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1.
矿物元素在畜禽生长发育、新陈代谢、神经活动、免疫功能、内分泌等几乎所有的生命活动过程中都发挥着重要的生理作用,分为钙、磷、钠、镁等常量元素和铁、锰、钴、铜等微量元素。某种矿物元素摄入不足或在体内过量蓄积、矿物元素间比例失调,都将引起严重后果。随着畜禽养殖业的集约化规模化发展,饲用矿物元素用量迅速增加,但存在不合理使用的情况,造成了资源浪费和环境污染。因此,在满足畜禽营养需要量的前提下,合理地使用矿物元素剂型及剂量,实现降低矿物元素经畜禽粪污向环境中的排放量,不仅利于集约化畜禽养殖业的发展,同时也能有效降低畜禽粪污中的重金属含量,为种植业提供优良的有机肥来源,维护生态系统的平衡,促进种植业和养殖业的可持续健康发展。基于此,以畜禽体内含量最高的常量元素钙磷和微量元素为切入点,介绍了饲用矿物元素的应用现状、畜禽矿物元素基础需要量及合适的添加范围,着重综述了新型饲用微量元素的开发与应用进展,并探讨了矿物元素动态饲喂模式的可行性及有效性,以期为合理利用矿物元素资源及进一步解决全球生态农业研究的畜禽矿物元素导致的环境污染提供参考。  相似文献   

2.
新疆绿洲农田土壤-棉花系统9种矿质元素生物循环特征   总被引:4,自引:0,他引:4  
在新疆绿洲区,对不同连作棉田土壤中9种矿质元素含量、棉花植株的吸收和富集特性以及棉田养分收支量等进行分析,研究了农田土壤-棉花系统矿质元素的生物循环特征。结果表明:棉田土壤中微量元素和大量元素均有一定程度的贫化趋势,以Mo的耗竭最为严重。棉株不同器官累积矿质元素的能力有明显差异,叶片中Ca、Mg和Mn的含量较高,根、茎中K、Na、Fe、Mo含量较高,棉籽中Zn和Cu含量最高;不同产品器官对矿质元素的吸收和富集能力不同,秸秆为:MoKMgCaCuZnNaMnFe,纤维:MoKMgZnCuCaNaMnFe,棉籽:MoZnKMgCuCaMnNaFe。棉花对Mo的吸收能力最强,长期连作导致土壤中Mo耗竭较为严重;随籽棉的收获,从棉田移出Zn、Cu的比例和数量较高,大量元素中移出Mg、K较多;棉花对Mn、Fe、Ca、Na的吸收量虽然较多,然而大部分富集在秸秆中,随着棉花秸秆的还田作用,将归还于耕作层并有大量富集,消耗量不大。新疆棉花长期单一种植,应重点补充Mo、Zn和Cu微量元素肥料,酌情补充Mg、K等大量元素肥料。棉田Ca、Na含量较新疆土壤背景低,预示着棉田土壤在向着脱盐碱方向发展,然而两元素在秸秆中的比例较高,因此棉花长期连作农田,应注意防止耕作层土壤向次生盐碱化方向发展。  相似文献   

3.
用氨基酸自动分析仪、等离子体发射光谱仪(ICP法)等方法测定云南盈江县三个草果Amomum tsaoko主产乡的草果氨基酸、矿质营养元素等成分。结果显示,不同产地草果中氨基酸和矿质营养元素含量有明显差异。盈江县各地的草果氨基酸含量均比文山产草果低,其中苏典乡劈石村的2号样品(海拔1540 m,土壤pH 6.58)氨基酸含量与文山样品最为接近;微量营养元素总含量则相反,盈江县产草果均高于文山样品。  相似文献   

4.
The diets of over two-thirds of the world's population lack one or more essential mineral elements. This can be remedied through dietary diversification, mineral supplementation, food fortification, or increasing the concentrations and/or bioavailability of mineral elements in produce (biofortification). This article reviews aspects of soil science, plant physiology and genetics underpinning crop biofortification strategies, as well as agronomic and genetic approaches currently taken to biofortify food crops with the mineral elements most commonly lacking in human diets: iron (Fe), zinc (Zn), copper (Cu), calcium (Ca), magnesium (Mg), iodine (I) and selenium (Se). Two complementary approaches have been successfully adopted to increase the concentrations of bioavailable mineral elements in food crops. First, agronomic approaches optimizing the application of mineral fertilizers and/or improving the solubilization and mobilization of mineral elements in the soil have been implemented. Secondly, crops have been developed with: increased abilities to acquire mineral elements and accumulate them in edible tissues; increased concentrations of 'promoter' substances, such as ascorbate, β-carotene and cysteine-rich polypeptides which stimulate the absorption of essential mineral elements by the gut; and reduced concentrations of 'antinutrients', such as oxalate, polyphenolics or phytate, which interfere with their absorption. These approaches are addressing mineral malnutrition in humans globally.  相似文献   

5.
An improved understanding of how to manipulate the accumulation and enrichment of mineral elements in aboveground plant tissues holds promise for future resource efficient and sustainable crop production. The objectives of this study were to (a) evaluate the influence of Fe regimes on mineral element concentrations and contents in the maize shoot as well as their correlations, (b) examine the predictive ability of physiological and morphological traits of individual genotypes of the IBM population from the concentration of mineral elements, and (c) identify genetic factors influencing the mineral element composition within and across Fe regimes. We evaluated the concentration and content of 12 mineral elements in shoots of the IBM population grown in sufficient and deficient Fe regimes and found for almost all mineral elements a significant (α = 0.05) genotypic variance. Across all mineral elements, the variance of genotype*Fe regime interactions was on average even more pronounced. High prediction abilities indicated that mineral elements are powerful predictors of morphological and physiological traits. Furthermore, our results suggest that ZmHMA2/3 and ZmMOT1 are major players in the natural genetic variation of Cd and Mo concentrations and contents of maize shoots, respectively.  相似文献   

6.
为探讨不同耕作方式的土壤矿质元素含量变化特征,促进火龙果生长发育和品质改良,该研究采用套种紫花苜蓿(Medicago sativa)、施用有机肥和化肥与农药、地膜覆盖和无措施五种耕作方式,以每种方式土壤的22种矿质元素为评价指标,比较不同耕作方式的矿质元素含量差异,阐明土壤矿质元素之间的相关关系。结果表明:(1)与无措施相比,其他耕作方式的Ca、Si、Mn等元素含量呈增加趋势,Fe、Mg、Al等元素含量则降低,Na含量无显著差异。(2)施用有机肥的矿质元素含量最丰富,地膜覆盖次之,套种紫花苜蓿最低。(3)相关性分析表明,火龙果地土壤矿质元素间多存在显著相关性,Al、Si、S、Ni与其他元素的相关性较密切,其次为Fe、Mg、Na、Mn、Cu和Co,均达到显著或极显著水平。(4) Ca、Fe、Mg、Mn、Cu、Zn和B之间多呈负相关,存在拮抗效应。干热河谷石漠化区在火龙果栽培时,应首选有机肥作为养分添加方式,并及时补充不同耕作方式造成的土壤矿质养分亏缺,尤其是Fe、Mg、Al、Na、Cu、Zn等元素。  相似文献   

7.
不同产地松茸氨基酸与矿质元素的比较研究   总被引:2,自引:0,他引:2  
以西南地区的三种松茸子实体为材料 ,用柱前衍生高效液相色谱法和原子吸收分光光度法分别对松茸子实体的氨基酸和矿质元素进行了测定 ,氨基酸的测定结果表明 :采自四川通江的松茸子实体的氨基酸总含量最高 ,为 10 .5 82 % ;其次为采自重庆的松茸子实体为 9.6 0 7% ;最低的为采自云南昌隆的松茸子实体 ,为 3.381%。矿质元素的测定结果表明 :所测定的七种元素中 ,含量较高的有三种 ,分别为K ,Ca和Mg ,平均含量分别为 3.1× 10 4mg/Kg ,1.6 2× 10 3mg/Kg和 5 .5 8× 10 2mg/Kg。在这三种松茸子实体中云南昌隆的Fe ,Mn含量最高 ,分别为 6 2 .2 82mg/Kg和 6 .0 6 4mg/Kg ;重庆的Cu含量最高 ,为 5 2 .84 5mg/Kg;Zn的含量在这三种子实体中差异不大。  相似文献   

8.
喻阳华  程雯  杨丹丽 《广西植物》2019,39(1):108-116
为了阐明群落水平上的土壤矿质元素特征,该研究以贵州喀斯特山区典型人工林为对象,以金属元素和非金属元素进行类型划分,探讨了土壤矿质元素含量特征及其相关性。结果表明:该区典型人工林土壤矿质元素含量存在较大差异,且同一元素在不同树种之间的变化幅度各异,锌、铬、铁、钛、铝、镁、镍、钴等的变化规律较为一致,钙、锶等的变化趋势较为相似,砷、硒、硅在桉树(Eucalyptus robusta)林、柏木(Cupressus funebris)林和枇杷(Eriobotrya japonica)林中的含量较高,硫、钠、氯等元素含量则相反;不同矿质元素随林分类型的变化规律不完全一致,表明植物根系对养分的提取和富集能力存在差异;矿质元素之间表现出一定程度的相关性,存在此消彼长的关系,不同矿质元素之间的相关关系各异,表现出增强或抑制效应,尤其以铁、钙等元素与其他元素的关系更为密切;矿质元素之间的互作效应及其计量平衡关系是分析元素特征的关键,是未来值得深入研究的科学问题。该研究结果有利于掌握养分元素积累特征与调控规律,对于该区域典型人工林土壤养分管理具有较强的理论和实践意义。  相似文献   

9.
Amblyopia is a common cause of vision damage in children, and some aspects of its etiology are not clear. A number of mineral elements have important effects on the nerve and visual nerve systems. However, little is known about the relationship between amblyopia and nutritional mineral elements. In this study, hair samples were collected from 67 children with amblyopia and 57 age-matched control groups. The height and weight of each child was measured, and body mass index (BMI) was calculated. Mineral elements were determined by atomic absorption spectrometry and inductively coupled plasma-atomic emission spectrometry. The calcium and magnesium levels in the hair of amblyopic children were higher (p?<?0.006), but the level of manganese were lower compared with those in the control groups (p?<?0.006). Other elements measured were found to have an insignificant difference between the two groups (p?>?0.006). The BMI of amblyopic children was higher (p?<?0.001). These results show that mineral elements may play an important role in the visual development of children. Therefore, studies should pay more attention to investigating the impact of mineral elements on child vision.  相似文献   

10.
This study was undertaken to evaluate a systematic analysis of mineral and trace elements of individual functionally determined parts of adult temporal bone. Marked differences were observed in basic structural elements (Ca, P, Mg, and Zn) among different bone regions. The more so, molar Ca/P ratio was significantly different in various regions, being highest in the hammer and vestibular regions. Taxonomic analysis revealed specific differences in the mineral ratio between the two petrous bone regions believed to develop from various embryonal bases. According to results, the observed differences in mineral trace element composition of particular regions of human temporal bone might be explained by their developmental specificities and functional adaptation.  相似文献   

11.
To evaluate intra- and inter-laboratory agreement concerning hair mineral analysis and interpretation of results, hair samples from 2 volunteers were sent to seven laboratories, which commercially offer hair mineral analysis in Germany. 6 weeks later, another identical part from the hair sample of volunteer 1 was sent to all seven labs. Altogether, 50 elements were analyzed, 23 by all seven labs. For comparability, only the results for these 23 elements were assessed. The intra-laboratory reproducibility was evaluated by the 2 identical hair samples from volunteer 1. On the average, the reproducibility seems to be sufficient (median +/- 9.48% to +/- 20.59%), but for individual elements there were unacceptable out-rulers up to 100%. Only one lab classified all elements of the first and the second analysis of the identical hair sample in the same category (below, within, or above normal range). The others grouped 4 to 7 elements different. This is not tolerable. The inter-laboratory comparability was assessed by the results of the hair samples of both volunteers. For the sample of volunteer 1 at least the results of 6 (out of 23) elements were within an acceptable range of +/- 30% from the consensus value (= mean of all seven labs). For volunteer 2 this was only the case for 2 (!) elements. Differences of more than 100% were found for most other elements. Moreover, in the vast majority of the tested elements there was no comparability of the cLassification to the respective reference ranges of the different laboratories. For example, for volunteer 1 only 3 elements (our of 23!) were identically classified by all seven labs. As neither the analytical results nor the classification to the individual reference ranges by the laboratories correspond in tolerable borders, conclusions, drawn from these results, cannot be valid. Hair mineral analysis from these laboratories is unreliable. Therefore we must recommend to refrain from using such analysis to assess individual nutritional status or suspected environmental exposure.  相似文献   

12.
This work characterises the mineral fraction of EPS extracts obtained using eight different methods from two activated sludges by total mineral content determination, Fourier Transformed Infrared spectrometry and with scanning electron microscopy coupled with an EDX probe. Despite EPS dialysis, the EPS extracts displayed a mineral fraction between 2% and 40% of the EPS dry weight depending on the extraction method used. The main mineral elements found in the EPS extract were Ca, Mg, Na, K, Al, Fe, Mn, P, Si and S, but their contents were strongly affected by the extraction method used. Some of the minerals are associated with the organic molecules within the EPS. The presence of mineral particles of various compositions and structures (clays, quartz or carbonate) in the EPS extract with a wide range in size was clearly demonstrated. Moreover, the association of metallic elements with the mineral particles in the EPS extract was highlighted.  相似文献   

13.
MethodsA population of 124 recombinant inbred lines derived from a cross between P-inefficient ‘B104-2’ and P-efficient ‘Eyou Changjia’ was used for phenotypic investigation and QTL analysis. Two-year field trials were conducted with two P treatments. Concentrations of mineral elements (P, Ca, Mg, Fe, Zn, Cu and Mn) in seeds were determined and QTLs were identified by composite interval mapping.ConclusionsThe accumulation of mineral elements in seeds is controlled by multiple genes. Common physiological and molecular mechanisms could be involved in the accumulation of several mineral elements, and genes involved in these processes in B. napus are suggested. These results offer insights to the genetic basis of seed mineral accumulation across different P levels in B. napus.  相似文献   

14.
运用电感耦合等离子直读光谱仪(ICP),测定相同立地上马尾松(PinusmasonianaLamb.)10个种源针叶内25种矿质营养元素含量的变异,分析矿质元素含量与树高、胸径生长量的相关性,认为利用常绿针叶树种休眠期内矿质元素含量的相对稳定性研究马尾松矿质营养水平是可靠的。矿质营养与产地经、纬度呈负相关。广东和广西的种源可作为江苏地区今后推广马尾松的主要种源。马尾松针叶内钙和锌含量可作为马尾松树高和胸径生长量的预测因子。初步认为马尾松属于高钙吸收和高锌利用型树种。  相似文献   

15.
Al-Ani  T. A.  Habib  I. M.  Abdulaziz  A. I.  Ouda  N. A. 《Plant and Soil》1971,35(1-3):29-36
Summary Native plants of Iraq have shown considerable variation in their ability to accumulate mineral elements. Halophytes such asSeidlitzia rosmarinus andHalocnemum strobilaceum indicate very high soil sodium contents, and others high magnesium and sulphate contents. Selectivity in the uptake and accumulation of mineral elements was exhibited by many native plants. Surprisingly high or low concentrations of particular elements were found in certain species in comparison with other species collected from the same site and at the same time. Magnesium and sulphate concentrations were as high as 5.80 and 12.16 per cent, respectively, when the concentrations in other species growing on the same site were as low as 0.59 and 1.29 per cent respectively. Selectivity was also indicated by the ability of certain species to accumulate a specific element from soils with high or low concentration of that element.  相似文献   

16.
水稻籽粒矿质元素含量遗传及主要农艺性状相关性分析   总被引:2,自引:0,他引:2  
通过了解水稻子粒钙、镁、铜、铁、锌和硒等矿质元素含量,以绿旱1号作为父本与102S、KD36S、7HS012及7HS013不育系为母本进行配组,对父本与杂交后代主要农艺及经济性状、水稻子粒中的矿质元素含量进行了遗传分析,并对各杂交后代的主要农艺性状和子粒中矿质元素含量以及各矿质元素含量间进行了相关性分析.结果表明,杂交后代农艺及经济性状多数表现出超高亲分离现象,且LK3的农艺及经济性状均表现为最好.水稻子粒矿质元素含量与部分农艺和经济性状存在明显的正相关或负相关关系,且K、Mg、Zn、Se等元素含量与水稻产量密切相关.水稻子粒中矿质元素含量大小依次为P>K >Mg >S> Ca> Mn >Fe >Zn >Cu >Se,4个杂交后代的K元素含量表现出超高亲分离现象,LK2、LK3和LK4的Fe元素含量也表现出超高亲分离现象.水稻子粒大量与微量元素之间相关性最高,微量元素之间相关性次之,大量元素之间相关性最小,以7HS012不育系为母本得到的杂交后代农艺性状表现较好,矿质元素含量最高,7HS013次之,其他不育系表现一般.本研究为选育出耐旱及营养价值高的水稻新品种母本的选择提供了理论依据.  相似文献   

17.
We analyzed mineral lick soils and non-mineral lick soils from the Serengeti National Park, the Konza Praine, and Yellowstone National Park The concentrations of 14 different elements considered important for ungulate nutrition were analyzed to determine the relative importance of Na vs other elements in attracting animals to lick areas Only Na was consistently higher in the mineral lick soils of the three ecosystems Mean Na concentrations were c 20x greater in Serengeti licks, 10x greater in Konza licks and 3x greater in Yellowstone licks compared to the respective non-lick soils Despite the numerous elements analyzed for this survey, our results suggest that Na is the primary element initiates mineral lick use in these widely separated ecosystems The widespread distribution of Na-deficient forage likely explains the importance of Na in most mineral licks  相似文献   

18.
M. R. Sarić 《Plant and Soil》1983,72(2-3):137-150
Summary Mineral nutrition of plants is one of the most important factors controlling biomass production. However, the efficiency of utilizing certain elements of mineral nutrition in biomass production is highly related to the genetic specificity of plants. The present paper deals with problems and former results regarding plant mineral nutrition presented from the genetic aspects. Particular attention has been devoted to the increased efficiency of using both the natural fertility of soils and mineral fertilizers by creating and utilizing suitable cultivars and hybrids, increased efficiency of using mineral nutrients under certain ecological conditions, plant-specific role of microorganisms in enriching soil with nitrogen and soluble forms of other elements, role of genetic specificity of mineral nutrition in plants in solving the problems of environmental pollution, principles of evaluating the genetic specificity of mineral nutrition in plants, genotype features influencing uptake of mineral nutrients, criteria for evaluating the genetic specificity of mineral nutrition of plants, and also to the methods for selecting genotypes for specific soil types, and mineral nutrition.  相似文献   

19.
Plant genotypes differ in their uptake, translocation, accumulation, and use of mineral elements. Examples of genotype differences to iron, nitrogen, phosphorus, potassium, calcium, magnesium, manganese, boron, copper, zinc, and molybdenum are discussed. Current knowledge is sufficient to indicate that many crop plants can be improved for the efficient use of mineral elements and better adaptation to mineral stress conditions.  相似文献   

20.
镉胁迫下草莓幼龄期叶、根矿质元素积累和分布的变化   总被引:1,自引:0,他引:1  
采用水培实验,研究重金属镉对草莓幼龄期叶、根矿质元素含量和分布的影响。结果表明,高量镉降低草莓根中K、Ca、Mg、P、Cu、Zn、Mn、Fe的积累,叶片相应元素以及B、Mo含量也随镉浓度增大而呈降低趋势;但镉浓度较低时,K、Mg、P、Zn在叶、根中的含量均增加,而后才随镉处理浓度提高而降低。在镉胁迫下,同一元素在草莓叶、根之间的分布也受到影响,而且某些矿质元素含量间有显著相关性。  相似文献   

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