74个马铃薯基因型的多样性评价及育种选择

A. Khan, S. Erum, N. Riaz, Syed Ijaz ul Hassan, Muhammad Ahson Khan, M. Irfan, T. Javaid, Muhammad Mudassir Hussain, M. Hanif, H. Khurshid, Saqib Saleem, Rizwan Azim
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引用次数: 0

摘要

粮食作物的可持续生产依赖于种质改良和遗传多样性。在本研究中,在伊斯兰堡NARC对74种马铃薯基因型进行了2017-2018秋季和2018-2019秋季的多样性分析。结果表明,5种皮肤颜色(红、黄、棕色、浅黄、浅棕色皮肤颜色块茎=5种)、3种果肉颜色(黄、奶油色和白色皮肤颜色块茎=3种)、3种大小块茎(中、小、大块茎=3种)和4种形状块茎(椭圆形、圆形、椭圆形、椭圆形=4种形状)和4种不同眼睛颜色(棕色、浅棕色、深红、黄色眼睛颜色=4种)在质量性状上存在显著差异。所研究的马铃薯基因型在单株块茎重量、单行块茎重量数、叶面积和株高等数量性状上具有很高的遗传变异。单株块茎数(TPP)与块茎眼数(r = 0.241)与单株块茎数(r = 0.349)呈显著正相关。株高与叶面积(r= 0.456)、发芽率(r= 0.255)、单株块茎质量(r= 0.307)呈极显著正相关。叶面积(LA)与单株块茎数(r = 0.466)、单株块茎质量(r = 0.263)、产量和收获指数(r = 0.798、0.755、0.255)呈显著正相关。单株块茎质量与单株块茎质量呈显著正相关(r = 0.387)。在性状与基因型的相关关系中,前两个主成分轴(PC1, 24.83%和PC2, 23.46%)约占总变异率的48.29%,反映了被测性状间基因型变异的复杂性。本研究将为有效的育种方案的精确选择提供依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Diversity Assessment Among Seventy-Four Potato Genotypes for Selection in Breeding Program
Sustainable production of food crops relies on germplasm improvement and genetic diversity. In the present study, seventy-four potato genotypes were evaluated for diversity analysis during autumn 2017-2018 and 2018-2019 at NARC, Islamabad. Our results showed significant diversity in qualitative traits with reference to skin color of five types (Red, yellowish, brown, light yellow, light brown skin color tubers=5), three types of flesh color (Yellow, cream and white flesh color tubers=3), three sizes of tubers (Medium, small and large size tubers=3) and four shape of tuber (Oval, round, oblong, elliptic= 4 shapes) and four different eyes color (Brown, light brown, dark red and yellow eyes color=4). Potato genotype under study had very high genetic variance for quantitative attributes including weight of tuber per plant and weight number of tubers per lane, leaf area and plant height. Significant positive correlation was observed between number of tubers per plant (TPP) with number of eyes on tubers (r = 0.241) and number of tubers per lane (TPL) (r = 0.349). Plant height was found significantly positive correlated with leaf area (r= 0.456), germination percentage (r = 0.255) and weight of tubers per plant (r = 0.307). Leaf area (LA) showed positive significant correlation with number of tubers per plant (r = 0.466) and weight of tubers per plant (r = 0.263), yield and harvest index (r = 0.798, 0.755, 0.255). Weight of tubers per lane (WTL) showed positive correlation with weight of tubers per plant (r = 0.387). Regarding the interrelation between the traits and genotypes, the first two principal component axes (PC1, 24.83% and PC2, 23.46%) accounted for about 48.29% of the total variability reflecting the complexity of the variation between the plotted traits of genotypes. The present study will be useful for the precise selection for effective breeding program.
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