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An optimised protocol to isolate high-quality genomic DNA from seed tissues streamlines the workflow to obtain direct estimates of seed dispersal distances in gymnosperms

机译:从种子组织中分离高质量基因组DNA的优化方案简化了工作流程,可直接获得裸子植物种子扩散距离的直接估计值

摘要

Genotyping of maternally derived seed tissues from georefered seeds that moved away from their source tree yield direct estimates of seed dispersal distances when the location and the genotype of the fruiting tree are available. These estimates are instrumental in forecasting the response of plant communities to drivers of global change, such as fragmentation or the expansion of invasive species. Obtaining robust assessments of seed dispersal distances requires comparing reliable multilocus genotypes of maternally derived seed tissues and fruiting trees, as previously shown for angiosperm species. However, robust estimates of seed dispersal distances based on direct methods are rare in non-model gymnosperms due to the difficulty in isolating high quality DNA from inconspicuous maternally derived seed tissues. These tissues tend to yield low DNA quantities that increase the frequency of genotyping errors. Here, we deliver a step-by-step visual protocol used to identify and isolate different seed tissues of interest for dispersal studies: embryos (2n, bi-parentally derived), seed coats (2n, maternally derived), and megagametophytes (n, maternally derived). We also provide an optimised lab protocol used to obtain multilocus genotypes from the target seed tissue. These broadly applicable protocols proved successful both in avoiding contamination among different seed tissues and providing reliable multilocus genotypes.
机译:当果树的位置和基因型可用时,从远离其原始树的地缘转种种子中提取的母本种子组织的基因型,可直接估计种子的传播距离。这些估计值有助于预测植物群落对全球变化驱动力(例如碎片化或入侵物种扩展)的反应。要获得对种子散布距离的可靠评估,需要比较可靠的母源种子组织和果树的多位点基因型,如先前对被子植物的研究所示。然而,由于很难从母体来源不明显的种子组织中分离出高质量的DNA,因此在非模型裸子植物中很少有基于直接方法对种子散布距离进行可靠估计的方法。这些组织倾向于产生低DNA量,从而增加了基因分型错误的频率。在这里,我们提供了分步可视化协议,用于识别和分离感兴趣的不同种子组织进行分散研究:胚胎(2n,双亲衍生),种皮(2n,母体衍生)和巨型配子体(n,母源)。我们还提供了用于从目标种子组织获得多基因座基因型的优化实验室方案。这些广泛适用的协议在避免不同种子组织之间的污染以及提供可靠的多基因座基因型方面都取得了成功。

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