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发芽对一些尼日利亚种植的谷物豆类的植酸酶活性、植酸和总磷含量的影响。

The effect of germination on the phytase activity, phytate and total phosphorus contents of some Nigerian-grown grain legumes.

机构信息

Department of Biochemistry, Ambrose Alli University, Ekpoma, Nigeria.

出版信息

J Sci Food Agric. 2011 Jan 15;91(1):75-9. doi: 10.1002/jsfa.4150. Epub 2010 Sep 21.

Abstract

BACKGROUND

Grain legumes are under-exploited as possible sources of phytase for the poultry industry. The current study was conducted to assess the effect of germination on phytase activities, phytate and total phosphorus content in samples of Nigerian-grown grain legumes. The legumes screened were African yambean (AYB, Sphenostylis stenocarpa), lima bean (Phaseolus lunatus), pigeon pea (Cajanus cajan), cowpea (Vigna unguiculata) and groundnut (Arachis hypogea).

RESULTS

Phytase activity was low in AYB, lima bean and pigeon pea but high in cowpea and groundnut. Phytate content ranged between 3.01 g kg(-1) and 8.95 g kg(-1) while total phosphorus content ranged between 2.63 g kg(-1) and 5.93 g kg(-1). The grain legumes with higher phytase activity recorded the lowest phytate and phosphorus content. During germination there was an initial 4-fold to 35-fold increase in phytase activity after 6-7 days of germination followed by a decrease until 10 days (P < 0.05). The increase in phytase activity during germination was accompanied by a significant reduction in phytate (P < 0.05) and a small but significant increase in total phosphorus.

CONCLUSION

The increase in phytase activity and the accompanying decrease in phytate content could have a positive implication for the nutrition of poultry and ruminants and for the environment.

摘要

背景

谷物豆类作为家禽工业中植酸酶的潜在来源尚未得到充分开发。本研究旨在评估发芽对尼日利亚种植的谷物豆类样本中植酸酶活性、植酸盐和总磷含量的影响。筛选的豆类包括非洲竹芋(AYB,Sphenostylis stenocarpa)、利马豆(Phaseolus lunatus)、兵豆(Cajanus cajan)、豇豆(Vigna unguiculata)和落花生(Arachis hypogea)。

结果

AYB、利马豆和兵豆中的植酸酶活性较低,而豇豆和落花生中的植酸酶活性较高。植酸盐含量在 3.01 g kg(-1) 到 8.95 g kg(-1) 之间,而总磷含量在 2.63 g kg(-1) 到 5.93 g kg(-1) 之间。植酸酶活性较高的谷物豆类记录的植酸盐和磷含量最低。在发芽期间,发芽 6-7 天后,植酸酶活性最初增加了 4 倍到 35 倍,然后下降到 10 天(P < 0.05)。发芽过程中植酸酶活性的增加伴随着植酸盐含量的显著降低(P < 0.05)和总磷含量的微小但显著增加。

结论

植酸酶活性的增加和植酸盐含量的相应降低可能对家禽和反刍动物的营养以及环境产生积极影响。

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