首页> 外文期刊>Journal of the American Society of Brewing Chemists >Tryptic Digests of Sorghum Malt Sprouts: An Assessment of Their Usefulness as Organic Nitrogen Sources for the Yeast Saccharomyces cerevisiae
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Tryptic Digests of Sorghum Malt Sprouts: An Assessment of Their Usefulness as Organic Nitrogen Sources for the Yeast Saccharomyces cerevisiae

机译:高粱麦芽的胰蛋白酶消化:用作啤酒酵母有机氮源的评估。

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The tryptic digests of sprouts from malts of two sorghum cultivars differed significantly in their yeast nutrient composition. While both digests contained elevated levels of Ca~(2+), Mg~(2+), and K~+, the individual concentrations of the minerals varied with the sprouts' source. At 423.9 μg/g, Mg~(2+) levels were markedly (P < 0.001) higher in the tryptic digest of Local Red sorghum sprouts than in the Local White counterpart (287.3 μg/g), while the converse was true for Ca~(2+) and K~+. Wide variation also occurred with respect to the nitrogen constituents. For example, the Local White sorghum sprouts digest contained considerably more ammonium, total free amino nitrogen and yeast-essential amino acids than did the Local Red counterpart. In contrast, Local Red malt sprout digest displayed significantly higher urea levels (124.7 mg/g compared with 98.94 mg/g) and superior yeast growth-promoting activity, suggesting that factors other than amino nitrogen also influenced the ability of the digests to support yeast growth. The digests of sorghum malt sprouts compared favorably with seven commercial nitrogenous bases in their ability to promote yeast growth. Results suggest that tryptic digests of sorghum malt sprouts are good alternative sources of nitrogenous and mineral nutrients for microbial cultivation.
机译:来自两个高粱品种麦芽的芽的胰蛋白酶消化物的酵母营养成分差异很大。虽然两种消化物中钙,镁,镁和钾的含量都较高,但矿物质的浓度随芽的来源而变化。局部红高粱芽的胰蛋白酶消化液中的Mg〜(2+)含量为423.9μg/ g,比局部白高粱的28gμg/ g显着高(P <0.001),而对于Ca则相反。 〜(2+)和K〜+。关于氮成分也发生了广泛的变化。例如,本地白高粱芽消化物中的铵,总游离氨基氮和酵母必需氨基酸比本地红对应物高得多。相反,本地红麦芽新芽消化物显示出明显更高的尿素水平(124.7 mg / g比98.94 mg / g)和优异的酵母生长促进活性,这表明除氨基氮外的其他因素也影响了消化物支持酵母的能力。增长。高粱麦芽的消化物在促进酵母菌生长方面的能力优于七个商业含氮碱基。结果表明,高粱芽麦芽的胰蛋白酶消化物是微生物培养中氮和矿物质营养的良好替代来源。

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