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首页> 外文期刊>Trends in Biosciences >Micronutrient Content in Rice grains of Different Rice Genotypes
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Micronutrient Content in Rice grains of Different Rice Genotypes

机译:不同基因型水稻籽粒中微量元素的含量

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Rice is one of the three important cereals and it is produced annually at worldwide levels of more than 600 million tons and will be more than 800 million tons as early as 2025 which have traces of micronutrients. Micronutrient elements like Zinc, Iron, Copper and Manganese are essential for normal growth and development of plant and human. Micronutrient deficiencies in humans mainly result from low concentrations and low availabilities of micronutrients in daily diets. A study was carried out to explore information regarding mineral nutrient reserves in whole rice grains and brown rice of various genotypes having different durations from different Research Centers in Tamil Nadu. Totally 69 rice genotypes were analyzed for micronutrients which weregrouped as short, medium, long duration varieties and advanced lines. The analytical results revealed that Zinc concentration in whole rice grains ranged from 10.7 to 33.2 mg kg"1, Iron concentration from 102.3 to 192.1 mg kg"1, Copper concentration from5.6 to 14.5 mg kg"1 and Manganese concentration from 15.1 to 48.1 mg kg"1 among 69 genotypes In brown rice the Zinc concentration fluctuated from 9.2 to 24.2 mg kg"1, Iron concentration from 71.1 to 165.8 mg kg"', Copper concentration from 4.2 to 8.8 mgkg"1 and Manganese concentration from 4.9 to 15.5 mg kg"1. The results showed that in general the micronutrient accumulation was higher in long duration varieties than short and medium duration varieties. The results further revealed that in brown rice,the reduction in the amount of micronutrients was small in the case of Zn, Fe and Cu and high in the case of Mn due to dehusking process.
机译:稻米是三种重要的谷物之一,全球每年的产量超过6亿吨,到2025年将有8亿吨的微量营养元素。锌,铁,铜和锰等微量元素对植物和人类的正常生长发育至关重要。人体微量营养素缺乏症主要是由于日常饮食中微量营养素含量低和利用率低所致。进行了一项研究,以探索来自泰米尔纳德邦不同研究中心的,具有不同持续时间的不同基因型的全谷粒和糙米中矿物质营养储备的信息。总共分析了69个水稻基因型的微量营养素,这些营养素分为短,中,长期品种和高级品系。分析结果表明,全米中的锌浓度范围为10.7至33.2 mg kg“ -1,铁浓度范围为102.3至192.1 mg kg” -1,铜浓度范围为5.6至14.5 mg kg“ 1,锰浓度范围为15.1至48.1 69种基因型中的mg kg“ 1”糙米中的锌浓度从9.2波动至24.2 mg kg“',铁的浓度从71.1波动至165.8 mg kg”',铜的浓度从4.2至8.8 mgkg“ 1波动,锰的浓度从4.9至15.5毫克公斤“ 1。结果表明,一般而言,长期品种的微量营养素积累量高于中短期品种。结果进一步表明,在糙米中,由于去壳过程,锌,铁和铜的微量营养素的减少量较小,而锰的减少量较大。

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