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首页> 外文期刊>Plant Ecology >Influence of environmental variation on the pollination of the ambophilous sedge Rhynchospora ciliata (Cyperaceae)
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Influence of environmental variation on the pollination of the ambophilous sedge Rhynchospora ciliata (Cyperaceae)

机译:环境变异对痰葡萄酒rhynchospora ciliata授粉的影响(Cyperaceae)

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摘要

In typically anemophilous families, there are species, such as Rhynchospora ciliata (Cyperaceae), in which both wind and insects have been registered as pollen vectors (ambophily). However, the contribution of each vector to pollination of ambophilous species can change under different environmental conditions. Therefore, this study aimed to determine the primary pollination system, abiotic or biotic, of R. ciliata, comparing wet and dry seasons. We tested the following hypotheses: (1) in dry months, wind is the main pollen vector of R. ciliata; (2) in wet months, insects will contribute more to the reproductive success of R. ciliata and compensate for low fruit formation by the abiotic vector. Our hypothesis was not confirmed. We found that higher wind speed can favor pollination by wind in R. ciliata even in wetter months. Because insects were less susceptible to environmental variation, they contributed more in dry months when wind speed was low, thus compensating for lower fruit set by wind. High rainfall and humidity can result in faster settling of pollen grains suspended in the air; however, rainfall does not prevent pollination by wind. Since individuals of R. ciliata are located near the edge of the forest, grouped quite close together, and as the inflorescence is located at the apex of the floral scape, wind can act as pollen vector and the inhibiting effects of rainfall can be minimized. The contribution of each pollen vector is important to the reproductive success of R. ciliata and the effectiveness of wind varies with local environmental conditions.
机译:通常,中毒的家族,有物种,如rhynchospora ciliata(cypetaceae),其中风和昆虫已被注册为花粉载体(植腿)。然而,每个载体对肺部授粉的贡献可以在不同的环境条件下改变。因此,本研究旨在确定R.Ciliata的初级授粉系统,非生物或生物,比较潮湿和干燥的季节。我们测试了以下假设:(1)在干燥的月份中,风是R. Ciliata的主要花粉载体; (2)在潮湿的月份中,昆虫将有助于R.Ciliata的生殖成功,并补偿非生物载体的低果实形成。我们的假设没有得到证实。我们发现,即使在潮湿的月份,R. Ciliata的风较高的风速也能有利于风授粉。因为昆虫易受环境变异的影响,因此当风速低时,它们在干燥的月份中贡献了更多,从而补偿了由风的下水果。降雨量和湿度降雨量可导致悬浮在空中的花粉晶粒更快;然而,降雨不会阻止风授粉。由于R. Ciliata的个人位于森林边缘附近,因此将相当近距离进行分组,随着花序位于花卉景观的顶点,风可以充当花粉载体,并且可以最小化降雨的抑制作用。每个花粉载体的贡献对R.Ciliata的生殖成功很重要,风的有效性因当地的环境条件而异。

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