Literature DB >> 22499872

Evaluation of the compositional and nutritional values of phytase transgenic corn to conventional corn in roosters.

C Q Gao1, Q G Ma, C Ji, X G Luo, H F Tang, Y M Wei.   

Abstract

Three experiments were conducted to evaluate the compositional and nutritional values of corn grains [phytase transgenic corn (PTC) and isogenic conventional corn (CC)] and compare the efficacy of corn-based phytase and extraneous microbial phytase for enhancing the utilization of phytate phosphorus (P) in single corn or corn-soybean mixed meals (corn:soybean = 2.5:1, wt:wt) fed to roosters. Following a 48-h fasting period, 16 roosters were given 50 g of each sample via crop intubation and excreta were collected for 48 h. Nitrogen-free and phosphorus-free diets were used to evaluate endogenous amino acid and endogenous P losses, respectively. Chemical composition was not different between PTC and CC, whereas the phytase content for PTC was greater than CC (8,047 vs. 37 FTU/kg of corn, DM basis; P < 0.001). No difference was observed in the TME and true amino acid availability values between the PTC and CC in roosters. The true P utilization for PTC was greater than CC (37.92 vs. 55.85%; P < 0.001), and CC and PTC contained 0.13 and 0.19% available P (AP, DM basis; P < 0.001), respectively. There was no difference in P utilization (72.76 vs. 70.23%; P > 0.05) between roosters fed PTC and extraneous microbial phytase in equivalent FTU/kg of diets. The results of this study indicated that the chemical composition, TME, and true amino acid availability in PTC are essentially equivalent to that in CC, and the true P utilization for roosters is higher in PTC than in CC. Corn expressing phytase is as efficacious as equivalent microbial phytase when supplemented in corn-soybean diets for chickens.

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Year:  2012        PMID: 22499872     DOI: 10.3382/ps.2011-01915

Source DB:  PubMed          Journal:  Poult Sci        ISSN: 0032-5791            Impact factor:   3.352


  7 in total

1.  Effect of dietary phytase transgenic corn on physiological characteristics and the fate of recombinant plant DNA in laying hens.

Authors:  Chunqi Gao; Qiugang Ma; Lihong Zhao; Jianyun Zhang; Cheng Ji
Journal:  Asian-Australas J Anim Sci       Date:  2014-01       Impact factor: 2.509

2.  Comparative Proteomics of Leaves from Phytase-Transgenic Maize and Its Non-transgenic Isogenic Variety.

Authors:  Yanhua Tan; Xiaoping Yi; Limin Wang; Cunzhi Peng; Yong Sun; Dan Wang; Jiaming Zhang; Anping Guo; Xuchu Wang
Journal:  Front Plant Sci       Date:  2016-08-17       Impact factor: 5.753

3.  Proteomic analysis of phytase transgenic and non-transgenic maize seeds.

Authors:  Yanhua Tan; Zheng Tong; Qian Yang; Yong Sun; Xiang Jin; Cunzhi Peng; Anping Guo; Xuchu Wang
Journal:  Sci Rep       Date:  2017-08-23       Impact factor: 4.379

4.  Effects of Phytase Transgenic Maize on the Physiological and Biochemical Responses and the Gut Microflora Functional Diversity of Ostrinia furnacalis.

Authors:  Xiao Hui Xu; Yinghui Guo; Hongwei Sun; Fan Li; Shuke Yang; Rui Gao; Xingbo Lu
Journal:  Sci Rep       Date:  2018-03-13       Impact factor: 4.379

5.  Detection of transgenic and endogenous plant DNA fragments and proteins in the digesta, blood, tissues, and eggs of laying hens fed with phytase transgenic corn.

Authors:  Qiugang Ma; Chunqi Gao; Jianyun Zhang; Lihong Zhao; Wenbo Hao; Cheng Ji
Journal:  PLoS One       Date:  2013-04-08       Impact factor: 3.240

6.  The correlationship between the metabolizable energy content, chemical composition and color score in different sources of corn DDGS.

Authors:  Yong-Z Jie; Jian-Y Zhang; Li-H Zhao; Qiu-G Ma; Cheng Ji
Journal:  J Anim Sci Biotechnol       Date:  2013-09-25

7.  Influence of Phytase Transgenic Corn on the Intestinal Microflora and the Fate of Transgenic DNA and Protein in Digesta and Tissues of Broilers.

Authors:  Lin Lu; Jiang Guo; Sufen Li; Ang Li; Liyang Zhang; Zhenhua Liu; Xugang Luo
Journal:  PLoS One       Date:  2015-11-23       Impact factor: 3.240

  7 in total

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