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首页> 外文期刊>Physiology and Molecular Biology of Plants >Enumerating the phytic acid content in maize germplasm and formulation of reference set to enhance the breeding for low phytic acid
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Enumerating the phytic acid content in maize germplasm and formulation of reference set to enhance the breeding for low phytic acid

机译:枚举玉米种质中的植酸含量和参考组的制剂,增强低植酸的育种

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摘要

Phytic acid (Myoinositol 1, 2, 3, 4, 5, 6 hexakisphosphate) is a ubiquitous compound present in plants. It is an important constituent in seed reducing the bioavailability of phosphorous and mineral nutrients when fed to monogastric animals like swine, poultry, fish etc. Hence, identification of maize germplasm with reduced phytic acid content is imperative to formulate the breeding programs to evolve low phytate lines. Towards this, three hundred and thirty-eight maize germplasm accessions available at Department of Millets, TNAU, were raised and screened for phytic acid content which varied from 2.77 to 16.70 mg/g of seed. Based on the variability present, a reference set with fifty-eight genotypes for phytic acid was formulated. The reference set was formed with random genotypes selected from the base population to follow a normal distribution (skewness; 0.17, kurtosis; 0.61 and K-S test for normality D-n = 0.70) for phytic acid. The non-significant difference between the means of the base and the reference ensured the entire representation of the base in the formulated reference for phytic acid. Among all the lines in the reference set, the lowest phytic acid content were observed in the lines UMI-113 (2.77 mg/g) followed by UMI-300-1 (3.17 mg/g), UMI-467 (5.50 mg/g) and UMI-158 (6.58 mg/g) could be used as donors for low phytic acid in breeding programs. The principal component analysis for studying the extent of variability in the reference, revealed six major principal components that exhibited 80.40% of variation with flowering traits, ear height and phytic acid as a major contributor for variability. The characters namely plant stand, germination percentage, kernel yield, ear length, ear diameter and number of kernels per row were found to be positively correlated with the phytic acid and this emphasizes the negative pleiotropic effects of low phytic acid lines in germination and seed set. Thus this formulated reference set enables the breeders to handle minimum population for further grouping the genotypes to analyse their heterotic potential combined with low phytic acid.
机译:植物酸(肌肌醇1,2,3,4,5,6六磷酸盐)是植物中存在的普遍存在的化合物。它是种子中的一个重要组成部分,减少磷和矿物质的生物利用度,当喂养猪,家禽,鱼等等单一动物时,鉴定植物酸含量降低的玉米种质是必要的,以制备育种程序以发展低植酸盐线条。朝向这一点,在小米,TNAU的部门提供三百三十八种玉米种质牧群,培养并筛选植酸含量,从2.77〜16.70 mg / g种子。基于存在的可变性,配制了具有五十八个基因型的参考组。参考组用选自基础群中的随机基因型形成,以遵循正态分布(偏斜; 0.17,KurtOss; 0.61和K-S对正常性D-N = 0.70)的植物。碱的装置与参考的手段之间的非显着差异确保了碱的整个碱基的植物参考的碱基。在参考组中的所有线中,在UMI-113(2.77mg / g)中观察到最低植酸含量,然后是UMI-300-1(3.17mg / g),UMI-467(5.50mg / g) )和UMI-158(6.58mg / g)可用作育种计划中低植酸的供体。研究参考文献中可变异程度的主要成分分析揭示了六个主要的主要成分,其中显示出开花性状,耳朵高度和植酸作为变异性的主要贡献者的80.40%。发现人物即植物支架,萌发百分比,核产率,耳长,耳直径和粒数与植酸阳性相关,这强调低植酸线在萌发和种子套装中的负态渗透效应。因此,该配制的参考组使得育种者能够处理最小群体以进一步分组基因型以分析其与低植酸结合的异细潜力。

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