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. 2012 Oct;110(5):953-8.
doi: 10.1093/aob/mcs165. Epub 2012 Jul 31.

Rain pollination provides reproductive assurance in a deceptive orchid

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Rain pollination provides reproductive assurance in a deceptive orchid

Xu-Li Fan et al. Ann Bot. 2012 Oct.

Abstract

Background and aims: Abiotic pollination by wind or water is well established in flowering plants. In some species pollination by rain splashes, a condition known as ombrophily, has been proposed as a floral strategy. However, evidence for this type of abiotic pollination has remained controversial and many reported cases have subsequently been shown to be false. This study investigates ombrophily in the deceptive orchid Acampe rigida to determine the mechanism by which this species is able to maintain high fecundity, despite flowering during the rainy season in south-west China when pollinators are scarce.

Methods: The floral mechanisms promoting rain pollination in A. rigida were observed and described in detail. Controlled pollination experiments and observations of floral visitors were conducted. A field experiment using rain shelters at 14 sites in Guangxi, south-west China, evaluated the contribution of rain pollination to fruit-set.

Key results: During rainfall, raindrops physically flicked away the anther cap exposing the pollinarium. Raindrops then caused pollinia to be ejected upwards with the strap-like stipe pulling them back and causing them to fall into the stigmatic cavity, resulting in self-pollination. Neither flower nor pollen function were damaged by water. Although A. rigida is self-compatible, it is incapable of autonomous self-pollination without the assistance of rain splashes. The results of the rain-sheltering experiment indicated that rain pollination contributed substantially to increasing fruit-set, although there was variation among sites in the intensity of this effect.

Conclusions: A. rigida flowers during the rainy season, when pollinators are scarce, and ombrophily functions to provide reproductive assurance without compromising opportunities for outcrossing.

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Figures

Fig. 1.
Fig. 1.
Reproductive features of the deceptive orchid Acampe rigida. (A) Inflorescence with vertically orientated, bowl-shaped, spirally arranged flowers. (B) Infructescence illustrating high fruit-set. (C) Flower with fleshy sepals and petals. (D) The structure of the pollinarium and stigma: P, pollinia; St, stipe; V, viscidium; R, rostellum; S, stigmatic cavity.
Fig. 2.
Fig. 2.
Mean fruit-set of Acampe rigida flowers following three pollination treatments: supplemental cross- and self-pollination and open-pollination, conducted in 2009 and 2010. The results were not significant between years and are therefore combined (see Results). The least-squares means are back-transformed and are associated with asymmetric standard errors.

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