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91.
92.
灌溉方式对大豆光合性状及土壤水分利用率的影响   总被引:2,自引:0,他引:2  
设置均匀灌溉、固定隔沟灌溉、交替隔沟灌溉3种灌溉方式,分别在大豆开花期、结荚期和鼓粒期进行灌溉,每次单沟灌水量分为60、45和30 mm 3个水平,以不灌溉为对照,研究了灌溉方式对大豆光合特性的影响.结果表明:灌溉可极显著提高大豆叶片的光合速率和大豆产量,交替隔沟灌45 mm的R4期光合速率、产量与交替隔沟灌60 mm差异不显著,而且土壤水分利用效率最高,从节水增产增效角度分析,交替隔沟灌溉45 mm的灌溉方式最佳.  相似文献   
93.
This study analysed the alleviating effect of elevated CO2 on stress‐induced decreases in photosynthesis and changes in carbohydrate metabolism in two wheat cultivars (Triticum aestivum L.) of different origin. The plants were grown in ambient (400 μl l?1) and elevated (800 μl l?1) CO2 with a day/night temperature of 15/10 °C. At the growth stages of tillering, booting and anthesis, the plants were subjected to heat stress of 40 °C for three continuous days. Photosynthetic parameters, maximum quantum efficiency of photosystem II (PSII) photochemistry (Fv/Fm) and contents of pigments and carbohydrates in leaves were analysed before and during the stress treatments as well as after 1 day of recovery. Heat stress reduced PN and Fv/Fm in both wheat cultivars, but plants grown in elevated CO2 maintained higher PN and Fv/Fm in comparison with plants grown in ambient CO2. Heat stress reduced leaf chlorophyll contents and increased leaf sucrose contents in both cultivars grown at ambient and elevated CO2. The content of hexoses in the leaves increased mainly in the tolerant cultivar in response to the combination of elevated CO2 and heat stress. The results show that heat stress tolerance in wheat is related to cultivar origin, the phenological stage of the plants and can be alleviated by elevated CO2. This confirms the complex interrelation between environmental factors and genotypic traits that influence crop performance under various climatic stresses.  相似文献   
94.
During the long process of evolution, plants have adapted to their environments through the biosynthesis of secondary metabolites (SM) using the acetate-malonate pathway, mevalonic acids pathway, or shikimic acid pathway, leading to resistance to different pests. As a major cash crop, cotton can produce many secondary metabolites with insecticidal activity, and show self-defense mechanisms under biotic stress conditions. These characteristics of cotton ensure reduced pest incidence and maintenance of ecological balance. This paper discusses the types of SMs, their synthesis, and insect resistance of cotton secondary metabolites in relation to their defense function. We propose possible pest-control strategies using secondary metabolites in cotton.  相似文献   
95.
In the dairy cow, negative energy balance affects milk yield and composition as well as animal health. Studying the effects of negative energy balance on dairy cow milk production is thus essential. Feed restriction (FR) experiments attempting to reproduce negative energy balance by reducing the quantity or quality of the diet were conducted in order to better describe the animal physiology changes. The study of FR is also of interest since with climate change issues, cows may be increasingly faced with periods of drought leading to a shortage of forages. The aim of this article is to review the effects of FR during lactation in dairy cows to obtain a better understanding of metabolism changes and how it affects mammary gland activity and milk production and composition. A total of 41 papers studying FR in lactating cows were used to investigate physiological changes induced by these protocols. FR protocols affect the entire animal metabolism as indicated by changes in blood metabolites such as a decrease in glucose concentration and an increase in non-esterified fatty acid or β-hydroxybutyrate concentrations; hormonal regulations such as a decrease in insulin and insulin-like growth factor I or an increase in growth hormone concentrations. These variations indicated a mobilization of body reserve in most studies. FR also affects mammary gland activity through changes in gene expression and could affect mammary cell turnover through cell apoptosis, cell proliferation, and exfoliation of mammary epithelial cells into milk. Because of modifications of the mammary gland and general metabolism, FR decreases milk production and can affect milk composition with decreased lactose and protein concentrations and increased fat concentration. These effects, however, can vary widely depending on the type of restriction, its duration and intensity, or the stage of lactation in which it takes place. Finally, to avoid yield loss and metabolic disorders, it is important to identify reliable biomarkers to monitor energy balance.  相似文献   
96.
The in vivo metabolism and pharmacokinetics of flunixin meglumine and phenylbutazone have been extensively characterized; however, there are no published reports describing the in vitro metabolism, specifically the enzymes responsible for the biotransformation of these compounds in horses. Due to their widespread use and, therefore, increased potential for drug–drug interactions and widespread differences in drug disposition, this study aims to build on the limited current knowledge regarding P450‐mediated metabolism in horses. Drugs were incubated with equine liver microsomes and a panel of recombinant equine P450s. Incubation of phenylbutazone in microsomes generated oxyphenbutazone and gamma‐hydroxy phenylbutazone. Microsomal incubations with flunixin meglumine generated 5‐OH flunixin, with a kinetic profile suggestive of substrate inhibition. In recombinant P450 assays, equine CYP3A97 was the only enzyme capable of generating oxyphenbutazone while several members of the equine CYP3A family and CYP1A1 were capable of catalyzing the biotransformation of flunixin to 5‐OH flunixin. Flunixin meglumine metabolism by CYP1A1 and CYP3A93 showed a profile characteristic of biphasic kinetics, suggesting two substrate binding sites. The current study identifies specific enzymes responsible for the metabolism of two NSAIDs in horses and provides the basis for future study of drug–drug interactions and identification of reasons for varying pharmacokinetics between horses.  相似文献   
97.
生物钟是生物的计时机制,是生物体内的一种无形的“时钟”。实际上是生物体生命活动的内在节律性,是由生物体内的时间结构序列所决定,使行为、生理和新陈代谢的内部循环与外界环境周期性同步。本文就生物节律系统、生物钟的调控基因、生物钟对营养生理代谢和消化器官的调控以及其在实际生产中的应用作一综述。  相似文献   
98.
为了研究绵羊Musclin对糖代谢和胰岛素作用的影响,本试验运用生物信息学软件对其结构特征进行预测,并构建绵羊Musclin基因真核表达载体。分4组对绵羊胎儿成肌细胞进行处理:空载体组(pcDNA3.1)、Musclin过表达组(pcDNA3.1-Musclin)、空载体+胰岛素组(pcDNA3.1+Insulin)、Musclin过表达+胰岛素组(pcDNA3.1-Musclin+Insulin)。然后分别在分化48和72 h时收集细胞,检测Musclin对正常或添加胰岛素培养的分化状态绵羊肌细胞糖代谢的影响,并利用荧光定量PCR检测相关基因表达的变化。酶切鉴定和测序结果表明,成功构建了表达载体pcDNA3.1-Musclin。生物信息学分析表明,绵羊Musclin蛋白含有一个信号肽,并在28氨基酸位点处存在一个酶切位点。亚细胞定位在胞外,属于分泌蛋白。其二级和三级结构以α螺旋和无规则卷曲为主。细胞试验表明,绵羊Musclin基因过表达明显减少了正常或胰岛素处理的绵羊肌细胞糖原含量并增加了培养液中葡萄糖含量。诱导分化72 h时,过表达Musclin抑制了Musclin过表达组和Musclin过表达+胰岛素组绵羊肌细胞中IRS1、AKT1、AKT2、GLUT1、GLUT4基因mRNA表达,并促进了GSK3β mRNA表达;而诱导分化48 h时,只有GLUT4基因的表达受到抑制。综上所述,绵羊Musclin基因过表达可以影响肌细胞糖代谢并减弱胰岛素的作用,二者相互协调以维持糖代谢稳态。其作用机制涉及到上述相关基因的表达变化,且与绵羊成肌细胞的分化状态有关。  相似文献   
99.
This study investigated the effects of low potassium diets with different levels of Ca compared to two diets low in dietary cation–anion difference (DCAD) fed prepartum as a strategy to prevent hypocalcemia on sorting behaviour, total tract digestibility, oxidative status and energy and protein metabolism of transition cows. Forty-eight pregnant dairy cows were assigned to 4 treatment groups: Low Ca, low K (LCLK), High Ca, low K (HCLK), Supplementation with anionic mineral mixture (AMS) supplementation with SoyChlor (CAS). After parturition, all animals were fed a standard postpartum diet. Data were collected until 21 DIM. Prepartum urinary pH was significantly reduced by the low DCAD diets, while postpartum Ca homeostasis was affected by the HCLK ration. Feeding AMS induced sorting against particles <1.18 mm in favour of particles >19 mm prepartum. In contrast, cows fed CAS showed an increase in selective consumption of fine particles and sorted against longer particles similar to the HCLK and LCLK groups. Postpartum sorting activity was not affected by the dietary treatments. After calving, apparent digestibility of NDF was significantly reduced in the HCLK group. Prepartum, we observed effects on serum concentrations of non-esterified fatty acids were higher and insulin sensitivity was lower in the AMS group. Blood urea nitrogen (BUN) was decreased in cows fed the CAS ration. Postpartum, we found serum protein to be decreased with the low DCAD diets while BUN was decreased in the CAS group. The low DCAD rations increased prepartum serum malondialdehyde concentrations, while postpartum total antioxidant capacity was lower in the HCLK and the AMS group. From these data, we conclude that AMS decreased prepartum intake due to compromised palatability. Intermediate protein metabolism was affected by the low DCAD diets, while parameters of oxidative stress were probably affected by acid–base balance and Ca homeostasis.  相似文献   
100.
为研究日粮蛋白质水平对云南半细毛羊空怀母羊能量代谢的影响,试验选择25只云南半细毛羊空怀母羊,平均分为5个组,分别饲喂蛋白质水平为8.4%、10.0%、12.3%、13.6%、15.9%的日粮,用全收粪法进行消化代谢试验,试验期共19 d,预试期14 d,正试期5 d。结果表明:(1)日粮蛋白质水平对总能摄入量无显著影响(P > 0.05)。(2)从组1到组5粪能逐渐下降,且组3、组4、组5较组1分别降低了10.5%、11.4%、13.7%(P < 0.05),组5较组2降低了9.5%(P < 0.05)。(3)从组1到组5尿能逐渐增加,除组2与组1、组3间差异不显著(P > 0.05)外,其余组间差异极显著(P < 0.01)。(4)组4和组5总能消化率较组1极显著提高13.2%和11.8%(P < 0.01),其余各组差异不显著(P > 0.05)。组4总能代谢率较组1极显著提高9.8%(P < 0.01),其余各组差异不显著(P > 0.05)。对于消化能代谢率,组1和组2差异不显著(P > 0.05),组3、组4和组5依次显著降低(P < 0.05)。(5)蛋白质采食量与总能消化率、消化能代谢率间的回归方程分别为:Y=0.917X+45.872(R2=0.853)|Y=-0.370X+87.735(R2=0.899)。综上,日粮蛋白质水平与粪能呈负相关,与尿能呈正相关。日粮蛋白质水平为13.6%时,总能消化率和总能代谢率均较8.4%蛋白质水平组极显著提高。总能消化率随蛋白质采食量的提高而线性升高,消化能代谢率则随蛋白质采食量的提高而线性降低。 [关键词] 蛋白质|云南半细毛羊|空怀期|能量代谢  相似文献   
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