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首页> 外文期刊>Annals of Botany >Pollination and late-acting self-incompatibility in Cyrtanthus breviflorus (Amaryllidaceae): implications for seed production
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Pollination and late-acting self-incompatibility in Cyrtanthus breviflorus (Amaryllidaceae): implications for seed production

机译:短隐菊(Cyrtanthus breviflorus)(Amaryllidaceae)的授粉和后期自交不亲和性:对种子生产的影响

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Animal pollination is typically an uncertain process that interacts with self-incompatibility status to determine reproductive success. Seed set is often pollen-limited, but species with late-acting self-incompatibility (SI) may be particularly vulnerable, if self-pollen deposition results in ovule discounting. Pollination is examined and the occurrence of late-acting SI and ovule discounting assessed in Cyrtanthus breviflorus.The pollination system was characterized by observing floral visitors and assessing nectar production and spectral reflectance of flowers. To assess late-acting SI and ovule discounting, growth of self- and cross-pollen tubes, and seed set following open pollination or hand pollination with varying proportions of self- and cross-pollen, were examined.Native honeybees Apis mellifera scutellata pollinated flowers as they actively collected pollen. Most flowers (>= 70 %) did not contain nectar, while the rest produced minute volumes of dilute nectar. The flowers which are yellow to humans are visually conspicuous to bees with a strong contrast between UV-reflecting tepals and UV-absorbing anthers and pollen. Plants were self-incompatible, but self-rejection was late-acting and both self- and cross-pollen tubes penetrated ovules. Seed set of open-pollinated flowers was pollen-limited, despite pollen deposition exceeding ovule number by 6-fold. Open-pollinated seed set was similar to that of the cross + self-pollen treatment, but was less than that of the cross-pollen-only treatment.Flowers of C. breviflorus are pollinated primarily by pollen-collecting bees and possess a late-acting SI system, previously unknown in this clade of the Amaryllidaceae. Pollinators of C. breviflorus deposit mixtures of cross- and self-pollen and, because SI is late-acting, self-pollen disables ovules, reducing female fertility. This study thus contributes to growing evidence that seed production in plants with late-acting SI systems is frequently limited by pollen quality, even when pollinators are abundant.
机译:动物授粉通常是一个不确定的过程,会与自我不相容状态相互作用以确定繁殖成功。种子结实通常是受花粉限制的,但如果自花粉沉积导致胚珠减低,则具有较迟作用的自交不亲和性(SI)的物种可能特别脆弱。检查了授粉,并评估了Cyrtanthus breviflorus中后期作用的SI和胚珠发生的现象。该授粉系统的特征是观察花的访客并评估花蜜的产生和花的光谱反射率。为了评估后期作用的SI和胚珠减低,对自花粉和交叉花粉管的生长以及在开放授粉或手动授粉后使用不同比例的自花粉和交叉花粉的结实进行了研究。本地蜜蜂Apis mellifera scutellata授粉花他们积极收集花粉。大多数花(> = 70%)不包含花蜜,而其余的则产生少量的稀花蜜。对人来说是黄色的花在视觉上对蜜蜂来说是显眼的,在反射紫外线的花被和吸收紫外线的花药和花粉之间形成强烈的对比。植物是自交不亲和的,但自排斥作用较晚,自花粉和交叉花粉管都穿透胚珠。尽管花粉沉积超过胚珠数6倍,但开放授粉花的种子集受花粉限制。开放授粉的种子结实与杂交+自花粉处理相似,但比仅交花粉处理少。短孢梭菌的花主要通过花粉采集蜜蜂进行授粉,并具有较晚的授粉能力。作用的SI系统,以前在该芳科的分支中未知。短孢小花的授粉者会沉积交叉花粉和自花粉的混合物,并且由于SI的作用较晚,自花粉会使胚珠失去作用,从而降低了女性的生育能力。因此,这项研究为越来越多的证据表明,即使授粉媒介丰富,具有后效SI系统的植物的种子生产也经常受到花粉质量的限制。

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