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杂交阉牛的剩余采食量与淋巴细胞线粒体复合蛋白浓度及比率之间的关系。

Relationship between residual feed intake and lymphocyte mitochondrial complex protein concentration and ratio in crossbred steers.

作者信息

Davis M P, Brooks M A, Kerley M S

出版信息

J Anim Sci. 2016 Apr;94(4):1587-91. doi: 10.2527/jas.2015-9843.

Abstract

Rate of oxygen uptake by muscle mitochondria and respiratory chain protein concentrations differed between high- and low-residual feed intake (RFI) animals. The hypothesis of this research was that complex I (CI), II (CII), and III (CIII) mitochondria protein concentrations in lymphocyte (blood) mitochondria were related to the RFI phenotype of beef steers. Daily feed intake (ADFI) was individually recorded for 92 Hereford-crossbreed steers over 63 d using GrowSafe individual feed intake system. Predicted ADFI was calculated as the regression of ADFI on ADG and midtest BW. Difference between ADFI and predicted ADFI was RFI. Lymphocytes were isolated from low-RFI (-1.32 ± 0.11 kg/d; = 10) and high-RFI (1.34 ± 0.18 kg/d; = 8) steers. Immunocapture of CI, CII, and CIII proteins from the lymphocyte was done using MitoProfile CI, CII, and CIII immunocapture kits (MitoSciences Inc., Eugene, OR). Protein concentrations of CI, CII, and CIII and total protein were quantified using bicinchoninic acid colorimetric procedures. Low-RFI steers consumed 30% less ( = 0.0004) feed and had a 40% improvement ( < 0.0001) in feed efficiency compared with high-RFI steers with similar growth ( = 0.78) and weight measurements ( > 0.65). High- and low-RFI steers did not differ in CI ( = 0.22), CII ( = 0.69), and CIII ( = 0.59) protein concentrations. The protein concentration ratios for CI to CII ( = 0.03) were 20% higher and the ratios of CI to CIII ( = 0.01) were 30% higher, but the ratios of CII to CIII ( = 0.89) did not differ when comparing low-RFI steers with high-RFI steers. The similar magnitude difference in feed intake, feed efficiency measurements, and CI-to-CIII ratio between RFI phenotypes provides a plausible explanation for differences between the phenotypes. We also concluded that mitochondria isolated from lymphocytes could be used to study respiratory chain differences among differing RFI phenotypes. Further research is needed to determine if lymphocyte mitochondrial complex proteins can be used for identification of RFI phenotype.

摘要

高残留采食量(RFI)和低残留采食量的动物之间,肌肉线粒体的氧气摄取率以及呼吸链蛋白浓度存在差异。本研究的假设是,淋巴细胞(血液)线粒体中的复合体I(CI)、II(CII)和III(CIII)线粒体蛋白浓度与肉牛的RFI表型有关。使用GrowSafe个体采食量系统,在63天内对92头赫里福德杂交肉牛的每日采食量(ADFI)进行了单独记录。预测的ADFI通过ADFI对平均日增重(ADG)和测试中期体重(BW)的回归计算得出。ADFI与预测ADFI之间的差值即为RFI。从低RFI(-1.32±0.11千克/天;n = 10)和高RFI(1.34±0.18千克/天;n = 8)的肉牛中分离出淋巴细胞。使用MitoProfile CI、CII和CIII免疫捕获试剂盒(MitoSciences公司,俄勒冈州尤金市)从淋巴细胞中免疫捕获CI、CII和CIII蛋白。使用二辛可宁酸比色法对CI、CII和CIII的蛋白浓度以及总蛋白进行定量。与具有相似生长(P = 0.78)和体重测量值(P > 0.65)的高RFI肉牛相比,低RFI肉牛的采食量减少了30%(P = 0.0004),饲料效率提高了40%(P < 0.0001)。高RFI和低RFI肉牛在CI(P = 0.22)、CII(P = 0.69)和CIII(P = 0.59)蛋白浓度上没有差异。在比较低RFI肉牛和高RFI肉牛时,CI与CII的蛋白浓度比(P = 0.03)高出20%,CI与CIII的蛋白浓度比(P = 0.01)高出30%,但CII与CIII的蛋白浓度比(P = 0.89)没有差异。RFI表型之间在采食量、饲料效率测量值以及CI与CIII的比例上存在相似程度的差异,这为不同表型之间的差异提供了一个合理的解释。我们还得出结论,从淋巴细胞中分离出的线粒体可用于研究不同RFI表型之间的呼吸链差异。需要进一步研究以确定淋巴细胞线粒体复合蛋白是否可用于识别RFI表型。

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