首页> 外文期刊>Journal of Agricultural and Food Chemistry >Studies on Brassica carinata Seed. 1. Protein Molecular Structure in Relation to Protein Nutritive Values and Metabolic Characteristics
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Studies on Brassica carinata Seed. 1. Protein Molecular Structure in Relation to Protein Nutritive Values and Metabolic Characteristics

机译:甘蓝型油菜种子的研究。 1.与蛋白质营养价值和代谢特性有关的蛋白质分子结构

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The objectives of this study were to investigate (l) the protein chemical profile, (2) the protein subfractions partitioned by the Cornell Net Carbohydrate and Protein System (CNCPS), (3) the rumen crude protein (CP) degradation kinetics, (4) the protein supply predicted by the DVE/OEB system, (5) the protein structural features using a Fourier transform infrared (FTIR) spectroscopic technique with attenuated total reflectance (ATR), and (6) the correlations between protein intrinsic structural features and nutritional profiles in three strains of Brassica carinata in yellow and brown seed coats, with comparison to canola seed as a reference. The results showed that carinata seed strains were different in both nutritional values and IR absorbance within the protein spectral region (ca. 1720—1482 cm~(-1)). The comparison between yellow and brown B. carinata seeds indicated that the former was lower in acid detergent insoluble crude protein (ADICP; P = 0.002) and undegradable protein fraction (PC; P = 0.002) and greater in the degradable (D) fraction (P = 0.004) and true absorbed protein in the small intestine (DVE; P = 0.02) as well as feed milk value (FMV; P = 0.02) than the latter. The brown canola seed (Brassica napus L.) was also not in full accordance with B. carinata seed on these parameters. The FTIR studies showed significant differences in protein amide II peak height, amide I peak area, and β-sheet height among different B. carinata strains. However, multivariate spectral analyses indicated a similarity in protein structural makeup in these four kinds of oilseed. The not very strong correlations shown in this study implied that the limited sample size and narrow range in biological and spectral variation might be responses for the weak relationships between chemical profile and mid-IR spectral data. Further studies using sufficient samples with wide and diverse range in nutritional properties are needed to illustrate the actual relationship between spectroscopic data and nutritional profiles in oilseeds.
机译:这项研究的目的是研究(1)蛋白质化学特征,(2)由康奈尔净碳水化合物和蛋白质系统(CNCPS)划分的蛋白质亚组分,(3)瘤胃粗蛋白(CP)降解动力学,(4 )DVE / OEB系统预测的蛋白质供应,(5)使用具有衰减的全反射率(ATR)的傅立叶变换红外(FTIR)光谱技术的蛋白质结构特征,以及(6)蛋白质内在结构特征与营养之间的相关性三种油菜在黄色和棕色种皮中的油菜谱,与油菜籽比较。结果表明,在蛋白质谱区域(约1720〜1482 cm〜(-1))内,Carinata种子菌株的营养价值和IR吸收均不同。黄色和棕色卡氏芽孢杆菌种子的比较表明,前者在酸性去污剂不溶性粗蛋白(ADICP; P = 0.002)和不可降解的蛋白质组分(PC; P = 0.002)中较低,而在可降解(D)组分中则较高(P = 0.002)。 P = 0.004)和小肠中的真正吸收蛋白(DVE; P = 0.02)以及饲料乳值(FMV; P = 0.02)。在这些参数上,棕色双低油菜籽种子(Brassica napus L.)也不完全符合卡氏芽孢杆菌种子。 FTIR研究表明,在不同的卡氏芽孢杆菌菌株中,蛋白质酰胺II峰高,酰胺I峰面积和β-折叠高度存在显着差异。但是,多元光谱分析表明这四种油料种子的蛋白质结构相似。这项研究显示的相关性不是很强,这意味着有限的样本量以及生物学和光谱变化的窄范围可能是对化学谱与中红外光谱数据之间弱关系的响应。需要进行进一步的研究,使用具有广泛而多样的营养特性的充足样本,以说明油料中光谱数据与营养状况之间的实际关系。

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