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61.
62.
建立了高效液相色谱串联质谱(HPLC—MS/MS)法用于乙酰甲喹及其6种主要代谢物的检测。将65只健康白羽鸡分为两组,10只为空白对照组,其余为试验组。试验组施以20mg/kgb.w.灌胃乙酰甲喹悬浊液,1d2次,连续3d。在给药结束后2、4、6、12、16、24、30、36、48、72、120h分别宰杀5只鸡,采集血液和可食性组织(肌肉、肝脏、肾脏和皮脂)样品。结果表明:乙酰甲喹原药在组织和血浆中迅速消除;乙酰甲喹的代谢物广泛存在于鸡的可食性组织和血浆中;代谢物的残留消除过程较为复杂,代谢物在肌肉和肝脏中残留量较多,在皮脂中残留时间最长。研究结果将有助干榍示7.酷甲喹存鸡体内的砖留消除期,律.  相似文献   
63.
为揭示杏树次生代谢物质含量与小蠹虫危害的关系,通过对小蠹虫不同危害程度的杏树树皮和树叶中的次生代谢物质(黄酮、单宁、总酚)质量分数进行研究,用方差分析和相关性分析判断各个次生代谢物质质量分数的变化与小蠹虫危害之间的关系。结果表明:不同危害程度的杏树,叶片中这3个次生代谢物质的质量分数间均无显著差异(P0.05);不同危害程度的杏树皮中黄酮和总酚质量分数之间存在显著差异(P0.05);不同危害程度的树皮中的单宁质量分数间无显著差异。经过相关性分析,受害程度与树皮中的次生代谢物质(黄酮、单宁、总酚)质量分数呈负相关性,总酚质量分数与受害程度的相关性最大,黄酮次之,单宁最小,其中与总酚在8月的相关性最大为(r=-0.878**),与单宁质量分数相关性在6月最小(r=-0.280)。  相似文献   
64.
Blood metabolites in wild and seventh-generation cultivated shrimp were measured to determine how size-based selection could alter the nutritional and immunological conditions of Litopenaeus vannamei. Wild L. vannamei juveniles and a sample of seventh-generation cultured shrimp were acclimated under identical conditions. During 55 days, shrimp were fed a high (HCHO: 44%) or a low (LCHO: 3%) carbohydrate diet for 55 days. Wild shrimp showed a direct relation between dietary CHO and lactate, protein and hemocyte levels indicating that dietary CHO was used for protein synthesis via transamination pathways. In seventh-generation cultured shrimp these parameters were inversely proportional to dietary CHO level, indicating the capacity to synthesize protein from dietary CHO was repressed in cultured shrimp. Farmed shrimp showed a limited capacity to respond to LCHO diets demonstrating high protein dependence in their metabolism and immune response. These results demonstrate that during size-based breeding programs other metabolic process than CHO catabolism can be selected. The incapacity of shrimp to use dietary CHO could limit protein reduction of diets and limit the efforts of the shrimp industry to be ecologically and environmentally profitable.  相似文献   
65.
Due to taxonomic positions and special living environments, marine organisms produce secondary metabolites that possess unique structures and biological activities. This review is devoted to recently isolated and/or earlier described marine compounds with potential or established cancer preventive activities, their biological sources, molecular mechanisms of their action, and their associations with human health and nutrition. The review covers literature published in 2003–2013 years and focuses on findings of the last 2 years.  相似文献   
66.
Two sponge-derived actinomycetes, Actinokineospora sp. EG49 and Nocardiopsis sp. RV163, were grown in co-culture and the presence of induced metabolites monitored by 1H NMR. Ten known compounds, including angucycline, diketopiperazine and β-carboline derivatives 1–10, were isolated from the EtOAc extracts of Actinokineospora sp. EG49 and Nocardiopsis sp. RV163. Co-cultivation of Actinokineospora sp. EG49 and Nocardiopsis sp. RV163 induced the biosynthesis of three natural products that were not detected in the single culture of either microorganism, namely N-(2-hydroxyphenyl)-acetamide (11), 1,6-dihydroxyphenazine (12) and 5a,6,11a,12-tetrahydro-5a,11a-dimethyl[1,4]benzoxazino[3,2-b][1,4]benzoxazine (13a). When tested for biological activity against a range of bacteria and parasites, only the phenazine 12 was active against Bacillus sp. P25, Trypanosoma brucei and interestingly, against Actinokineospora sp. EG49. These findings highlight the co-cultivation approach as an effective strategy to access the bioactive secondary metabolites hidden in the genomes of marine actinomycetes.  相似文献   
67.
Beneficial root-associated rhizospheric microbes play a key role in maintaining host plant growth and can potentially allow drought-resilient crop production. The complex interaction of root-associated microbes mainly depends on soil type, plant genotype, and soil moisture. However, drought is the most devastating environmental stress that strongly reduces soil biota and can restrict plant growth and yield. In this review, we discussed our mechanistic understanding of drought and microbial response traits. Additionally, we highlighted the role of beneficial microbes and plant-derived metabolites in alleviating drought stress and improving crop growth. We proposed that future research might focus on evaluating the dynamics of root-beneficial microbes under field drought conditions. The integrative use of ecology, microbial, and molecular approaches may serve as a promising strategy to produce more drought-resilient and sustainable crops.  相似文献   
68.
Micromonospora species have long been recognized as important sources of antibiotics and also for their unusual spores. However, their involvement in plant-microbe associations is poorly understood although several studies demonstrate that Micromonospora species function in biocontrol, plant growth promotion, root ecology, and in the breakdown of plant cell wall material. Our knowledge of this generally understudied group of actinomycetes has been greatly advanced by the increasing number of reports of their associations with plants, by the deployment of DNA cloning and molecular systematics techniques, and by the recent application of whole genome sequencing. Efforts to annotate the genomes of several Micromonospora species are underway. This information will greatly augment our knowledge of these versatile microorganisms.  相似文献   
69.
The Effects of the Environment Stress on the Plant Secondary Metabolites   总被引:1,自引:0,他引:1  
《保鲜与加工》2003,(10):67-71
Plant secondary metabolism results from the interaction between plant and environment (life and nonlife) during a long period of evolution of plant. Secondary metabolites are very important for plant to adapt to its surrounding and to improve its abilities of protecting itself and struggling for existence. The secondary metabolites are more relative and more homologous than the first ones. The variety of environment stress tremendously affects the forming of plant secondary metabolites.The progress of study about how the environment stress affects plant secondary metabolites forming is introduced.  相似文献   
70.
初步探讨了水杨酸和缩节胺处理转 Bt基因棉花后顶端嫩叶中 Bt杀虫蛋白和主要抗虫次生物发生的变化。结果发现 ,水杨酸和缩节胺处理不能明显影响转 Bt基因棉花顶端嫩叶中 Bt杀虫蛋白的表达量 ;适宜浓度的水杨酸和缩节胺处理能够明显提高转 Bt基因棉花顶端嫩叶中缩合单宁和芸香苷的含量 ;适宜浓度的水杨酸处理还能够明显提高转 Bt基因棉花顶端嫩叶中总抗虫萜烯类物质的含量 ;而缩节胺处理对转 Bt基因棉花顶端嫩叶中总抗虫萜烯类物质的含量影响不大。水杨酸和缩节胺能够在一定程度诱导棉花抗虫次生物的表达  相似文献   
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