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1.
以喀什灰枣为对象,于枣树开花期、坐果期叶面喷施硒肥,研究不同时期、不同硒肥及不同浓度处理下, 叶面喷施硒肥对枣果中硒含量的影响,分析硒含量在枣果发育期的变化过程,筛选出硒肥喷施的适宜浓度和时期, 明确富硒灰枣生产的适宜施肥管理措施。结果表明,叶面喷施硒肥可显著提高灰枣果实硒含量,达到富硒效果, 且随着施硒量的增加呈一直增加的趋势;果实硒含量在果实膨大期达到最大值,之后在完熟期有所降低;在枣果 完熟后期,坐果期施用无机硒肥处理果实硒含量均高于开花期,从果实对硒的吸收来看,说明灰枣无论喷施无机 硒肥还是有机硒肥,施用硒肥的关键时期均为坐果期。在枣果完熟后期,坐果期喷施无机硒肥 40 mg/L 处理下对 果实硒含量增加效果显著,硒含量达到 0.2698 mg/kg;坐果期喷施有机硒肥 32 mg/L 处理下对果实硒含量增加效果 显著,硒含量达到 0.2226 mg/L,两种硒肥处理下果实硒含量均达到了富硒农产品国家标准。综上所述,坐果期喷 施 40 mg/L 无机硒肥或 32 mg/L 有机硒肥最符合当地生产需求。  相似文献   

2.
叶面喷硒对水稻籽粒硒富集及分布的影响   总被引:29,自引:1,他引:29  
在大田试验条件下,研究了江苏省苏南地区水稻(龙晴4号、86优8和丙9652)叶面喷施和未喷施亚硒酸钠对水稻籽粒硒含量、硒的形态及对蛋白质结合态硒的影响。结果表明:叶面喷施亚硒酸钠10g hm^-2,可使该地区水稻籽粒硒含量达255.3—586.5μg kg^-1,是不喷硒的7.9-11.0倍。无论喷硒还是未喷硒,水稻籽粒硒主要以有机硒的形态存在,有机硒含量占总硒量的87.72%-90.98%,对产量没有显著差异。总体看来,叶面喷硒可以显著提高籽粒蛋白结合态硒含量,籽粒蛋白质结合的硒占有机硒的43.07%-51.65%,占总硒的38.04%-48.98%。叶面喷硒与对照相比,二个品种(龙晴4号与丙9652)籽粒的蛋白谱带基本一致,只是喷硒的水稻籽粒在14~20kDa之间增加了一些蛋白条带,这可能是由于喷硒增加了一些小分子蛋白质的合成。  相似文献   

3.
为了明确叶面喷施亚硒酸钠对黑豆硒吸收转运特征及籽粒硒形态的影响,采用小区试验在黑豆结荚兴盛期进行一次性叶面喷施亚硒酸钠(施硒量分别为0、6、12、18和24 mg·m-2)处理,分析比较不同浓度亚硒酸钠处理下黑豆产量、各器官硒含量、籽粒有机硒转化率和品质性状的差异。结果表明,各施硒水平对黑豆各器官总硒含量均有提升作用,在24 mg·m-2硒处理时各器官总硒含量最大,根、茎、荚和籽粒硒含量分别较对照提高了8.74、8.37、9.85和65.21倍,硒处理后各器官总硒含量呈现籽粒>根≈荚>茎的特点。籽粒中硒以有机硒形态存在,且有机硒转化率随着亚硒酸钠浓度的增加呈下降趋势,在0、6、12、18和24 mg·m-2施硒处理时,有机硒含量分别为0.071 4、1.101 8、1.510 6、1.811 1和2.093 5 mg·kg-1,有机硒转化率分别为94.52%、84.81%、70.30%、60.11%和52.43%。叶面喷施亚硒酸钠显著提高了黑豆籽粒蛋白质含量和分离蛋白硒含量,但对脂肪含量的影响较小,在24 mg·m-2硒处理时蛋白质含量和分离蛋白硒含量分别较对照增加了2.4个百分点和117.35倍,分离蛋白硒含量占有机硒和总硒含量的比例分别为90.29%和47.39%。适宜浓度亚硒酸钠叶面喷施对黑豆产量具有促进作用,但浓度过高导致增产效果减弱。综上,叶面喷施亚硒酸钠可提高黑豆各器官总硒含量,但黑豆籽粒有机硒转化率随喷施浓度的增加呈下降趋势,且黑豆籽粒有机硒主要以蛋白质形式存在。本研究结果为应用外源硒强化技术生产富硒黑豆提供了科学依据。  相似文献   

4.
为研究叶面喷施氨基酸螯合硒对水稻籽粒硒含量及形态的影响,以水稻品种百香 139 为材料,通过大田试验,在水稻破口期叶面喷施不同用量的氨基酸螯合硒,并在水稻拔节孕穗期、始穗期、扬花授粉期、灌浆期、蜡熟期 5个不同生育期叶面喷施 13.5 g/hm2(以硒计)的氨基酸螯合硒,在水稻成熟期测定、分析各处理组水稻地上部不同组织器官硒含量和籽粒硒形态。结果表明,喷施外源氨基酸螯合硒可提高水稻各器官硒含量,在适量范围内水稻植株各器官硒含量随着喷硒浓度的增加而提高;水稻籽粒中硒主要以硒代蛋氨酸存在,水稻籽粒中硒代蛋氨酸含量与总硒含量的变化规律相一致。喷施氨基酸螯合硒用量为 6.75、13.5、27.0 g/hm2 时水稻籽粒中硒含量分别为 0.168、0.431、0.439 mg/kg,均达到《富硒农产品硒含量分类要求》(DB45/T 1061-2014)的要求。拔节孕穗期至灌浆期喷硒处理水稻籽粒硒含量呈现增高趋势,灌浆期喷硒处理的水稻籽粒总硒含量最高,达到 0.320 mg/kg;水稻籽粒中硒代蛋氨酸含量占总硒含量的比例为 43% ~ 91%,硒代蛋氨酸含量占总硒含量的比例由大到小依次为:拔节孕穗期 >始穗期>扬花授粉期=灌浆期>蜡熟期,硒代蛋氨酸比例随着施硒时期越靠近水稻成熟期越低,表明水稻叶片中硒的转化时间对稻米中硒形态有显著影响,提早喷施硒有利于有机态硒的形成,提高稻米中有机态硒的比例。在硒的生物强化生产富硒水稻中,水稻破口期叶面喷施氨基酸螯合硒的最佳用量为 13.5 g/hm2,在 5 个不同生育期喷施 13.5 g/hm2 的氨基酸螯合硒均能生产出富硒大米,且最佳喷施外源硒的时期为灌浆期。  相似文献   

5.
施纳米硒对小麦籽粒硒含量及其品质性状的影响   总被引:6,自引:0,他引:6  
【目的】研究基施纳米硒肥对不同小麦品种籽粒百粒重、硒含量、硒形态,其他矿质元素以及面粉糊化特性的影响,为利用纳米硒肥进行小麦硒生物强化提供参考。 【方法】选择 110 份小麦品种 (系),在扬州大学农学院网室种植,采用的施肥方式为基施纳米硒肥,设每千克土施 Se 0 (CK)、100 (Se100)、150 (Se150) mg 2 次重复,随机区组设计。小麦成熟期收获籽粒,测定百粒重。利用离子发射光谱 – 原子吸收仪测定了籽粒 Se、Ca、Mg、Cu、Fe、Mn、Zn 及 S 含量。选择高硒处理中硒含量前 10 名的品种,利用 LC-UV-AFS 测定了籽粒中不同形态硒的含量。随机挑选 59 个品种并利用 RVA 仪 (快速粘度分析仪) 测定其面粉糊化特性的特征值。利用 MATLAB 和 SPSS 软件进行数据分析。 【结果】基施硒 0、100、150 mg/kg 土,小麦籽粒的百粒重均值分别为 3.78、4.11 和 3.70 g,籽粒中总硒含量分别为 2.00、12.46 和 17.35 mg/kg。籽粒中的硒主要以有机态形式存在,以硒蛋氨酸含量最多,其次是硒甲基化半胱氨酸和少量的硒半胱氨酸,无机态硒仅微量存在于极少数品种中。基施硒肥对测定的矿质元素的吸收积累既有协同也有拮抗作用,对小麦面粉的糊化特性没有显著影响。糊化特性取决于基因型,不同品种间存在极显著差异。 【结论】硒肥可以提高小麦籽粒中的硒含量,但增幅因品种而异;硒强化后籽粒中硒主要以有机态形式存在;低浓度硒处理可以提高小麦籽粒的百粒重,且不会影响小麦的面粉糊化特性。  相似文献   

6.
采用叶面喷施、根施及根叶并施方式对猕猴桃植株进行富硒处理。结果表明:3种施肥方式对于提高猕猴桃果实硒含量效果的顺序为叶面喷肥根叶并施根施,以叶面喷施0.5 kg硒肥最优,果实硒含量增加了103.5%;提高果实维生素C(Vc)含量的效果顺序为根施根叶并施叶面喷肥,根施0.5 kg硒肥最为显著,果实Vc含量增加了23.0%,而叶面喷肥后果实Vc含量下降;提高果实可溶性固形物含量的效果顺序为叶面喷肥根叶并施根施,以叶面喷施0.5 kg硒肥最优,果实可溶性固形物含量提高了37.2%。结合猕猴桃果实硒含量、营养品质、果树长势以及果园管理成本等因素,建议选用果树绽叶期根施硒肥0.5 kg·株-1作为富硒猕猴桃果园的施肥技术。  相似文献   

7.
富硒花生品种筛选及外源调控花生富硒生产技术研究   总被引:3,自引:0,他引:3  
本研究通过田间试验,测定不同花生品种的自然富硒能力及对外源硒的利用指数,然后通过施用外源硒,研究不同调控措施对花生籽粒硒含量及外源硒利用率的影响,为富硒花生生产提供技术参考。研究结果表明:自然条件下,12个花生品种春花生籽粒的硒含量在0.041~0.180 mg/kg,秋花生籽粒的硒含量在0.039~0.066 mg/kg,外源硒的利用指数为2.3~3.7。施用外源硒肥均能显著提高花生籽粒硒含量,含硒肥料基施、淋施和叶面喷施情况下,花生籽粒对外源硒的利用率分别为0.056%~0.064%、0.23%~0.25%和3.74%~4.99%。可见,不同花生品种间硒的富集能力和对外源硒利用能力均有差异,而叶面喷施的硒肥施用方式下花生对外源硒的利用率最高。  相似文献   

8.
微量元素硒是人体生长发育过程中不可缺少的物质,缺硒会对人体产生严重影响,硒对人体的特殊保健作用已越来越受到科学界的重视。小麦通过科学管理,用硒肥拌种或叶面喷施硒肥,通过生长过程自然转化富集,使植株体内大量生成有机硒蛋白,小麦籽粒中硒的含量增加,达到0.1~0.3 mg·kg-1,同时提高小麦产量和效益。  相似文献   

9.
叶面喷硒对不同作物籽粒硒含量及产量的影响   总被引:3,自引:2,他引:1       下载免费PDF全文
分析了黑龙江省主栽作物(水稻、大豆、玉米和小麦)叶面喷硒的效果。结果表明:原始籽粒含硒量以大豆最高,玉米最低,顺序为大豆小麦水稻玉米;而施入等量的硒后,4种作物籽粒硒含量都有明显的提升,提升幅度与喷硒量呈正相关,其中以小麦和水稻增加最高,大豆次之,玉米最少,且硒含量均在安全补硒值的范围之内。叶面喷硒后作物增产效果不明显。确定了叶面喷硒的浓度范围为11.25~22.50 g·hm~(-2),即可使水稻、大豆、玉米和小麦籽粒中硒含量满足低硒区居民补硒的需要;施硒时期综合比较,水稻的最佳喷硒时期是在扬花后期,玉米的最佳喷硒时期是在抽雄期,大豆是在初花期,小麦是在孕穗期。腐植酸硒降低了高浓度硒对作物的毒害作用,在生产实际中更具有安全性。  相似文献   

10.
叶面过量施硒对玉米产量、硒和矿质营养元素含量的影响   总被引:1,自引:0,他引:1  
为了明确过量施硒对作物生长的毒害效应,为合理施用硒肥提供依据,本研究在田间条件下探究了叶面过量施硒对糯玉米京科糯2000和普通玉米郑单958两个品种产量、硒含量和矿质营养元素含量的影响。结果表明,叶面喷硒量(亚硒酸钠)≤0.2 g·L-1时,京科糯2000植株生物量和籽粒产量与对照(不喷硒)相比持平或略有增加,未表现出毒害效应;京科糯2000在叶面喷硒量≥0.5 g·L-1时,郑单958在叶面喷硒量≥0.1 g·L-1时,其植株生物量和籽粒产量均明显降低;随着叶面喷硒浓度的增加,两品种玉米籽粒硒含量均逐步增加,郑单958产量和籽粒硒含量的变化幅度高于京科糯2000。叶面喷硒可显著提高玉米籽粒锌和铁的吸收量,对铜、磷、镁和钙的吸收基本无影响,但抑制硼的吸收。总体来看,过量施硒抑制2个不同品种玉米生长,造成产量下降,但可提高籽粒硒、锌和铁的营养水平。本研究对玉米微量元素营养调控具有一定的借鉴指导意义。  相似文献   

11.
Some South Dakota soils contain high levels of available selenium (Se) for crop uptake. A field study was conducted to determine if any popular wheat (Triticum aestivum) varieties demonstrate differential Se uptake. A total of 280 samples including eight winter wheat and ten spring wheat varieties were analyzed for grain Se concentration and uptake for two growing years. Soil samples were sequentially fractionated into (1) plant available (0.1?M KH2PO4 extractable) and (2) conditionally available (4?M HCl extractable) pools and analyzed separately for total Se. Selenium concentration in wheat grain had a wide variability and the mean value over two years was 0.63?µg?Se?g?1. Grain Se concentration and Se uptake were not significantly different by wheat varieties tested in this study. Grain Se concentration was significantly correlated with soil Se levels, soil pH, and orthophosphate-P content within a location, but grain Se concentration was strongly influenced by geographical location in which different amounts of soil Se bioavailability occurred.  相似文献   

12.
为研究磷硒配施对冬小麦根土界面硒有效性及形态分级的影响,并探究磷硒配施提高土壤硒有效性的可能机制,以冬小麦为试验材料进行根箱培养试验,设置0(P0)、80(P80)、160 mg·kg-1(P160)3个磷水平和0(Se0)、1 mg·kg-1(Se1)2个硒水平,分析冬小麦植株磷硒含量、累积量、迁移系数及根际和非根际土5种硒形态含量。结果表明,无论施硒与否,随着磷含量的增加,冬小麦生物量、地上部和根系磷含量均增大。施硒1 mg·kg-1显著降低了P80和P160水平下冬小麦生物量、P160水平下根系磷含量及各部位磷累积量。在Se1条件下,施磷增加了各部位硒累积量,但显著降低了地上部硒含量和硒从根系向地上部的迁移系数。在Se0条件下,P160处理增加了根际土壤和非根际土壤中的可交换态硒含量。在Se1条件下,P160处理根际土壤中可交换态硒含量显著高于非根际土壤,但铁锰氧化物结合态硒和残渣态硒含量低于非根际土壤。综上所述,适宜的磷硒配施可影响土壤中各种硒形态的转化过程,可能是由于磷的施入和根系活动共同作用促进了土壤中铁锰氧...  相似文献   

13.
在田间小区的试验条件下研究不同硒(Se)肥的施用方法及施用时期对水稻植株和籽粒中Se的吸收与富集的影响。研究表明:水稻在生长前期和旺盛时期对Se的吸收和积累有很大差异。与对照相比,苗床施Se、土壤施Se和叶面喷Se 3种方式均能明显提高各生育期水稻植株和籽粒中Se的含量,富Se效果达到差异极显著水平。从稻米富Se效果看,富Se含量在0.163~0.207 mg·kg-1之间,Se含量增加了5.8~7.6倍,且都在安全范围内。从水稻富Se的方式上,不同施Se方式富Se效果依次为水稻扬花期喷Se土壤施Se育苗期喷Se对照。从叶面喷施Se的时间上,稻米富Se效果依次是扬花期喷Se育苗期喷Se灌浆期喷Se齐穗期喷Se对照。从水稻富Se类型上看,外源无机Se和有机Se都能明显促进水稻对Se的积累。水稻育苗期和扬花期叶面喷Se在提高水稻稻米中含Se量的同时,并没有降低水稻产量。因此水稻叶面喷Se是一条安全、简单、易操作的途径。  相似文献   

14.
ABSTRACT

Selenium (Se) deficiency in Scandinavian soils is a common problem, and crops generally contain inadequate amounts to meet human need. This study shows a relationship of the Se concentration in spring wheat (Triticum aestivum L., c.v. ‘Helena’) and leaching water with timing of nitrogen (N) [as ammonium nitrate (NH4NO3)] and Se [as sodium selenate (Na2SeO4)] application. Ammonium-nitrate was applied by two methods (i) whole amount at sowing and (ii) in split application as 75% at sowing and 25% at stem elongation. Selenate was applied at cereal growth stages after sowing, e.g., tillering, stem elongation, head emergence, and milking. Split N application in comparison to one N application increased the grain protein content from 12.1 to 13.7 mg g? 1, and grain Se was increased from 0.8 to 1.1 mg kg? 1 when Se was applied at stem elongation and from 0.6 to 0.9 mg kg? 1 when applied at heading. The highest Se concentration in plant was achieved with the split N application and Se application at stem elongation or heading. Selenium leaching losses increased with increasing selenium concentration in the wheat grains. No differences in Se leaching losses were obtained with split N application. Applying selenate and ammonium-nitrate together after tillering increased the grain Se concentration, but did not affect the potential leaching of Se, and thus could be considered as an appropriate time of application of these elements.  相似文献   

15.
Selenium retention in the organic matter of Swedish forest soils   总被引:5,自引:0,他引:5  
Fractions of selenium present in the soil profiles of three Swedish podzols were analysed using a sequential extraction scheme to characterize Se distribution among the organic and inorganic fractions. The process by which selenite deposited from the atmosphere is retained in a podzolic profile rich in organic matter was studied in a column experiment. Selenium present in organic fractions accounted for most of the Se extracted by Na4P2O7/NaOH. All soil organic matter fractions, particularly those in the B horizons, were considerably enriched with Se as compared with plant biomass. The most enriched fraction was that containing hydrophobic fulvates which had C to Se ratios ranging from 33 000 to 80 000. The distribution of Se among the organic fractions differed markedly from that of sulphur. Selenite applied to columns continuously for 67 d was fixed very rapidly upon entering the forest floor layers, with 77% being recovered in the top 2 cm of the forest floor after the experiment. In column leachates from the surface layers, C to Se ratios decreased progressively following Se application. No effect specifically related to Se application was observed for leachates and soil horizons underlying Bs1. The mechanism responsible for the efficient and rapid Se immobilization by organic matter is unknown.  相似文献   

16.
A deficiency or excess of selenium (Se) can cause disease in the human body, and the dietary intake of organic forms of Se is considered the preferable way to satisfy the Se demand in humans. P application decreases Se uptake and thus also Se concentrations in grains of crops, but little is known about how the P application level may affect the organic forms of Se in the grain of winter wheat. A pot trial with three P levels (0, 80, and 160 mg P kg?1 soil) and three Se levels (0, 0.5, and 1 mg Se kg?1 soil) was conducted to investigate the effect of P application on inorganic and organic Se forms, Se bound to protein, polysaccharide, and nucleic acid as well as Se in different protein fractions in the grain of winter wheat. Overall, the concentrations of total Se, and of Se in all analyzed forms, increased with increasing Se application regardless of the rate of P application. In the absence of Se, P application did not have a significant effect on the concentrations of any of the measured Se forms. However, in the presence of Se, increasing P application significantly decreased the concentration of Se of each form. The different rates of P and Se application influenced the proportion of each form of Se in different ways. Increasing levels of P application decreased the concentration of each form of Se in the grain of winter wheat, most likely by a combination of a dilution effect due to enhanced grain yield, and an inhibited Se uptake. Despite an overall decrease in grain Se‐protein, P application might improve the quality of wheat flour by enhancing the accumulation of Se in organic forms such as Se‐nucleic acids and Se‐polysaccharides, as well as the Se in the gliadin and glutenin fractions in the grain.  相似文献   

17.
Abstract

In some parts of the world, the soil selenium (Se) content is too low to ensure the Se level recommended for human or animal consumption in the crops produced. In order to secure a desired concentration of Se in crops, Se has been applied as mineral fertilizer to agricultural fields. Since only a minor part of the inorganic Se applied is utilized by plants and small increases in Se concentrations in, e.g., drinking water, may be toxic, the method is somewhat controversial. As an alternative to Se-enriched mineral fertilizer, different seafood-processing wastes have been examined as a source for Se in crop production. Both in greenhouse pot experiments and field trials the Se in seafood waste was not plant-available during the first growing season. There was no significant difference between the Se concentration in wheat growing in soil without added Se and in soil receiving Se from seafood waste in amounts ranging from 0.9 to 9 g ha?1. Neither was any residual effect of Se in seafood waste seen during a second year growth period. Thus, seafood-processing waste cannot be regarded as a potential source of Se in crop production. Possible mobilization of formerly applied Se, as seafood-processing waste or Se enriched mineral fertilizer due to changes in soil redox conditions were examined in a leaching experiment. The mobility of formerly applied Se was generally very low, but the results indicated that under permanently wet soil conditions leaching of Se may occur in plant dormant periods in soils with low organic matter content and high pH.  相似文献   

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