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基础内源钙损失、碳酸钙中钙的标准全肠道消化率和妊娠母猪钙的保留量在妊娠期发生变化,但微生物植酸酶可降低钙的基础内源损失 1 。

Basal endogenous loss, standardized total tract digestibility of calcium in calcium carbonate, and retention of calcium in gestating sows change during gestation, but microbial phytase reduces basal endogenous loss of calcium1.

机构信息

Department of Animal Sciences, University of Illinois, Urbana, IL, USA.

Division of Nutritional Sciences, University of Illinois, Urbana, IL, USA.

出版信息

J Anim Sci. 2019 Apr 3;97(4):1712-1721. doi: 10.1093/jas/skz048.

Abstract

The objective was to test the hypothesis that the standardized total tract digestibility (STTD) of Ca and the response to microbial phytase on STTD of Ca and apparent total tract digestibility (ATTD) of P in diets fed to gestating sows are constant throughout gestation. The second objective was to test the hypothesis that retention of Ca and P does not change during gestation. Thirty-six gestating sows (parity = 3.3 ± 1.5; d of gestation = 7 d) were allotted to 4 diets. Two diets containing 0 or 500 units of microbial phytase per kilogram were based on corn, potato protein concentrate, and calcium carbonate. Two Ca-free diets were also formulated without or with microbial phytase to estimate basal endogenous loss of Ca. Daily feed allowance was 1.5 times the maintenance energy requirement. Sows were housed individually in gestation stalls and fed a common gestation diet, but they were moved to metabolism crates from days 7 to 20 (early gestation), days 49 to 62 (midgestation), and again from days 91 to 104 (late gestation). When sows were in metabolism crates, they were fed experimental diets and feces and urine were quantitatively collected for 4 d after 4 d of adaptation. Results indicated that outcomes were not influenced by the interaction between period of gestation and dietary phytase. The basal endogenous loss of Ca was greater (P < 0.05) by sows in early gestation than by sows in mid- or late-gestation, but supplementation of microbial phytase to the Ca-free diet decreased (P < 0.01) the basal endogenous loss of Ca and tended (P = 0.099) to increase ATTD of P. Supplementation of microbial phytase did not affect ATTD of DM, STTD of Ca, Ca retention, ATTD of P, or P retention in sows fed the calcium carbonate-containing diet. The ATTD of DM was not affected by period of gestation, but the ATTD of Ca, the ATTD of P, and the retention of Ca were least (P < 0.05) in midgestation, followed by early and late gestation, respectively, and the STTD of Ca in midgestation was also reduced (P < 0.05) compared with sows in early or late gestation. Phosphorus retention was greater (P < 0.05) in late gestation than in the earlier periods. In conclusion, Ca retention was less negative and ATTD of P tended to increase with supplementation of microbial phytase to the Ca-free diet regardless of gestation period. The basal endogenous loss, STTD of Ca, ATTD of P, and retention of Ca and P in gestating sows change during gestation with the greatest digestibility values observed in late gestation.

摘要

目的是检验以下假设

在妊娠母猪的日粮中添加微生物植酸酶对钙的标准化总肠道消化率(STTD)和钙的微生物植酸酶对 STTD 和表观总肠道消化率(ATTD)的反应是恒定的,并且整个妊娠期都是如此。第二个目的是检验以下假设:妊娠期钙和磷的保留率不会发生变化。36 头妊娠母猪(胎次=3.3±1.5;妊娠天数=7 天)被分配到 4 种日粮中。两种含有 0 或 500 单位微生物植酸酶/千克的日粮基于玉米、马铃薯蛋白浓缩物和碳酸钙。还配制了两种不含钙的日粮,但添加或不添加微生物植酸酶以估计钙的基础内源性损失。每日饲料供应量为维持能量需求的 1.5 倍。母猪单独饲养在妊娠栏中,饲喂普通妊娠日粮,但在妊娠 7 至 20 天(早期妊娠)、49 至 62 天(中期妊娠)和 91 至 104 天(后期妊娠)再次将它们转移到代谢笼中。当母猪在代谢笼中时,给它们喂食实验日粮,并在适应 4 天后连续 4 天定量收集粪便和尿液。结果表明,结果不受妊娠阶段和日粮植酸酶之间相互作用的影响。早期妊娠母猪的钙基础内源性损失大于中、晚期妊娠母猪(P<0.05),但在不含钙的日粮中添加微生物植酸酶可降低(P<0.01)钙的基础内源性损失,并趋于(P=0.099)增加磷的 ATTD。微生物植酸酶的添加对碳酸钙含量日粮中母猪的 DM 消化率、钙的 STTD、钙保留率、磷的 ATTD 或磷保留率没有影响。DM 消化率不受妊娠阶段的影响,但钙的 ATTD、磷的 ATTD 和钙保留率在中期妊娠时最低(P<0.05),其次是早期和晚期妊娠,中期妊娠的钙 STTD 也低于早期或晚期妊娠的母猪(P<0.05)。磷保留率在后期妊娠时较高(P<0.05)。总之,无论妊娠阶段如何,添加微生物植酸酶都会降低钙的内源性损失,并且磷的 ATTD 趋于增加。妊娠母猪的基础内源性损失、钙的 STTD、磷的 ATTD 以及钙和磷的保留率在妊娠期发生变化,在后期妊娠时观察到最大的消化率值。

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