Inter-varietal sterility and fertility restoration in Oryza sativa Linn.

O. Abraham, J. Faluyi, C. Nwokeocha
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引用次数: 1

Abstract

This study explored the underlining reproductive factors that cause sterility in rice, using hybrids obtained from crosses among landrace selections and improved varieties. The study was carried out between 2016 and 2018. Nine landrace cultivars and two improved varieties were involved in the hybridization experiment. Among the 17 putative hybrids that were obtained, only 5 were confirmed as true hybrids. Meiotic chromosome studies and pollen studies in the F1, and Mendelian segregation studies for fertility in the F2 were carried out. Some F2 lines were monitored to F3 to ascertain the level of fixation of gene combinations for fertility. The results obtained from the chromosomal studies showed that phenomena such as laggards, precocious movements, formation of multivalents, and unequal segregation to the poles are associated with pollen sterility in all - 5 hybrids, at the F1 and F2 generations. The indehiscence of anthers contributed to infertility due to pollen shortage than the fertility of the pollens themselves. Even though in males, there is a preponderance of male sterility, female sterility is also a phenomenon that is possibly contributing to inter-varietal sterility. The segregational pattern of 13:3 was observed for fertility in the F2 which suggests the inhibition of fertility by a gene in the dominant state. There was the restoration of fertility in many of the lines advanced to the F3 to up to 93 % fertility. It was, therefore, concluded from the study that landraces of rice still hold the key for the rice crop improvement and should therefore be conserved.
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水稻品种间不育性与育性恢复。
本研究利用地方品种和改良品种杂交获得的杂种,探讨了引起水稻不育的主要生殖因素。这项研究是在2016年至2018年期间进行的。采用9个地方品种和2个改良品种进行杂交试验。在获得的17个推测杂交种中,只有5个被确认为真正的杂交种。对F1进行了减数分裂染色体研究和花粉研究,对F2进行了育性的孟德尔分离研究。一些F2系被监测到F3,以确定基因组合对育性的固定水平。染色体研究结果表明,在所有5个杂交种的F1和F2代上,花粉不育现象都与滞后现象、早熟运动、多价体形成和不均等的极性分离有关。与花粉本身的育性相比,花药的不闭合导致花粉短缺而导致不育。即使在雄性中,雄性不育占优势,雌性不育也是一种可能导致品种间不育的现象。在F2的育性中观察到13:3的分离模式,这表明在优势状态下有一个基因抑制育性。到了F3的许多品系都恢复了生育能力,生育能力高达93%。因此,从研究中得出结论,水稻地方品种仍然是水稻作物改良的关键,因此应加以保护。
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