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新型原位评价矿物质在豇豆难煮(HTC)缺陷形成中的作用及其对体外矿物质生物利用度的影响。

Novel in situ evaluation of the role minerals play in the development of the hard-to-cook (HTC) defect of cowpeas and its effect on the in vitro mineral bioaccessibility.

机构信息

Department of Food Science and Institute for Food, Nutrition and Well-being, University of Pretoria, Private Bag X20, Hatfield 0028, South Africa.

Materials Research Department, iThemba LABS, National Research Foundation (NRF), PO Box 722, Somerset West 7129, South Africa.

出版信息

Food Chem. 2015 May 1;174:365-71. doi: 10.1016/j.foodchem.2014.10.134. Epub 2014 Nov 3.

Abstract

Cowpea is a nutritionally important drought-resistant legume in sub-Saharan Africa. It is, however, underutilised, in part due to the hard-to-cook (HTC) defect caused by adverse storage conditions resulting in seeds not softening during cooking. This study introduced a novel evaluation of the potential role that minerals play in the development of the HTC defect. The mineral distribution in the cotyledons of normal and HTC cowpeas were analysed by Proton Induced X-ray Emission (PIXE) spectrometry. The phytate, tannin and total phenolic contents were analysed together with in vitro mineral bioaccessibility. In HTC cowpeas, Ca and Mg were more concentrated in the cell wall-middle lamella area of the parenchyma cells. This, together with the reduction in phytate content, confirmed the 'phytase-phytate-mineral' hypothesis as a mechanism for development of the HTC defect. Despite the phytate reduction in stored cowpeas, the HTC defect decreased the bioaccessibility of Ca, Fe and Zn in cowpeas.

摘要

豇豆是撒哈拉以南非洲地区一种营养丰富的耐旱豆类,但利用率不高,部分原因是由于储存条件不利导致的难煮(HTC)缺陷,使种子在烹饪过程中不会变软。本研究通过质子诱导 X 射线发射(PIXE)光谱法,对矿物质在 HTC 缺陷形成中的潜在作用进行了新的评估。通过质子诱导 X 射线发射(PIXE)光谱法分析了正常和 HTC 豇豆子叶中的矿物质分布。同时分析了植酸盐、单宁和总酚含量以及体外矿物质生物利用度。在 HTC 豇豆中,钙和镁在薄壁细胞的细胞壁-中层区域更加集中。这一点,加上植酸盐含量的减少,证实了“植酸酶-植酸盐-矿物质”假说,即 HTC 缺陷形成的机制。尽管储存的豇豆中的植酸盐减少,但 HTC 缺陷降低了豇豆中钙、铁和锌的生物利用度。

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