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A genetic base of utilisation of maize grain as a valuable renewable raw material for bioethanol production

机译:利用玉米籽粒作为生物乙醇生产中有价值的可再生原料的遗传基础

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Maize (Zea mays L.) is one of the most important cereal crops, and as such, one of the most significant naturally renewable carbohydrate raw materials for the production of energy and multitude of different products. Many studies have shown that the kernel composition and starch structure of maize are highly influenced by genetic background of the maize. Maize grain consists of approximately 70% of starch, which makes it a very suitable feedstock for the bioethanol production. This study was conducted with aim to understand how different genetic background affects bioethanol yield and other fermentation properties of the selected maize genotypes in the process of maize grain- based bioethanol production. Twenty seven maize hybrids, including genotypes of standard chemical composition as well as specialty maize hybrids such as popping, waxy, white kernel and red kernel hybrids, developed at the Maize Research Institute, Zemun Polje, were investigated in this study. The lowest bioethanol yield of 7.25% w/w obtained for hybrid ZP 611k after 48 h of fermentation and the highest by genotype ZP 434 (8.96% w/w). A very significant positive correlation was determined between kernel starch content and the bioethanol yield after 48h of fermentation, as well as volumetric productivity (48h) (r=0.67). Between bioethanol yield after 48h of fermentation and soft endosperm content in kernel of the investigated ZP maize hybrids a very significant positive correlation was assessed (r=0.66). Higher overall bioethanol yields have been obtained from genotypes containing higher starch and lower protein and lipid contents. [Projekat Ministarstva nauke Republike Srbije, br. TR 31068]
机译:玉米(Zea mays L.)是最重要的谷物作物之一,因此,也是最重要的天然可再生碳水化合物原料之一,用于生产能源和多种不同的产品。许多研究表明,玉米的籽粒组成和淀粉结构受到玉米遗传背景的高度影响。玉米谷物约含70%的淀粉,这使其非常适合用于生产生物乙醇。进行这项研究的目的是了解不同的遗传背景如何在基于玉米谷物的生物乙醇生产过程中影响生物乙醇产量以及所选玉米基因型的其他发酵特性。在这项研究中,研究了由玉米化学研究所Zemun Polje开发的27个玉米杂交种,包括标准化学成分的基因型以及特殊的玉米杂交种,例如爆裂,蜡质,白核和红核杂交。发酵48小时后,杂种ZP 611k的最低生物乙醇产率为7.25%w / w,而基因型ZP 434的生物乙醇产率最高(8.96%w / w)。在发酵48小时后,籽粒淀粉含量与生物乙醇产量以及体积生产率(48h)之间存在非常显着的正相关性(r = 0.67)。在发酵48小时后的生物乙醇产量与所研究的ZP玉米杂交种籽仁中的软胚乳含量之间,评估了非常显着的正相关(r = 0.66)。从含有较高淀粉,较低蛋白质和脂质含量的基因型中获得了较高的总生物乙醇产量。 [Projekat Ministarstva nauke Republike Srbije,br。 TR 31068]

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