...
首页> 外文期刊>Botanical Journal of the Linnean Society >A ballistic pollen dispersal system influences pollination success and fruit-set pattern in pollinator-excluded environments for the endangered species Synaphea stenoloba (Proteaceae).
【24h】

A ballistic pollen dispersal system influences pollination success and fruit-set pattern in pollinator-excluded environments for the endangered species Synaphea stenoloba (Proteaceae).

机译:弹道花粉散布系统会影响到濒危物种剑兰(Senaphea stenoloba)的传粉媒介排除环境中的授粉成功和坐果模式。

获取原文
获取原文并翻译 | 示例

摘要

The critically endangered Synaphea stenoloba (Proteaceae) has numerous scentless flowers clustered in dense inflorescences and deploys a ballistic pollen ejection mechanism to release pollen. We examined the hypothesis that active pollen ejection and flowering patterns within an inflorescence influence the reproductive success (i.e. fruit formation) of individual flowers within or among inflorescences of S. stenoloba in a pollinator-excluded environment. Our results showed that: (1) no pollen grains were observed deposited on the stigma of their own flower after the pollen ejection system was manually activated, indicating self-pollination within an individual flower is improbable in S. stenoloba; (2) fruit set in the indoor open pollination treatment and the inflorescence-closed pollination treatment indicated that S. stenoloba is self-compatible and pollen ejection can potentially result in inter-floral pollination success; (3) fruit set in the inflorescence-closed pollination treatment was significantly lower than that of indoor open pollination, indicating within- and between-flower pollination events in an inflorescence are most likely limited, with pollination between inflorescences providing the highest reproductive opportunity; and (4) analysis of the spatial distribution of cumulative fruit set on inflorescences showed that pollen could reach any flower within an inflorescence and there was no functional limitation on seed set among flowers located at various positions within the inflorescence. These data suggest that the pollen ejection mechanism in S. stenoloba can enhance inter-plant pollination in pollinator-excluded environments and may suggest adaptation to pollinator scarcity attributable to habitat disturbance or competition for pollinators in a diverse flora.
机译:极度濒临灭绝的剑突(Proteaceae)有许多无味的花,簇生成密集的花序,并采用弹道花粉喷射机制释放花粉。我们检查了以下假设:在授粉媒介除外的环境中,花序中的主动花粉射出和开花方式会影响stenoloba花序中或之中的单个花的繁殖成功(即果实形成)。我们的结果表明:(1)手动激活花粉喷射系统后,未观察到花粉粒沉积在其自身花朵的柱头上,这表明在S. stenoloba中不可能在单个花中进行自花授粉; (2)在室内开放授粉处理和花序封闭授粉处理中结实的果实表明S. stenoloba是自溶的,花粉排出可能导致花间授粉成功; (3)花序封闭授粉处理的坐果显着低于室内开放授粉,表明花序中的花内和花间授粉事件极有可能受到限制,花序之间的授粉提供了最高的繁殖机会; (4)对花序中累积结实的空间分布的分析表明,花粉可以到达花序中的任何花,并且在花序中不同位置的花中的种子结实没有功能上的限制。这些数据表明,S。stenoloba中的花粉排出机制可以在授粉媒介除外的环境中增强植物间的授粉,并且可能暗示对因栖息地干扰或不同种类的传粉媒介竞争而引起的授粉媒介稀缺性的适应。

著录项

相似文献

  • 外文文献
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号