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Fumonisins in Conventional and Transgenic, Insect-Resistant Maize Intended for Fuel Ethanol Production: Implications for Fermentation Efficiency and DDGS Co-Product Quality

机译:旨在生产燃料乙醇的常规和转基因,抗虫玉米中的伏马菌素:对发酵效率和DDGS副产品质量的影响

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Mycotoxins in maize grain intended for ethanol production are enriched in co-product dried distiller’s grains and solubles (DDGS) and may be detrimental to yeast in fermentation. This study was conducted to examine the magnitude of fumonisin enrichment in DDGS and to analyze the impacts of insect injury, Fusarium ear rot severity, and fumonisin contamination on final ethanol yield. Samples of naturally-contaminated grain (0 to 35 mg/kg fumonisins) from field trials conducted in 2008–2011 were fermented and DDGS collected and analyzed for fumonisin content. Ethanol yield (determined gravimetrically) was unaffected by fumonisins in the range occurring in this study, and was not correlated with insect injury or Fusarium ear rot severity. Ethanol production was unaffected in fumonisin B1-spiked grain with concentrations from 0 to 37 mg/kg. Bacillus thuringiensis (Bt) maize often has reduced fumonisins due to its protection from insect injury and subsequent fungal infection. DDGS derived from Bt and non-Bt maize averaged 2.04 mg/kg and 8.25 mg/kg fumonisins, respectively. Fumonisins were enriched by 3.0× for 50 out of 57 hybrid × insect infestation treatment combinations; those seven that differed were 3.0 (1.56 to 2.56×). This study supports the industry assumption of three-fold fumonisin enrichment in DDGS, with measurements traceable to individual samples. Under significant insect pest pressures, DDGS derived from Bt maize hybrids were consistently lower in fumonisins than DDGS derived from non-Bt hybrids.
机译:用于乙醇生产的玉米籽粒中的霉菌毒素富含副产物干酒糟和可溶物(DDGS),可能对发酵中的酵母有害。进行了这项研究以检查DDGS中伏马菌素富集的程度,并分析了昆虫伤害,镰刀菌耳腐严重程度和伏马菌素污染对最终乙醇产量的影响。对2008-2011年进行的田间试验的天然污染谷物(0至35 mg / kg伏马毒素)进行了发酵,并收集了DDGS并分析了伏马毒素的含量。在这项研究中,烟曲霉毒素对乙醇产量(以重量测定)没有影响,并且与昆虫伤害或镰刀菌严重腐烂无关。浓度从0到37 mg / kg的伏马菌素B 1 加标谷物中乙醇的产量不受影响。苏云金芽孢杆菌(Bt)玉米由于具有免受昆虫伤害和随后真菌感染的保护作用,因此伏马菌素通常减少。来自Bt和非Bt玉米的DDGS伏马菌素平均分别为2.04 mg / kg和8.25 mg / kg。在57种杂种×昆虫侵染处理组合中,有50种使伏马菌素富集3.0倍。这七个差异小于3.0(1.56至2.56倍)。这项研究支持了DDGS中伏马菌素富集三倍的行业假设,其测量结果可追溯到单个样品。在巨大的害虫压力下,伏马毒素中来自Bt玉米杂交体的DDGS始终低于来自非Bt杂交体的DDGS。

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