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Journal of Zhejiang University SCIENCE B

ISSN 1673-1581(Print), 1862-1783(Online), Monthly

Effects of glyphosate, antibiotics, and an anticoccidial drug on pancreatic gene expression and blood physiology in broilers

Abstract: Drugs and pesticide residues in broiler feed can compromise the therapeutic and production benefits of antibiotic (ANT) application and affect gene expression. In this study, we analyzed the expression of 13 key pancreatic genes and blood physiology parameters after administering one maximum residue limit of herbicide glyphosate (GLY), two ANTs, and one anticoccidial drug (AD). A total of 260 Ross 308 broilers aged 1‍–‍40 d were divided into the following four groups of 65 birds each: control group, which was fed the main diet (MD), and three experimental groups, which were fed MD supplemented with GLY, GLY+ANTs (enrofloxacin and colistin methanesulfonate), and GLY+AD (ammonium maduramicin), respectively. The results showed that the addition of GLY, GLY+ANTs, and GLY+AD caused significant changes in the expression of several genes of physiological and economic importance. In particular, genes related to inflammation and apoptosis (interleukin 6 (IL6), prostaglandin-endoperoxide synthase 2 (PTGS2), and caspase 6 (CASP6)) were downregulated by up to 99.1%, and those related to antioxidant protection (catalase (CAT), superoxide dismutase 1 (SOD1) and peroxiredoxin 6 (PRDX6)) by up to 98.6%, compared to controls. There was also a significant decline in the values of immunological characteristics in the blood serum observed in the experimental groups, and certain changes in gene expression were concordant with changes in the functioning of the pancreas and blood. The changes revealed in gene expression and blood indices in response to GLY, ANTs, and AD provide insights into the possible mechanisms of action of these agents at the molecular level. Specifically, these changes may be indicative of physiological mechanisms to overcome the negative effects of GLY, GLY+ANTs, and GLY+AD in broilers.

Key words: Glyphosate; Antibiotic; Anticoccidial drug; Pancreas; Broiler; Gene expression; Blood parameter

Chinese Summary  <4> 非同时可用同类机可中断调度问题的最优算法

周昊1,曹丽萍2,魏麒3,舒振宇4,蒋义伟2
1浙江树人学院基础学院,中国杭州市,310015
2浙江工商大学管理工程与电子商务学院,中国杭州市,310018
3宁波财经学院国际经济贸易学院,中国宁波市,315175
4浙大宁波理工学院计算机与数据工程学院,中国宁波市,315100
摘要:研究了m台可用时间不同的同类机可中断调度问题,目标是极小化最大完工时间。每台机器都有一个不同的加工速度和可用时间。通过将真实机器转化成虚拟机器的方法给出最优调度目标值的下界。在这些虚拟机器中,可用时间越早的机器在任何时候都有更快的速度。对该问题,给出一个时间复杂度为O(nm+m2)的最优调度算法,并且该算法的中断次数不超过(n代表工件数量)。

关键词组:最优算法;可中断调度;同类机;非同时可用时间


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DOI:

10.1631/jzus.B2300767

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On-line Access:

2025-02-26

Received:

2023-10-25

Revision Accepted:

2024-02-07

Crosschecked:

2025-02-27

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