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101.
以1年生红鳞蒲桃盆栽苗木为研究对象,设置不同盐胁迫浓度及干旱程度,研究盐旱交互作用对红鳞蒲桃苗木的高、地径生长和各项生理指标的影响。结果表明:干旱和盐胁迫都抑制了红鳞蒲桃的生长,盐胁迫的影响要大于干旱胁迫,高生长受到的限制大于地径生长,2 g/kg盐分浓度在水分充足条件下促进了地径生长。相对电导率和丙二醛含量均随着干旱和盐胁迫的增强而增大。不同盐分浓度下,干旱胁迫对相对电导率的影响趋势一致,不同盐分胁迫的影响差异不显著。高盐浓度下丙二醛含量的增加显著大于低盐浓度,表明盐胁迫对红鳞蒲桃的伤害更大;红鳞蒲桃的渗透调节物质在干旱和盐交互胁迫下有一定程度的提高。水分充足时,盐分浓度的变化没有对红鳞蒲桃的游离脯氨酸含量产生影响。随着胁迫的增加,渗透调节能力显著提高。低盐浓度下,抗氧化酶活性在水分充足时没有受到显著影响,高盐浓度下,随着干旱胁迫的加剧则显著提高。 相似文献
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为了解规模鸡场两种环境细菌在禁抗前后耐药性的变化,以评估使用抗菌药对养殖场用药的影响,通过对禁抗前以及禁抗6个月后规模鸡场的环境进行采样,培养分离大肠杆菌和金黄色葡萄球菌(金葡菌),然后针对15种常见抗菌药物开展药敏试验,并对敏感性进行比对。结果显示:禁抗前规模鸡场分离的大肠杆菌对妥布霉素、林可霉素、头孢拉定、卡拉霉素等较敏感,而对磺胺异噁唑、土霉素、头孢唑林和青霉素等耐药;金葡菌对头孢曲松、卡拉霉素、头孢唑啉、氟苯尼考等较敏感,而对土霉素、磺胺异噁唑、庆大霉素、妥布霉素等耐药。禁抗6个月后,两种细菌对大部分抗菌药的敏感性都有不同程度的增加,但对土霉素、磺胺异噁唑、氟苯尼考、青霉素等的敏感性增加不多甚至有降低。结果表明禁抗总体上可以增强鸡场环境中两种细菌对抗菌药的敏感性,降低耐药性。本文为指导规模鸡场禁用和科学使用抗菌药物提供了数据支持。 相似文献
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非洲猪瘟(ASF)目前是生猪产业最重要的猪病。因为非洲猪瘟病毒(ASFV)本身的复杂性,以及和宿主相互作用的复杂性导致ASF已经被报道一百年了,还没有商业化疫苗。理想的ASF疫苗不仅要有好的免疫保护性,更重要的是其安全性,同时如果能区分野毒感染和疫苗接种,能在适合的高质量GMP车间进行稳定低价的生产,能用于不同物种就更好了。ASF灭活疫苗研制这条道路似乎不通;亚单位疫苗、DNA疫苗、病毒活载体疫苗的免疫保护能力不足;主要包含自然缺失、传代致弱、基因工程缺失的减毒活疫苗在免疫保护方面体现了非常大的优势,但是其潜在的持续感染风险,会造成猪只的副作用,包括皮肤溃烂、关节炎,导致神经系统、呼吸系统的损伤等问题非常值得警惕。复制缺陷单周期病毒能有效地解决减毒活疫苗的安全性问题,似乎是一个值得尝试的ASF疫苗研制方向,尽管存在难以确定缺失复制相关的基因,以及难以构建能高效表达缺失基因编码蛋白,且能让单周期病毒稳定大量生产的辅助细胞系。我国针对ASFV强毒的精准剔除策略,未注册非法弱毒苗造成临床严重损失,以及一些不使用疫苗但成功从国家层面净化ASF的案例,让我们认识到针对ASF基础研究的重要性。同时至少目前阶段,ASF的防控不一定要借助疫苗,更多的要做好生物安全管控和区域ASF净化。尽管ASF疫苗研制困难重重,但针对ASF理想型疫苗的研制也应该持续进行下去,未来可能作为ASF防控的一个突破点。 相似文献
107.
Chengquan Tan Yongcheng Ji Xichen Zhao Zhongquan Xin Jiaying Li Shuangbo Huang Zhiying Cui Lijun Wen Caihua Liu Sung Woo Kim Jinping Deng Yulong Yin 《动物营养(英文)》2021,7(1):111
Increased metabolic burdens in breeding sows, which are induced by elevated systemic oxidative stress, could increase the need for nucleotides to repair lymphocyte DNA damage; however, de novo synthesis of nucleotides may be insufficient to cover this increased need. This study investigated the effects of dietary nucleotides on milk composition, oxidative stress status, and the reproductive and lactational performance of sows. Forty multiparous sows were assigned to 2 dietary treatments (Control group, and 1 g/kg Nucleotides group) based on a randomized complete block design using their BW at 85 d of gestation as a block. Sows from 2 groups were fed a restricted diet during gestation and ad libitum during lactation. The experiment lasted from 85 d of gestation to 21 d of lactation. The reproductive performance of sows and the growth performance of suckling piglets were measured. Oxidative stress parameters and milk components were also analysed. Data were analyzed using contrasts in the MIXED procedure of SAS. Sows in the Nucleotides group consumed more feed during the first week (P < 0.01) and from 1 to 21 d (P < 0.05) of lactation than those in Control group. Correspondingly, the litter weight gain of piglets showed a tendency to increase from cross-fostering to 9 d (P = 0.09) and from cross-fostering to 20 d (P = 0.10) in the Nucleotides group relative to the Control group. Additionally, the Nucleotides group was higher (P < 0.01) than the Control group in the concentrations of uridine 5''monophosphate, guanosine 5''monophosphate, inosine 5''monophosphate, adenosine 5''monophosphate and total nucleotides in milk. Furthermore, the Nucleotides group was higher (P < 0.01) than the Control group in the serum levels of total antioxidant capacity (P < 0.01) for sows at 109 d of gestation and glutathione peroxidase for weaning piglets, but lower at the levels of thiobarbituric acid-reactive substances (P < 0.05) in serum of weaning piglets. This study indicated that maternal dietary nucleotides could promote piglet growth, probably due to the higher lactational feed intake and higher concentration of nucleotides in the milk of sows, and lower oxidative stress for both sows and piglets. 相似文献
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Yanfen Ma Ying Feng Liwen Song Muyang Li Hongyu Dai Hua Bao Guijie Zhang Lei Zhao Chunhua Zhang Jing Yi Yusheng Liang 《动物营养(英文)》2021,7(1):206
Peripartal cows often experience negative energy balance, and are therefore prone to suffering from metabolic diseases such as hyperketonemia, which causes financial losses in dairy farms. This study aimed to investigate the effect of green tea polyphenol (GTP) supplementation during the periparturient period on production performance, oxidative stress and immunometabolism in dairy cows with hyperketonemia. One hundred Holstein cows were assigned to GTP (0.2 g/kg DM; n = 50) or control (without GTP; n = 50) group based on body weight, previous milk yield, and parity on d 15 before expected parturition. Subsequently, 10 cows with hyperketonemia were selected from each group, according to blood β-hydroxybutyric acid (BHBA) concentration between 1.2 and 2.9 mmol/L from 2 to 3 d postpartum. All cows were fed a close-up diet and a lactation diet with or without GTP supply from 15 d prepartum until 30 d postpartum. Milk and blood samples were obtained from 20 cows selected with hyperketonemia on 10, 20, and 30 d postpartum. Compared with control cows, greater milk yield and lower somatic cell count were observed in GTP cows. The GTP group had lower concentrations of BHBA, free fatty acids, cholesterol, triglyceride, reactive oxygen species, malondialdehyde, and hydrogen peroxide, greater concentrations of glucose, lower activities of aspartate aminotransferase, alanine aminotransferase, and glutamyl transpeptidase, alongside greater activities of superoxide dismutase, glutathione peroxidase, and total antioxidant capacity. Additionally, GTP supplementation up-regulated concentrations of interleukin-6 and interleukin-10, but down-regulated concentrations of tumor necrosis factor-α, interleukin-1β, interleukin-2, interleukin-8, and interferon-γ in plasma. Greater concentrations of plasma immunoglobulin G were also detected in the GTP group. Overall, the data suggested that GTP supplementation from 15 d prepartum to 30 d postpartum improved the milk yield and health status in cows with hyperketonemia during early lactation. 相似文献
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