Rimbach G, Pallauf J
Institute of Animal Nutrition, Justus-Liebig-University Giessen.
Z Ernahrungswiss. 1993 Dec;32(4):308-15. doi: 10.1007/BF01611169.
A study with three groups, each with 11 male, individually housed albino rats (initial average weight = 50 g) was undertaken to examine the effect of microbial phytase (added to a diet containing phytate) on the availability of zinc. The rats were fed diets on the basis of soy protein isolate and corn starch over a 3-week period. All diets contained 15-16 mg Zn/kg diet and 0.40% PA. Thus, molar PA:Zn-ratios of 26:1 were obtained. Group I (control) was fed the phytase-free basal diet. In groups II (pair-fed to group I) and III, 1,000 U of microbial phytase (Aspergillus niger var. van tighem) per kg diet were added. Some rats fed the phytase-free basal diet (control) showed typical symptoms of zinc deficiency, including cyclic changes in food intake, anorexia and partial alopecia. By the addition of 1,000 U microbial phytase the apparent absorption of zinc (percent of intake) significantly increased from 33% (control) to 63% (1,000 U, pair-fed) and 66% (1,000 U, ad lib.). Similar positive effects of the phytase-supplementation were observed for three zinc status parameters in plasma, zinc-concentration, percent unsaturated zinc-binding capacity, activity of alkaline phosphatase and the zinc-concentration in femur and testes. The present study shows that an addition of microbial phytase to phytate-rich diets based on soy protein isolate considerably improves the availability of zinc in growing rats.
进行了一项研究,分为三组,每组有11只单独饲养的雄性白化大鼠(初始平均体重 = 50克),以研究微生物植酸酶(添加到含植酸盐的日粮中)对锌利用率的影响。在3周的时间内,给大鼠喂食以大豆分离蛋白和玉米淀粉为基础的日粮。所有日粮均含有15 - 16毫克锌/千克日粮和0.40%的植酸。因此,获得的植酸与锌的摩尔比为26:1。第一组(对照组)喂食不含植酸酶的基础日粮。第二组(与第一组配对喂食)和第三组在每千克日粮中添加1000单位的微生物植酸酶(黑曲霉变种范蒂根)。一些喂食不含植酸酶基础日粮(对照组)的大鼠出现了典型的锌缺乏症状,包括食物摄入量的周期性变化、厌食和局部脱毛。通过添加1000单位的微生物植酸酶,锌的表观吸收率(摄入量的百分比)从33%(对照组)显著提高到63%(1000单位,配对喂食)和66%(1000单位,自由采食)。在血浆中的三个锌状态参数、锌浓度、不饱和锌结合能力百分比、碱性磷酸酶活性以及股骨和睾丸中的锌浓度方面,也观察到了植酸酶补充的类似积极效果。本研究表明,在以大豆分离蛋白为基础的富含植酸盐的日粮中添加微生物植酸酶,可显著提高生长大鼠对锌的利用率。