首页> 外文期刊>Soil Biology & Biochemistry >Olfactory cues associated with fungal grazing intensity and secondary metabolite pathway modulate Collembola foraging behaviour
【24h】

Olfactory cues associated with fungal grazing intensity and secondary metabolite pathway modulate Collembola foraging behaviour

机译:与真菌放牧强度和次级代谢产物途径相关的嗅觉信号调节Collembola的觅食行为

获取原文
获取原文并翻译 | 示例
           

摘要

Fungal secondary compounds play an important role for springtail food choice and fitness. Little is known, however, on the role of olfactory cues for Collembola foraging behaviour and whether Collembola can olfactorily perceive volatiles associated with fungal secondary metabolite pathways. We investigated the ability of three species of Collembola (Folsomia candida, Heteromurus nitidus and Supraphorura furcifera) to use olfactory cues for discriminating between fungi of different phylogenetic affiliation (Aspergillus nidulans, Cladosporium cladosporioides, Ascomycota; Laccaria bicolor, Basidiomycota) and toxicity using fungal strains of A. nidulans with reduced secondary metabolite production. Furthermore, we studied if olfactory cues from hyphae injured by grazing affect the foraging behaviour of Collembola. We hypothesized that (i) Collembola are able to olfactorily perceive and respond to fungal species/strains with different secondary metabolite pathways and that (ii) Collembola are able to sense fungal mycelia injured by grazing. Each of the Collembola species studied preferentially oriented their foraging towards fungal strains of A. nidulans with suppressed secondary metabolites, and in particular towards the mutant where the global regulator for secondary metabolites (Delta laeA) has been silenced. Two of the three Collembola species (H. nitidus and S. furcifera) sensed olfactory cues of previously grazed fungi and moved towards ungrazed fungi, however, the response of S. furcifera was restricted to fungi extensively exposed to grazing (5 days) suggesting that the response varies between Collembola species.Overall, the results support the first and second hypothesis indicating that Collembola (1) are able to olfactorily differentiate fungi of different toxicity and move towards more palatable fungi, and (2) showed a lesser preference for fungi previously exposed to grazing
机译:真菌次生化合物对跳尾食物的选择和健身起着重要作用。但是,关于嗅觉线索对Collembola觅食行为的作用以及Collembola是否能嗅觉与真菌次生代谢途径相关的挥发物知之甚少。我们调查了Collembola(念珠菌,念珠菌和Supraphorura furcifera)的三种物种使用嗅觉线索区分不同系统发育隶属真菌(构巢曲霉,Cladosporium cladosporioides,使用双孢霉属和白色孢子的毒性)的能力。构巢曲霉的次级代谢产物产生减少。此外,我们研究了放牧受伤的菌丝的嗅觉信号是否会影响Collembola的觅食行为。我们假设(i)Collembola能够嗅觉感知并响应具有不同次生代谢途径的真菌物种/菌株,并且(ii)Collembola能够感知放牧伤害的真菌菌丝体。所研究的每个Collembola物种都优先将其觅食导向具有次级代谢产物被抑制的构巢曲霉的真菌菌株,特别是针对突变体,其中次级代谢产物的全局调节剂(Delta laeA)已被沉默。三种Collembola物种(H. nitidus和S. furcifera)感觉到以前放牧的真菌的嗅觉提示并移向未真菌化的真菌,但是,S。furcifera的反应仅限于广泛暴露于放牧的真菌(5天),这表明总体而言,结果支持第一个假设和第二个假设,表明Collembola(1)能够嗅觉区分具有不同毒性的真菌并趋向于更可口的真菌,并且(2)先前对真菌的偏好较低暴露于放牧

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号