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2011年1月20日 星期四

當不可食的獵物越多時,是否會分散捕食風險?


[圖片來源]

Rowland HM, Wiley E, Ruxton GD, Mappes J & Speed MP. (2010) When more is less: the fitness consequences of predators attacking more unpalatable prey when more are presented. Biol. Lett. 6: 732-735. doi: 10.1098/rsbl.2010.0207 [Full text]

1879年,Fritz Müller提出:在擬態行為中,當具警戒信號的獵物比例增加時,獵物的被捕食風險將會降低,因此作者以110隻雄性小雞(Gallus gallus domesticus)作為捕食者,以麵包屑加水作為人工獵物,以chloroquine phosphate作為苦味劑,並且將人工獵物進行染色,可食的(edible)為綠色,不可食的(unpalatable)為紅色,再改變不可食人工獵物的數量,檢示當不可食獵物增加時是否改變捕食風險。結果發現,當不可食獵物數量增加時(總獵物量增加),捕食者攻擊不可食獵物的次數也增加,因此不可食獵物的數量會下降,但捕食量並未改變,所以捕食風險的降低是由於獵物量增加所造成,但不可食獵物的死亡率會隨攻擊次數而逐漸降低(代表捕食者具有將色彩及味道進行關聯的學習能力),因此作者認為在自然界中當不可食獵物增加時,並不會分散捕食風險,而是因為總族群量增加使個體被捕食風險降低。

2008年4月30日 星期三

[Article: Floral mimicry]Chemical mimicry as a preadaptation


Evolution of sexual mimicry in the orchid subtribe orchidinae: the role of preadaptations in the attraction of male bees as pollinators

Florian P Schiestl1 email and Salvatore Cozzolino2 email

1Institute of Systematic Botany, University of Zürich, Zollikerstrasse 107, CH-8008 Zürich, Switzerland

2Università degli Studi di Napoli "Federico II", Dipartimento delle Scienze Biologiche, Via Foria 223, 80139 Napoli, Italy

author email corresponding author email

BMC Evolutionary Biology 2008, 8:27doi:10.1186/1471-2148-8-27


Published: 28 January 2008

Abstract

Background

Within the astonishing diversity of orchid pollination systems, sexual deception is one of the most stunning. An example is the genus Ophrys, where plants attract male bees as pollinators by mimicking female mating signals. Unsaturated hydrocarbons (alkenes) are often the key signal for this chemical mimicry. Here we investigate the evolution of these key compounds within Orchidinae by mapping their production in flowers of selected species onto their estimated phylogeny.

Results

We found that alkenes, at least in trace amounts, were present in 18 of 20 investigated species together representing 10 genera. Thus, the reconstruction of ancestral state for alkene-production showed that this is a primitive character state in Ophrys, and can be interpreted as a preadaptation for the evolution of sexual deception. Four of the investigated species, namely Ophrys sphegodes, Serapias lingua, S. cordigera, and Anacamptis papilionacea, that are pollinated primarily by male bees, produced significantly larger amounts and a greater number of different alkenes than the species pollinated either primarily by female bees or other insects.

Conclusion

We suggest that high amounts of alkenes evolved for the attraction of primarily male bees as pollinators by sensory exploitation, and discuss possible driving forces for the evolution of pollination by male bees.