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SSR analysis of genetic changes during artificial ageing of rice seeds stored under gene bank management

机译:基因库管理下水稻种子人工老化过程中遗传变化的SSR分析

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Two experiments were conducted to evaluate ageing-induced genetic changes and to establish physiological thresholds for loss of genetic integrity during ageing or storage of rice seeds. In the first experiment, seeds of 10 varieties of rice were subjected to artificial ageing in chambers conditioned to 55°C and 72±2% RH for 72 hours. In the second experiment, seeds of 4 varieties of rice stored in the NACGRAB gene bank, Nigeria in 2011 at 5± 4°C were compared with seeds of the same accessions freshly harvested in 2013. Data were collected on seed germination and seedling length to estimate the seed vigour index. Genetic changes during the ageing were evaluated by SSR markers using a Direct? PCR kit. Genetic distance indices were computed using PAST? software and percentage genetic integrity was estimated from the genetic distance matrices. At 72 hours of artificial ageing, seed germination percentage declined to 54.2% and vigour index 0.8 coinciding with the lowest estimate of genetic integrity of 99.5%. The decline in percentage genetic integrity during the artificial ageing indicated a systematic ageing-induced genetic alteration. SSR primer RM178 revealed variations that suggest losses of alleles in the course of ageing for 2 accessions at between 24 hours in WITA4 and 48 to 51 hours in CG14. In the gene bank storage trial, germination of seeds after one and two years of storage was above 80% and there were no significant differences among the accessions. SSR profiles for all the accessions were also similar. The result partly corroborates the artificial ageing data. This implies that seed viability benchmark of 54% is recommended for regeneration of stored rice seeds in order to maintain optimum genetic integrity during storage.
机译:进行了两个实验,以评估衰老引起的遗传变化,并确定水稻种子老化或储存过程中遗传完整性丧失的生理阈值。在第一个实验中,将10个水稻品种的种子在条件为55°C和72±2%RH的室内进行人工老化72小时。在第二个实验中,将2011年在尼日利亚NACGRAB基因库中以5±4°C保存的4个水稻品种的种子与2013年新鲜收获的相同品种的种子进行了比较。收集了种子发芽和幼苗长度的数据。估计种子活力指数。使用Direct?标记通过SSR标记评估衰老过程中的遗传变化。 PCR试剂盒。遗传距离指数使用PAST?根据遗传距离矩阵估算软件和遗传完整性百分比。人工老化72小时后,种子发芽率降至54.2%,活力指数为0.8,与遗传完整性的最低估计值99.5%相符。人工衰老过程中遗传完整性百分率的下降表明系统的衰老诱导了遗传改变。 SSR引物RM178揭示了一些变异,这些变异表明在WITA4中24小时至CG14中48至51小时之间2个种的衰老过程中等位基因的丢失。在基因库贮藏试验中,贮藏一年和两年后种子的发芽率超过80%,并且种质之间没有显着差异。所有种质的SSR概况也相似。结果部分证实了人工老化数据。这意味着建议将种子生存力基准指标设为54%,以再生存储的水稻种子,以便在存储过程中保持最佳的遗传完整性。

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