidopsis npq4-1 mutant impaired in NPQ. We showed that npq4-1 plants are significantly less susceptible to TSSM feeding activity, and this result was not dependent on light pre-treatment. Therefore, our findings strongly support the role of light in plant defence against TSSM, pointing to a key role for a photo-protective mechanism such as NPQ in this regulation. We hypothesize that plants impaired in NPQ are constantly primed to mite attack, as this seems to be a universal evolutionarily conserved mechanism for herbivores.
关于植物在自然环境中波动的光照强度和光谱条件下如何应对节肢动物食草动物,人们了解甚少。此外,诸如强光(EL)等同时存在的胁迫在调节植物对食草动物反应中的作用也鲜有研究。在本研究中,我们聚焦于一种螨类食草动物,即二斑叶螨(TSSM),它是全球主要的农业害虫之一。我们的结果表明,在野生型拟南芥植株中,经强光预处理后,二斑叶螨诱导的叶片损伤(通过台盼蓝染色可视化)和产卵率(以每日雌虫繁殖力衡量)降低,但观察到的反应并非波长特异性的。因此,我们确定强光预处理降低了拟南芥对二斑叶螨侵染的易感性。由于一部分强光能量在被称为叶绿素荧光非光化学猝灭(NPQ)的机制中以热量形式被植物耗散,我们测试了NPQ功能受损的拟南芥npq4 - 1突变体。我们发现npq4 - 1植株对二斑叶螨取食活动的易感性显著降低,且这一结果不依赖于光照预处理。因此,我们的研究结果有力地支持了光照在植物抵御二斑叶螨中的作用,表明诸如NPQ这样的光保护机制在这一调节过程中起关键作用。我们推测NPQ功能受损的植物持续处于对螨类攻击的预激发状态,因为这似乎是一种针对食草动物的普遍进化保守机制。