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Influence of ensiling time and inoculation on alteration of the starch-protein matrix in high-moisture corn

机译:保时间和接种对高水分玉米淀粉-蛋白质基质变化的影响

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摘要

The fates of hydrophobic zein proteins, which encapsulate corn starch to create vitreous endosperm, have not been investigated in high-moisture corn (HMC). To assess influences of ensiling time and inoculation on zein proteins in HMC, quadruplicate samples of 2 random corn hybrids (A and B), containing 25.7 and 29.3% moisture, were ground, inoculated with (I) or without 600,000 cfu/g of Lactobacillus buchneri 40788 (Lallemand Animal Nutrition, Milwaukee, WI), and ensiled for 0, 15, 30, 60, 120, and 240 d. Nutrient composition [crude protein (CP), starch, acid detergent fiber, and neutral detergent fiber], fermentation (pH, lactate, and acetate), and protein degradation markers (buffer-soluble CP, isopropanol-soluble CP, and NH3-N) were evaluated. At 0 and 240 d, α, γ, δ, and β zein subunits were profiled using HPLC. Data were evaluated as a split-split plot using the PROC MIXED procedures of SAS. Ensiling time and inoculation decreased pH, and altered lactate and acetate contents of HMC. Lactate and acetate contents of A, AI, B, and BI at 240 d were 0.40, 0.32, 1.11, 0.73, and 0, 0.35, 0.30, and 0.87% of DM, respectively. Buffer-soluble CP in HMC increased from 1.5 to 2.0% of DM at 0 d to \u3e4.0% of DM at 240 d. Inoculation had no effect on buffer-soluble CP but increased NH3-N content of HMC. Corn A contained more isopropanol-soluble CP than did corn B and peak areas for 6 α, and all γ and δ zein regions were greater for corn A. Ensiling (0 vs. 240 d) decreased all zein subunits with the exception of 2 α and 1 δ subunit. Ensiling decreased (42.2–73.2%) γ zeins, which are primarily responsible for cross-linking in the starch-protein matrix. Despite altering lactate and acetate contents, inoculation had no effect on degrading hydrophobic zein proteins in HMC. Data suggest that hydrophobic zein proteins in the starch-protein matrix of HMC are degraded by proteolytic activity over an extended ensiling time.
机译:疏水玉米醇溶蛋白的命运,将玉米淀粉包裹起来形成玻璃胚乳,尚未在高水分玉米(HMC)中进行研究。为了评估保藏时间和接种时间对HMC中玉米醇溶蛋白的影响,将2个随机玉米杂种(A和B)一式四份(含25.7和29.3%的水分)研磨,接种(I)或不接种600,000 cfu / g乳酸杆菌。 buchneri 40788(威斯康星州密尔沃基市的莱勒姆动物营养公司),青贮0、15、30、60、120和240天。营养成分[粗蛋白(CP),淀粉,酸性洗涤剂纤维和中性洗涤剂纤维],发酵(pH,乳酸和乙酸盐)和蛋白质降解标记(可溶于缓冲液的CP,可溶于异丙醇的CP和NH3-N )进行了评估。在0和240 d,使用HPLC对α,γ,δ和β玉米醇溶蛋白亚基进行分析。使用SAS的PROC MIXED程序将数据评估为分割图。接种时间和接种时间降低了pH,并改变了HMC的乳酸和乙酸盐含量。 A,AI,B和BI在240天时的乳酸和乙酸含量分别为DM的0.40、0.32、1.11、0.73和0、0.35、0.30和0.87%。 HMC中可溶于缓冲液的CP在0 d时从DM的1.5%增加到2.0%到240 d DM的4.0%。接种对缓冲液可溶性CP无影响,但增加了HMC的NH3-N含量。玉米A比玉米B含有更多的异丙醇可溶CP,且6α的峰面积更大,玉米A的所有γ和δ玉米醇溶蛋白区域都更大。青贮(0 vs. 240 d)减少了所有玉米醇溶蛋白亚基,除了2α和1个δ亚基。封存的γ玉米醇溶蛋白减少(42.2–73.2%),其主要负责淀粉-蛋白质基质中的交联。尽管改变了乳酸盐和乙酸盐的含量,接种对HMC中疏水性玉米醇溶蛋白的降解没有影响。数据表明,HMC的淀粉-蛋白质基质中的疏水玉米醇溶蛋白在延长的保藏时间内被蛋白水解活性降解。

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