用微卫星标记评价番茄种子老化过程中的遗传完整性

I.O. Daniel , O.W. Adabale , K.A. Adeboye , E.S. Aladele , O.T. Oduoye , J.A. Adetumbi , A. Boerner
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引用次数: 4

摘要

本研究的目的是评价番茄种子贮藏过程中老化引起的遗传变化。因此,将10份番茄材料的种子在55°C和72±2% RH的条件下人工老化72小时。种子存活数据用于估计probit参数。使用Direct PCR™试剂盒通过微卫星(SSR)分析评估种子老化过程中的遗传变化。SSR引物序列(除SGN-14430外)优化了番茄材料的基因标记,因此推荐用于检测种子储存过程中的遗传变化。使用PAST™软件计算遗传距离,并根据遗传距离矩阵估计遗传完整性百分比。Probit分析显示,菌株LOO169的P50估计值最小(7 d),菌株09/044的P50估计值最高(64.4 d)。具有较低P50估计值的种子显示较低的遗传完整性估计值。在人工老化0至72小时的遗传距离估计值中,平均遗传完整性的最低估计值为99.21%。结果表明,在人工老化过程中,衰老引起的遗传退化表明,种子在特定生理(发芽)基准下储存的遗传完整性可能会丧失。对于西红柿,本研究表明种子在老化过程中遗传变化的发芽基准约为42%。将NACGRAB基因库中保存2年的番茄种子与新鲜收获的种子进行比较,验证了人工种子老化结果和估计的番茄种子遗传完整性下降的萌发基准。
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Evaluation of genetic integrity of tomato seeds during ageing by microsatellite markers

The objective of this project was to evaluate ageing-induced genetic changes during storage of tomato seeds. Seeds of 10 accessions of tomatoes were thus subjected to artificial ageing in chambers conditioned to 55 °C and 72 ± 2% RH for 72 h. Seed survival data were used to estimate probit parameters. Genetic changes during the seed ageing course were evaluated by microsatellite (SSR) analysis using a Direct PCR™ kit., The SSR primer sequences (except SGN-14430) optimized the gene markers for the tomato accessions and are thus recommended for detecting genetic changes during seed storage. Genetic distances were calculated using PAST™ software and percentage genetic integrity was estimated from the genetic distance matrices. Probit analysis showed that P50 estimates was least in accession LOO169 (7 days) and highest in accession 09/044 (64.4 days). Seeds having lower P50 estimates showed lower estimates of genetic integrity. Lowest estimate of average genetic integrity was 99.21% when estimates of genetic distances were compared between 0 and 72 h of artificial ageing. The results showed ageing-induced genetic deterioration during artificial ageing thus suggests possibility of losses in genetic integrity of seeds in storage at a specific physiological (germinability) benchmark. For tomatoes, this study shows that seed germinability benchmark for genetic changes during ageing was approximately 42%. Comparison of tomato seeds stored in the NACGRAB gene bank for 2 years and freshly harvested seeds, validated the artificial seed ageing result and the estimated germination benchmark for declining genetic integrity in tomato seeds.

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