魔鬼马铃薯(Echites umbellatus Jacq.

Biology Pub Date : 2024-06-07 DOI:10.3390/biology13060423
S. Koptur, A. Primoli, Imeña Valdes, Maha Nusrat
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引用次数: 0

摘要

伞形花序 Echites 的繁殖需要传粉昆虫,只有鞘蛾的口器足够长,可以取到该物种扭曲的长花管底部的花蜜。虽然植物在几个月的时间里会开出很多花,但人们在自然界中却很少看到果实。我们的问题是:(1) 植物是自交呢,还是需要其他个体的花粉才能结果和播种? (2) 非亲缘个体间的异花授粉是否比亲缘个体间的异花授粉更成功?(3)花粉和胚珠母本植株的亲缘关系如何影响坐果率、种子数量和种子质量?我们通过在七个地点采集果实、种植植株并在数年内进行人工授粉、采集和测量果实以及计算种子数量,对伞形花序的育种系统进行了研究。伞形花序(Echites umbellatus)自交不亲和,但有些个体通过自花授粉结出果实。无亲缘关系个体之间的异花授粉结出的果实最多(59%),而自花授粉结出的果实最少(9%)。亲缘个体间的异花授粉结果率介于两者之间(32%)。虽然授粉处理之间每个果实的种子数量没有显著差异,但自花授粉的果实比异花授粉的果实有活力的种子要少得多,同胞杂交的果实处于中间水平。与来自完整生境的植物相比,片段种群的自交不亲和程度更高。自交不亲和可能是该植物物种结实率低的原因;今后有必要对较小种群中自交不亲和的分解情况进行调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Self-Incompatibility in Devil’s Potato (Echites umbellatus Jacq., Apocynaceae) May Explain Why Few Flowers Set Fruit
Pollinators are needed for the reproduction of Echites umbellatus, and only sphingid moths have mouthparts long enough to reach the nectar at the bottom of the species’ long, twisted floral tube. Though plants produce many flowers over a period of several months, one observes very few fruits in nature. We asked: (1) Are plants self-compatible, or do they need pollen from another individual to set fruit and seed? (2) Are cross-pollinations between unrelated individuals more successful than crosses with relatives? (3) How does the relatedness of pollen and ovule parent plants affect fruit set, seed number, and seed quality? We investigated the breeding system of E. umbellatus by collecting fruits from seven sites, growing plants and performing hand pollinations over a period of several years, collecting and measuring fruits and counting seeds. Echites umbellatus is self-incompatible, though some individuals produce fruit by self-pollination. Cross-pollinations between unrelated individuals set the most fruit (59%), and those that were self-pollinated set the least (9%). Fruit set from cross-pollinations between related individuals was intermediate (32%). Although the number of seeds per fruit did not differ significantly among pollination treatments, fruits from self-pollinations had substantially fewer viable seeds than outcrossed fruits, with fruits from sibling crosses being intermediate. There were higher levels of self-compatibility in the fragment populations compared with plants from intact habitats. Self-incompatibility may explain why fruit set is low in this plant species; future investigation into the breakdown of self-incompatibility in smaller populations is warranted.
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