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苜蓿()的分子结构与微生物合成、代谢蛋白质的沉默和减少蛋白质降解和消化有关。

Silencing and Decreased Protein Degradation and Digestion, Microbial Synthesis, and Metabolic Protein in Relation to Molecular Structures of Alfalfa ().

机构信息

Department of Animal and Poultry Science, College of Agriculture and Bioresources , University of Saskatchewan , 51 Campus Drive , Saskatoon , Saskatchewan S7N5A8 , Canada.

London Research and Development Centre , Agriculture and Agri-Food Canada , 1391 Sandford Street , London , Ontario N5 V 4T3 , Canada.

出版信息

J Agric Food Chem. 2019 Jul 17;67(28):7898-7907. doi: 10.1021/acs.jafc.9b02317. Epub 2019 Jul 8.

Abstract

This study aimed to explore the effects of silencing and genes on protein utilization characteristics of alfalfa. Ground samples of 11 HB12-silenced (HB12i), 5 TT8-silenced (TT8i) and 4 wild type (WT) were incubated in a Daisy II incubator with N labeled ammonium sulfate for 0, 4, 8, 12, and 24 h. CP degradation and degradational kinetics, microbial nitrogen fractions, and protein metabolic profiles were determined. Moreover, relationships between protein profiles and FTIR spectral parameters were estimated. Results showed that transgenic alfalfa had lower CP degradation, microbial protein, and total available protein compared with WT, especially for HB12i. In addition, CP degradation and protein metabolic profiles were closely correlated with FTIR spectral parameters and thereby could be predicted from spectral parameters. In conclusion, silencing of and genes in alfalfa decreased protein degradational and metabolic profiles, which were predictable with FTIR spectral parameters.

摘要

本研究旨在探索沉默和基因对紫花苜蓿蛋白利用特性的影响。将 11 株 HB12 沉默(HB12i)、5 株 TT8 沉默(TT8i)和 4 株野生型(WT)的苜蓿地面样本在 Daisy II 孵育箱中用 N 标记的硫酸铵孵育 0、4、8、12 和 24 h。测定 CP 降解和降解动力学、微生物氮分馏和蛋白质代谢谱。此外,还估计了蛋白质谱与 FTIR 光谱参数之间的关系。结果表明,与 WT 相比,转基因苜蓿 CP 降解、微生物蛋白和总有效蛋白较低,尤其是 HB12i。此外,CP 降解和蛋白质代谢谱与 FTIR 光谱参数密切相关,因此可以从光谱参数预测。总之,苜蓿中基因的沉默降低了蛋白质的降解和代谢谱,这可以通过 FTIR 光谱参数来预测。

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