Arnold Paige M, Michaels Helen J
Department of Biological Sciences, Bowling Green State University, Bowling Green, Ohio 43403 USA.
Appl Plant Sci. 2017 Jun 21;5(6). doi: 10.3732/apps.1600148. eCollection 2017 Jun.
Understanding floral resources is vital for restoring pollinators in habitats affected by anthropogenic development and climate change. As the primary adult food, nectar can limit butterfly longevity and reproduction. For pollinator restoration, it would therefore be useful to examine nectar resources. However, because many flowers preferred by butterflies are too small for microcapillary sampling and the potential for nectar contamination can make accurate measurement difficult, we developed a modified centrifugation method to extract and separate nectar and pollen.
We sampled nectar from 19 forbs using a glass wool filter to exclude potentially contaminating pollen during centrifugation. To minimize costs, we measured sugar concentration by refractometry and simple ninhydrin tests for amino acids and improved test accuracy by subsequent image analysis. Artificial nectars were used to verify the new techniques.
This method eliminated pollen from samples, while only slightly increasing sugar concentrations. Some amino acids were lost during centrifugation, but only samples with high concentrations exhibited substantial loss. We found significant differences in nectar quality among species, as well as an unexpected inverse relationship between amino acid and sugar concentrations.
This modified centrifugation technique is an efficient, less damaging, inexpensive approach for collecting nectar from small flowers while eliminating pollen contamination, and will facilitate restoration of declining pollinators and thereby the plants they service.
了解花卉资源对于在受人为发展和气候变化影响的栖息地恢复传粉者至关重要。花蜜作为成年传粉者的主要食物,会限制蝴蝶的寿命和繁殖。因此,对于传粉者的恢复而言,研究花蜜资源会很有帮助。然而,由于许多蝴蝶偏爱的花朵太小,无法进行微毛细管采样,而且花蜜污染的可能性会使精确测量变得困难,我们开发了一种改良的离心法来提取和分离花蜜与花粉。
我们使用玻璃棉过滤器从19种草本植物中采集花蜜,以在离心过程中排除潜在的污染花粉。为了尽量降低成本,我们通过折射法测量糖浓度,并使用茚三酮简单测试氨基酸,随后通过图像分析提高测试准确性。使用人工花蜜来验证新技术。
该方法消除了样本中的花粉,同时仅略微提高了糖浓度。一些氨基酸在离心过程中有所损失,但只有高浓度样本出现了大量损失。我们发现不同物种之间花蜜质量存在显著差异,以及氨基酸和糖浓度之间存在意外的反比关系。
这种改良的离心技术是一种高效、破坏性较小且廉价的方法,用于从小花中采集花蜜,同时消除花粉污染,并将有助于恢复数量减少的传粉者,进而恢复它们所服务的植物。