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排序方式: 共有592条查询结果,搜索用时 15 毫秒
1.
为探究琥珀酸黄杆菌(Flavobacterium succinicans)对非生物胁迫下多年生黑麦草(Lolium perenne)的缓解效应,本试验研究了菌株DSM4002的生物学特性,并在盆栽条件下,分析了干旱(维持相对含水量(30±5)%处理7 d和14 d)、低温(4℃处理3 d和7 d)和盐胁迫(150 mM NaCl处理5 d和10 d)下根际接种DSM4002对多年生黑麦草生长和生理特性的影响。结果表明,DSM4002具有分泌吲哚乙酸(Indole-3-acetic acid,IAA)、溶磷和产铁载体能力,对壮观霉素、卡那霉素等具有抗性,对氯霉素敏感。同时,接种DSM4002能够提高正常生长、干旱、低温和盐胁迫下多年生黑麦草的生物量、抗氧化酶活性、可溶性糖和脯氨酸含量,降低相对电导率和丙二醛(Malondialdehyde,MDA)含量。综上,琥珀酸黄杆菌促进多年生黑麦草的生长与其自身具有分泌IAA、溶磷和产铁载体能力有关,而且它能够调节植物体内氧化还原平衡,从而增强多年生黑麦草的抗旱、抗寒和抗盐能力。  相似文献   
2.
Relations between nitrogen (N) nutrition and salinity tolerance in plants are multifaceted and varies significantly depending on many soil and plant factors. Saline environment might experience an N dilemma due to the opposing effects of salt ions on N uptake, translocation and metabolism within the plant body. Adequate regulation of N under saline conditions can be a promising approach to alleviate salinity’s effects on plants by ameliorating ion toxicity and nutrient imbalances through its impacts on the uptake and redistribution of salt ions within the plant. Certain N-containing compounds including proline, glycine betaine, proteins and polyamines help the plants to tolerate salinity through their involvement in improving water uptake and water use efficiency, membrane integrity, enzyme activation, hormonal balance, chlorophyll synthesis, stimulation of photosystems and CO2 assimilation under salinity stress. Nitrogen, particularly NO3? represents a stress signal that triggers the activation of antioxidant enzymes to protect the plants against salinity-induced oxidative damage. Furthermore, the source/form of N application can affect not only N-interactions but also the behavior of other nutrients in stress environment. The present review deals with N-salinity relations in plants, particularly glycophytes, emphasizing on N-induced mechanisms which can improve plant adaptation to saline environment.  相似文献   
3.
This study investigated the secondary stress responses of Paralichthys orbignyanus exposed to ammonia and nitrite and after recovery. Fish were exposed to 0.12, 0.28, and 0.57 mg NH3‐N/L, or 5.72, 10.43, and 15.27 mg NO2‐N/L for 10 d followed by the same time length for recovery. Ammonia‐ and nitrite‐free water was used as a control treatment. Blood samples were collected after 1, 5, and 10 d of exposure and after recovery. Fish exposed to ammonia presented lower and higher glucose levels after 10 d of exposure and recovery, respectively. Ammonia induced initial and transient ionic disturbances and metabolic alkalosis. Nitrite exposure caused hyperglycemia, increased plasma K+ levels, and respiratory alkalosis, whereas metabolic acidosis was observed after recovery. Increased proportion of monocytes and/or granulocytes and reduced number of lymphocytes were demonstrated in fish exposed to 0.28 mg NH3‐N/L (Day 1) and 10.43 mg NO2‐N/L (Day 5) and after recovery in the 0.28 and 0.57 mg NH3‐N/L treatments. Exposure to ammonia decreased the proportion of granulocytes on Day 5. In conclusion, exposure to concentrations at 0.12 mg NH3‐N/L and 5.72 mg NO2‐N/L provoked physiological disorders in Brazilian flounder. Nonetheless, fish exposed to 5.72 mg NO2‐N/L following a 10‐d recovery period showed complete resumption of homeostasis.  相似文献   
4.
Elevated concentrations of serum phosphate are linked with progression and increased case fatality rate in animals and humans with chronic kidney disease. Elevated concentrations of serum phosphate can be a risk factor for development of renal and cardiovascular diseases or osteoporosis in previously healthy people. In rodents, an excess intake of dietary phosphorus combined with an inverse dietary calcium : phosphorus ratio (<1 : 1) contributes to renal calcification. Renal injury also has occured in cats fed experimental diets supplemented with highly soluble phosphate salts, especially in diets with inverse calcium : phosphorus ratios. However, not all phosphorus sources contribute similarly to this effect. This review, which focuses on cats, summarizes the published evidence regarding phosphorus metabolism and homeostasis, including the relative impact of different dietary phosphorus sources, and their impact on the kidneys. No data currently shows that commercial cat foods induce renal injury. However, some diets contain high amounts of phosphorus relative to recommendations and some have inverse Ca : P ratios and so could increase the risk for development of kidney disease. While limiting the use of highly soluble phosphates appears to be important, there are insufficient data to support a specific upper limit for phosphate intake. This review also proposes areas where additional research is needed in order to strengthen conclusions and recommendations regarding dietary phosphorus for cats.  相似文献   
5.
哺乳动物体内的钙代谢通常包括钙平衡和钙稳态。钙平衡是指体内总钙含量保持相对恒定的状态,钙稳态则指细胞内外的钙离子浓度保持稳定。肾脏、肠道、骨骼及雌性动物乳腺是动物体钙代谢的主要器官,其中存在着许多精细而复杂的调控网络。妊娠期钙代谢紊乱会严重影响母畜及胎儿的营养健康,维持体内钙代谢稳态对围产期哺乳动物尤为重要。本文综合近年来国内外妊娠期哺乳动物钙代谢相关研究,从不同组织器官钙代谢情况及钙代谢过程中重要的调节因子的调控作用进行综述,旨在为妊娠期哺乳动物钙代谢调控相关研究提供思路。  相似文献   
6.
Zygophyllum xanthoxylum is a salt‐accumulating xerophytic species with excellent adaptability to adverse environments. Previous studies demonstrated that Z. xanthoxylum absorbs a great quantity of Na+ as an osmoregulatory substance under arid conditions. To investigate the nutritional status of Z. xanthoxylum in comparison with a typical glycophyte, Arabidopsis thaliana, seedlings were exposed to NaCl (50 mM for Z. xanthoxylum and 5 mM for A. thaliana), osmotic stress (–0.5 MPa), and osmotic stress combined with the NaCl treatment. Compared to the control, NaCl treatment or osmotic stress significantly increased Na+ concentration in leaves and roots of Z. xanthoxylum, but not of A. thaliana. Under osmotic stress, the addition of NaCl significantly increased Na+ concentration in leaves and roots of Z. xanthoxylum, resulting in improved biomass and tissue water content. However, such changes were not observed in A. thaliana. Compared to the control, K+ concentrations in leaves and roots remained unchanged in Z. xanthoxylum when exposed to osmotic stress, with or without additional 50 mM NaCl. In contrast, significant reductions in shoot K+ concentrations of A. thaliana were observed under osmotic stress alone or when combined with 5 mM NaCl. Moreover, NaCl alone or when combined with osmotic stress enhanced the accumulation of N, P, Fe, Si, Ca2+, and Mg2+ in Z. xanthoxylum, but did not cause such nutritional changes in A. thaliana. Compared to the glycophyte A. thaliana, Z. xanthoxylum could accumulate Na+ and maintain the stability of nutritional status at a relatively constant level to cope with drought stress.  相似文献   
7.
为了研究铁调素调节蛋白(hemojuvelin,HJV)在硬骨鱼中抵御病原菌感染和维持自身铁稳态过程中的作用,实验扩增了尼罗罗非鱼铁调素调节蛋白基因(Onhjv)的开放阅读框(ORF),分析其在健康尼罗罗非鱼各组织中的分布模式及在抵御病原菌感染和调节铁稳态中的相关作用。结果显示,Onhjv的ORF全长由1 248个碱基组成,编码415个氨基酸,在不同物种之间具有一定的保守性。实时荧光定量PCR(qRT-PCR)结果显示,Onhjv在尼罗罗非鱼各组织中广泛分布,并在肝脏中的表达量最高。在无乳链球菌或嗜水气单胞菌感染后,Onhjv在肝脏、脾脏、肠和鳃中的表达量均显著上调。体外头肾单核/巨噬细胞和肝细胞中Onhjv表达量在受到这2种病原菌应激下也显著上调。此外,在1和10μmol/L FeCl_3溶液刺激后,Onhjv表达量在肝脏、脾脏、肠和鳃等组织,以及头肾单核/巨噬细胞和肝细胞中的表达量也呈显著上调。受重组罗非鱼IL-6蛋白[(r)OnIL-6]刺激后,头肾单核/巨噬细胞中Onhjv表达量显著上调,表明炎症因子可以促进Onhjv表达。研究表明,尼罗罗非鱼铁调素调节蛋白在宿主抵御病原菌感染和维持铁稳态的过程中发挥作用。本实验为探究HJV在硬骨鱼中的生物学功能提供了参考,同时为进一步研究铁代谢在宿主防御病原菌感染过程中的重要作用提供理论指导。  相似文献   
8.
为了解小黑麦耐盐性与离子吸收之间的关系,以4个耐盐性不同的小黑麦品种为材料,分析了不同浓度NaCl(0、50、100、200mmol·L-1)胁迫处理10d后,小黑麦幼苗鲜重、地上部分和根部Na+、K+、Cl-分布以及限钠能力和K+/Na+的变化。结果表明,随NaCl浓度的升高,4个小黑麦品种鲜重均逐步降低,Na+、Cl-含量大幅提高;除中饲828外,其他3个品种的地上部Na+、Cl-含量均高于根部;K+含量随NaCl浓度的升高而逐步下降,根部下降幅度大于地上部。随NaCl浓度的升高,小黑麦地上部限钠能力及地上部分和根部K+/Na+逐渐降低。在4个品种中,抗盐性强的中饲828地上部能维持相对较低的Na+、Cl-含量,具有较高的K+/Na+,生物量也较高;盐敏感品种劲松49则相反。说明限制地上部Na+的吸收和维持较高的K+/Na+是小黑麦耐盐的策略之一。  相似文献   
9.
One of the principal components of equine metabolic syndrome (EMS) is hyperinsulinaemia combined with insulin resistance. It has long been known that hyperinsulinaemia occurs after the development of insulin resistance. But it is also known that hyperinsulinaemia itself can induce insulin resistance and obesity and might play a key role in the development of metabolic syndrome. This review focuses on the physiology of glucose and insulin metabolism and the pathophysiological mechanisms in glucose homeostasis in the horse (compared with what is already known in humans) in order to gain insight into the pathophysiological principles underlying EMS. The review summarizes new insights on the oral uptake of glucose by the gut and the enteroinsular axis, the role of diet in incretin hormone and postprandial insulin responses, the handling of glucose by the liver, muscle and fat tissue, and the production and secretion of insulin by the pancreas under healthy and disrupted glucose homeostatic conditions in horses.  相似文献   
10.
陈敬  钱振杰    亮等 《安徽农业科学》2014,(20):6796-6797
[目的]建立乳制品中硫氰酸盐含量测定的离子色谱方法。[方法]样品溶液经乙酸沉淀,去除蛋白质及脂肪的干扰后,过滤装瓶。采用Ion Pac AS11-HC柱(4 mm×250 mm)对其进行分离。以保留时间定性,试样中硫氰酸根峰面积比与标准系列比较定量。[结果]试验表明,硫氰酸盐在0.1~2.0 mg/L范围内线性关系良好,相关系数为R2=0.999 6,添加回收率为92.0%~96.6%,变异系数分别为1.18%~2.28%,定量限为1.0 mg/kg。[结论]该方法简便、快速、可靠,可用于市售乳制品中硫氰酸盐含量的测定。  相似文献   
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