Saunders James A, Mischke Sue, Leamy Emily A, Hemeida Alaa A
Alternate Crops and Systems Lab, Plant Sciences Institute, Beltsville Agricultural Research Center, USDA/ARS, Building 50, Rm. 100, Beltsville, MD 20705, USA.
Theor Appl Genet. 2004 Dec;110(1):41-7. doi: 10.1007/s00122-004-1762-1. Epub 2004 Nov 12.
A collaborative international program was initiated to identify and describe the genetic diversity of living germplasm collections of Theobroma cacao genotypes that are maintained in several international collections scattered throughout tropical cacao growing countries of the world. Simple sequence repeat (SSR) DNA analysis was identified as the most appropriate molecular tool for DNA fingerprinting these collections during an international forum representing academic, government and industry scientists in the cacao community. Twenty-five SSR primers, which had been previously described, were evaluated as potential candidates to define an efficient, standardized, molecular fingerprinting protocol for T. cacao accessions. These primers have been evaluated for reliability, widespread distribution across the cacao genome, number of alleles produced by the SSR primers in cacao and their ability to discriminate between cacao accessions. Approximately 690 cacao accessions were used to evaluate the utility of these SSR primers as international molecular standards, and a small number of test samples of T. cacao were sent to two other independent laboratories for verification. DNA fragments were selectively amplified by PCR, using the SSR primers labeled with fluorescent dyes, and separated by capillary electrophoresis. Based on this study, the 15 SSR primers that had the highest reproducibility and consistency within a common genotype, while allowing the differentiation of separate divergent genotypes, were selected as international molecular standards for DNA fingerprinting of T. cacao.
启动了一个国际合作项目,以识别和描述可可树基因型活体种质资源库的遗传多样性,这些种质资源保存在分布于世界热带可可种植国家的多个国际种质库中。在一个由可可领域的学术、政府和产业科学家组成的国际论坛上,简单序列重复(SSR)DNA分析被确定为对这些种质库进行DNA指纹识别的最合适分子工具。对先前已描述的25对SSR引物进行了评估,将其作为为可可树种质定义一种高效、标准化分子指纹识别方案的潜在候选引物。对这些引物的可靠性、在可可基因组中的广泛分布、可可中SSR引物产生的等位基因数量以及它们区分可可种质的能力进行了评估。大约690份可可种质被用于评估这些SSR引物作为国际分子标准的实用性,并将少量可可树测试样本送到另外两个独立实验室进行验证。使用荧光染料标记的SSR引物通过PCR选择性扩增DNA片段,并通过毛细管电泳进行分离。基于这项研究,选择了15对SSR引物作为可可树DNA指纹识别的国际分子标准,这些引物在同一基因型内具有最高的重现性和一致性,同时能够区分不同的基因型。