Wizenberg Sydney B, Weis Arthur E, Campbell Lesley G
Department of Chemistry and Biology Ryerson University Toronto Ontario Canada.
Department of Ecology and Evolutionary Biology University of Toronto Toronto Ontario Canada.
Appl Plant Sci. 2020 Sep 30;8(9):e11389. doi: 10.1002/aps3.11389. eCollection 2020 Sep.
Precise pollen collection methods are necessary for crop breeding, but anemophilous pollen is notoriously difficult to capture and control. Here we compared a variety of methods for the controlled capture of cannabis pollen, intended to ease the process of cross-fertilization for breeding this wind-pollinated plant, and measured the utility of light spectroscopy for quantifying relative pollen yield.
In two independent trials, we compared a control method of pollen collection (hand collection) to either vacuum-, water-, or bag-collection methods. We used visible light spectroscopy to quantify relative pollen yield, and validated this approach using microscopic pollen counts. We determined that pollen yield was highest when using hand collection or vacuum collection, but efficiency did not differ significantly among methods.
To maximize yield, pollen should be collected by hand or vacuum, but all collection methods were equally efficient in a relative sense because yield increased with collection time. We also found that light spectroscopy is an accurate and rapid method of quantifying pollen abundance ( = 0.86) in a liquid suspension.
精确的花粉采集方法对作物育种至关重要,但风媒花粉极难捕获和控制。在此,我们比较了多种用于可控采集大麻花粉的方法,旨在简化这种风媒植物杂交育种的过程,并测量了光谱学在量化相对花粉产量方面的效用。
在两项独立试验中,我们将花粉采集的对照方法(手工采集)与真空采集、水采集或袋式采集方法进行了比较。我们使用可见光光谱学来量化相对花粉产量,并通过显微镜花粉计数验证了该方法。我们确定,使用手工采集或真空采集时花粉产量最高,但各方法之间的效率并无显著差异。
为了实现产量最大化,应采用手工或真空方式采集花粉,但从相对意义上讲,所有采集方法的效率是相同的,因为产量会随着采集时间的增加而提高。我们还发现,光谱学是一种准确且快速的方法,可用于量化液体悬浮液中的花粉丰度(r = 0.86)。