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991.
马琳 《猪业科学》2021,38(2):46-49
基于2020年3月-2020年10月猪肉价格及新冠肺炎疫情指数,借助VAR模型,定量研究新冠肺炎疫情对于猪肉价格的影响。研究结果表明:新冠肺炎疫情对猪肉价格存在影响,促使猪肉价格上涨,在此基础上文章提出相应措施。  相似文献   
992.
猪丹毒     
猪丹毒又称“红热病” “打火印”或“钻石皮肤病”,是一种急性的、热性的传染病,引起该病的病原为红斑丹毒丝菌,可以通过伤口感染人,也是一种人兽共患病。患病猪的临床表现形式大致可分为3种类型,即急性、亚急性和慢性型。急性型病例主要的表现为出现明显的败血症症状。亚急性型病例则是在四肢、胸腹部、背部等皮肤处出现红色菱形、方形或圆形疹块。慢性型则多以出现关节炎和心内膜炎引起的关节肿胀、运动障碍和心跳加速、呼吸急促为主的临床表现;有时还可见皮肤坏死。红斑丹毒丝菌的最易感动物是猪,没有品种和年龄差异。使用疫苗是最佳的预防手段,治疗方面除使用抗生素外还可以选择中药方剂进行治疗。  相似文献   
993.
文章以畜牧兽医类专业核心课程“猪生产技术”育人目标为出发点,结合“课程思政”的教育理念,阐述“猪生产技术”课程思政实施必要性,探索课程思政元素挖掘和教学实施,将爱国情怀、生态保护、责任担当、职业素养、团队协作、食品安全等思政元素融入课程教学过程中,旨在探索专业课程内容与思政内容融合要点,从而提高学生的专业素养、职业素养和道德水平。  相似文献   
994.
集团猪场代表行业最高技术、管理及现代化水平,迅速发展。特别是2018年非洲猪瘟疫情在我国暴发后,在高风险、高回报的行业背景下,集团化养猪企业凭借资金、人才、技术、硬件设施等优势,采取超额储备种猪的运作模式,进而迅速扩张。超额储备的本质是利用资金充足、场区数量、生物安全等优势,通过统一使用长白或大白公猪配种,育肥场用作种猪场等方式超额储备后备母猪。个别场区清场后可以迅速引种补栏,多余后备母猪、妊娠母猪正常出售回收资金。这种模式可有效降低风险、保证足够盈利,同时在非洲猪瘟疫情的背景下有效整合农业资源、利用商业资金反哺养猪业,指引养猪行业走向。  相似文献   
995.
副猪嗜血杆菌病是一种急性、典型猪传染病,对生猪生长发育的各个阶段都会产生不良影响,对膘情较好的保育阶段仔猪影响最为严重。由于副猪嗜血杆菌血清型多且细菌易产生耐药性,导致诊治困难。目前该病发病率日渐上升,为避免养猪生产因此造成巨大经济损失,需要结合日常预防和治疗,避免此病出现并进一步发展。文章综合叙述了副猪嗜血杆菌病原学、流行病学、临床病变及综合防治,以期为该病的防控与治疗提供参考。  相似文献   
996.
如今空气污染问题仍广泛存在,其中苯并芘(Benzo (a) pyrene,BaP)是一种常见的空气污染物,对人和动物的健康具有严重影响。据报道,BaP可以显著降低卵母细胞IVM (卵母细胞体外成熟)能力,但机制尚不清楚。因此,本研究在猪卵母细胞IVM培养液中添加不同浓度BaP (50 μM、100 μM、200 μM)检测其对卵母细胞IVM能力的影响,并检测此过程SHH信号通路相关基因和蛋白的表达。结果显示50 μM BaP处理组卵母细胞IVM能力显著低于对照组(76.5 vs 68.1,P<0.05),并随着BaP浓度增加进一步下降。同时,qPCR和免疫荧光染色检测发现,50 μM BaP处理组卵母细胞中SHH信号通路相关基因mRNA和蛋白表达量,均显著低于对照组(P<0.05)。因此,本研究初步证明BaP可能通过破坏SHH信号通路降低猪卵母细胞IVM能力。  相似文献   
997.
疫病一直是生猪养殖中影响猪群健康的重要因素,受到疾病影响的猪群会给养殖户带来巨大的经济损失,严重阻碍养殖业的发展。该文将简要概述猪丹毒和猪肺疫的病理状况,分析猪丹毒和猪肺疫混合感染的发病特征和临床症状,并研究综合诊治猪丹毒和猪肺疫混合感染的方法,降低猪丹毒和猪肺疫混合感染对生猪养殖的影响。  相似文献   
998.
Necrotic enteritis (NE) is an important enteric disease in poultry and has become a major concern in poultry production in the post-antibiotic era. The infection with NE can damage the intestinal mucosa of the birds leading to impaired health and, thus, productivity. To gain a better understanding of how NE impacts the gut function of infected broilers, global mRNA sequencing (RNA-seq) was performed in the jejunum tissue of NE challenged and non-challenged broilers to identify the pathways and genes affected by this disease. Briefly, to induce NE, birds in the challenge group were inoculated with 1 mL of Eimeria species on day 9 followed by 1 mL of approximately 108 CFU/mL of a NetB producing Clostridium perfringens on days 14 and 15. On day 16, 2 birds in each treatment were randomly selected and euthanized and the whole intestinal tract was evaluated for lesion scores. Duodenum tissue samples from one of the euthanized birds of each replicate (n = 4) was used for histology, and the jejunum tissue for RNA extraction. RNA-seq analysis was performed with an Illumina RNA HiSeq 2000 sequencer. The differentially expressed genes (DEG) were identified and functional analysis was performed in DAVID to find protein–protein interactions (PPI). At a false discovery rate threshold <0.05, a total of 377 DEG (207 upregulated and 170 downregulated) DEG were identified. Pathway enrichment analysis revealed that DEG were considerably enriched in peroxisome proliferator-activated receptors (PPAR) signaling (P < 0.01) and β-oxidation pathways (P < 0.05). The DEG were mostly related to fatty acid metabolism and degradation (cluster of differentiation 36 [CD36], acyl-CoA synthetase bubblegum family member-1 [ACSBG1], fatty acid-binding protein-1 and -2 [FABP1] and [FABP2]; and acyl-coenzyme A synthetase-1 [ACSL1]), bile acid production and transportation (acyl-CoA oxidase-2 [ACOX2], apical sodium–bile acid transporter [ASBT]) and essential genes in the immune system (interferon-, [IFN-γ], LCK proto-oncogene, Src family tyrosine kinase [LCK], zeta chain of T cell receptor associated protein kinase 70 kDa [ZAP70], and aconitate decarboxylase 1 [ACOD1]). Our data revealed that pathways related to fatty acid digestion were significantly compromised which thereby could have affected metabolic and immune responses in NE infected birds.  相似文献   
999.
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   
1000.
There are appreciable does of raffinose in soybean, but the impacts of raffinose on pigs are poorly investigated. We used 2 experiments to investigate the influence of soybean raffinose on growth performance, digestibility, humoral immunity and intestinal morphology of growing pigs. In Exp. 1, a total of 30 crossbred (Duroc × Landrace × Yorkshire) barrows (21.93 ± 0.43 kg) were randomly divided into 3 groups, and were fed with the control diet, the control diets supplemented with 0.2% and 0.5% raffinose, respectively, for 21 d. Results showed that the addition of 0.2% or 0.5% raffinose reduced (P < 0.05) average daily feed intake (ADFI), average daily gain (ADG) and nutrient digestibility, and dietary 0.5% raffinose increased the ratio of feed to gain (P < 0.05). For serum indexes, dietary 0.5% raffinose decreased growth hormone and increased glucagon-like peptide-2, immunoglobulin G, tumor necrosis factor-α (TNF-α) and interleukin-6 concentration (P < 0.05). In Exp. 2, a total of 24 crossbred barrows (38.41 ± 0.45 kg) were randomly divided into 3 groups, and were fed with the control diet (ad libitum), the raffinose diet (0.5% raffinose, ad libitum), and the control diet in the same amount as the raffinose group (feed-pair group) for 14 d, respectively. Compared with the control diet, dietary 0.5% raffinose decreased ADFI (P < 0.05). Intriguingly, the raffinose group had lower ADG than the feed-pair group, lower nutrient digestibility, lower amylase activity in duodenum, lower amylase, lipase and trypsin activities in jejunum and higher TNF-α concentration in serum compared with the other 2 groups, and a higher ratio of villus height to crypt depth compared with the control group (P < 0.05). These results showed that soybean raffinose could reduce feed voluntary intake and body gain while improving intestinal morphology without a significant negative influence on immunity. Taken together, dietary raffinose could decrease growth performance by reducing both feed intake and nutrient digestibility while inducing humoral immune response of growing pigs.  相似文献   
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