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Daily rhythms of cloacal temperature in broiler chickens of different age groups administered with zinc gluconate and probiotic during the hot‐dry season

机译:在干热季节服用葡萄糖酸锌和益生菌的不同年龄组肉鸡的泄殖腔温度的日常节律

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摘要

The aim of the experiment was to evaluate effects of zinc gluconate (ZnGlu) and probiotic administration on the daily rhythm of cloacal temperature (t cloacal) in broiler chickens of different age groups during the hot‐dry season. One‐day‐old broiler chicks (n = 60) were divided into groups I–IV of 15 chicks per group, and treated for 35 days: Group I (control) was given deionized water; Group II, ZnGlu (50 mg/kg); Group III, probiotic (4.125 × 10cfu/100 mL), and Group IV, ZnGlu (50 mg/kg) + probiotic (4.125 × 10cfu/100 mL). Air dry‐bulb temperature (t db), relative humidity (RH), and temperature‐humidity index (THI) inside the pen, and t cloacal of each broiler chick were obtained bihourly over a 24‐h period; on days 21, 28, and 35 of the study. Values of tdb (32.10 ± 0.49°C), RH (49.94 ± 1.91%), and THI (38.85 ± 0.42) obtained were outside the thermoneutral zone for broiler chickens, and suggested that the birds were subjected to heat stress. Application of the periodic model showed disruption of daily rhythm of t cloacal in broilers on day 21, which was synchronized by probiotic administration. The administration of probiotics or ZnGlu + probiotics to a greater extent decreased the mesor and amplitude, delayed the acrophases of t cloacal in broilers, especially at day 35, as compared to the controls. Overall, the t cloacal values in broiler chickens administered with probiotic alone (41.25 ± 0.05°C) and ZnGlu + probiotic (41.52 ± 0.05°C) were lower (P < 0.001) than that of the controls (41.94 ± 0.06°C). In conclusion, probiotic alone synchronized t cloacal of the birds at day 21, and, in addition, decreased t cloacal response most, followed by its coadministration with ZnGlu, the antioxidants may be beneficial in modulating daily rhythmicity of tcloacal and alleviating adverse effects of heat stress on broiler chickens during the hot‐dry season.
机译:该实验的目的是评估葡萄糖酸锌(ZnGlu)和益生菌施用对干热季节不同年龄组肉鸡泄殖腔温度(t泄殖腔)日节律的影响。将一天大的肉仔鸡(n = 60)分为I–IV组,每组15只小鸡,并治疗35天:I组(对照组)给予去离子水;第二组ZnGlu(50 mg / kg);第三组,益生菌(4.125×10 6 cfu / 100mL),第四组,ZnGlu(50mg / kg)+益生菌(4.125×10 6 cfu / 100mL)毫升)。围栏内的空气干球温度(t db),相对湿度(RH)和温度湿度指数(THI),以及每只肉鸡的泄殖腔在24小时内每两小时获取一次;在研究的第21、28和35天。所获得的tdb(32.10±0.49°C),RH(49.94±1.91%)和THI(38.85±0.42)的值不在肉鸡的热中性区范围内,这表明这些鸟受到热应激。周期模型的应用显示,在第21天,肉鸡的t泄殖腔的每日节律受到破坏,这可通过益生菌给药同步进行。与对照组相比,益生菌或ZnGlu +益生菌的施用在很大程度上降低了肉鸡的中膜和幅度,延迟了肉鸡t泄殖腔的顶相,尤其是在第35天。总体而言,单独施用益生菌(41.25±0.05°C)和ZnGlu +益生菌(41.52±0.05°C)的肉鸡的t泄殖腔值低于对照(41.94±0.06°C)(P <0.001) 。总之,仅益生菌在第21天就能使家禽的泄殖腔同步化,此外,大部分泄殖腔反应降低,然后与ZnGlu并用,抗氧化剂可能有利于调节泄殖腔的日常节律并减轻热的不利影响干热季节对肉鸡的压力很大。

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