稻(Oryza sativa L.)核心种质的选择应用定量、定性和分子特征的文献综述

Ahmed, K. Iftekharuddaula
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引用次数: 1

摘要

水稻(Oryza sativa L.)产量的遗传改良对于满足日益增长的人口需求和世界气候变化具有重要意义。最近的研究表明,以现代品种为受体,以小型核心品种为供体进行两次回交,大多数不良性状都能得到显著改善,即其最大等位基因多样性可以带回稻田。核心集合被定义为一个子集,选择代表最遗传多样性的初始集合与最小的冗余。从定量、定性和分子特征等方面综述了水稻Jesso-Balam基因型核心种质的选择。此前,孟加拉国水稻研究所在2009-12年间对同一种质进行了农业形态、物理化学和分子特征的鉴定,并采用不同的方法将其分组。最后,通过对上述特征数据的综合分析,采用层次聚类分析的方法筛选出核心数据集。采用复合评价方法,改进了岩心采集的选择过程;通过基于基因型值的采样策略、预测基因型值、比较不同遗传距离、聚类方法和采样策略方法、分子表征或SSR标记基础数据等方法,对农业形态性状、生化性状等进行研究。结果表明,JBPL1、JBPL8、JBPL9、JBPL10、JBPL13、JBPL15、JBPL16、JBPL17、JBPL19、JBPL20、JBPL21、JBPL23、JBPL25和JBPL26是粳稻选材的核心种质。综上所述,该核心种质易于安全保存,并可在基因库中得到有效利用,可作为“工作种质”。农学家2017;15 (1) 170 - 181
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selection of Core Collection from Jesso-Balam Rice ( Oryza sativa L.) Accessions Using Quantitative, Qualitative and Molecular Characters-A Review
Genetic improvement of rice ( Oryza sativa L.) for yield is important for increasing demand of the growing population and the changing climate of the world. Recent studies showed that backcrossing twice using modern varieties as receptor and mini core collection as doner, most of the undesirable traits could be improved remarkably and in other words its maximum allele diversity could be brought back into rice fields. Core collection is defined as a subset chosen to represent the most genetic diversity of an initial collection with a minimum of redundancies. The objective of the present study was to review the selection of core collection of Jesso-Balam group of rice genotypes through quantitative, qualitative and molecular characters. Earlier, the same germplasms were characterized for agro-morphological, physico-chemical and molecular characters and grouped into different clusters by different methods at Bangladesh Rice Research Institute during 2009-12. Finally, the core collection was selected by reviewing the above characterized data and using the hierarchical cluster analysis. Moreover, the selection processes of core collection were improved by applying composite evaluation methods; such as agro-morphological traits, biochemical characters and so on, through sampling strategies based on genotypic values, predicted genotypic value, comparing different genetic distances, cluster methods and sampling strategies methods, molecular characterization or SSR marker base data. As a result, the selected core germplasm of Jesso-Balam rice accessions were JBPL1, JBPL8, JBPL9, JBPL10, JBPL13, JBPL15, JBPL16, JBPL17, JBPL19, JBPL20, JBPL21, JBPL23, JBPL25 and JBPL26. In conclusion, the core collection  need to be considered as the ‘working collection’ of Jesso-Balam rice genotypes for their easy and safe conservation and effective utilization in Gene bank. The Agriculturists 2017; 15(1) 170-181
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