首页> 外文期刊>Biological Conservation >Reproductive biology of three sympatric endangered plants endemic to Florida scrub
【24h】

Reproductive biology of three sympatric endangered plants endemic to Florida scrub

机译:三种佛罗里达州特有的同胞濒危植物的生殖生物学

获取原文
获取原文并翻译 | 示例
       

摘要

We investigated the reproductive biology of three plants endemic to rosemary scrub habitats on the Lake Wales Ridge of Florida, USA. We used hand-pollination experiments and observations of flowers and their insect visitors to determine their mating systems and pollination. Fruit or seed set after self pollination was 94, 97, and 8% of fruit or seed set after cross pollination in Eryngium cuneifolium (Apiaceae), Hypericum cumulicola (Hypericaceae), and Liatris ohlingerae (Asteraceae) respectively, indicating that the first two are self-compatible and the last is obligately outcrossing. All three depend on insects for seed production (4-7% fruit or seed set without insects). Diverse insects visit flowers of E. cuneifolium (101 species recorded), whereas L. ohlingerae is visited predominantly by butterflies and H. cumulicola by one genus of bees (Dialictus, Halictidae). Our data indicate pollinator visitation does not currently limit seed production in E. cuneifolium or H. cumulicola, but does in L. ohlingerae. Despite the features they share (habit, habitat, disturbance regime), we found unique aspects of these species' reproductive biology yielding unique risks to population viability. We suggest that. multispecies recovery plans must consider several aspects of the biology of species with superficial similarities to be successful.
机译:我们调查了三种特有的迷迭香灌木植物在美国佛罗里达州威尔士湖脊上的繁殖生物学。我们使用手工授粉实验以及对花朵及其昆虫来访者的观察来确定它们的交配系统和授粉。自花授粉后结实的果实或种子的结实率分别为楔形刺桐(Eryngium cuneifolium)(尖齿科),斜纹金丝桃属(Hypericaceae)和Li草(Liatris ohlingerae)(菊科)的分别为94、97和8%。自相容的,最后一个是强制杂交的。这三者都依靠昆虫来生产种子(4-7%的果实或没有昆虫的结实种子)。各种各样的昆虫访问了库埃森菌的花(记录到101种),而一类蜜蜂(Dialictus,Halictidae)则主要以蝴蝶感染了OHlingerae,并以积雪草(H. cumulicola)为主。我们的数据表明,传粉者探访目前并不限制库尼肠球菌或积雪草中的种子生产,而在猪油菌中却如此。尽管它们具有共同的特征(栖息地,栖息地,干扰系统),但我们发现这些物种的生殖生物学的独特方面对种群生存力产生了独特的风险。我们建议。多物种恢复计划必须考虑具有表面相似性的物种生物学的几个方面才能成功。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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