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1.
大果油茶实生树茶籽油脂肪酸组成分析   总被引:2,自引:0,他引:2  
为了探讨大果油茶茶籽油脂肪酸组成问题,以实生油茶林丰产单株果实为材料,采用索氏提取法提取茶籽油,气相色谱法测定C12~C24脂肪酸含量。结果表明,茶籽油所含脂肪酸种类在实生单株间和年际间均存在差异;茶籽油脂肪酸以不饱和脂肪酸为主,平均相对比重占86.625%,其中又以油酸为主,其含量和相对比重分别平均为79.352%和80.253%;不饱和脂肪酸和饱和脂肪酸的相对比重、油酸和亚油酸的含量和相对比重均分别呈极显著、显著或极显著和显著负相关;主要脂肪酸(油酸、亚油酸、棕榈酸等)含量和相对比重均无显著的实生单株间和年际间差异。可见,大果油茶茶籽油的主要脂肪酸组成在不同实生单株间和年际间均稳定,且都以油酸为主;不饱和脂肪酸和饱和脂肪酸、油酸和亚油酸可能存在转化关系。  相似文献   

2.
Rhizosphere microbes play a cardinal role in transformation and crop uptake of arsenic (As), thereby relieving or intensifying the risk of As contamination in the food webs. How rhizosphere microbiomes respond to As contamination in different paddy soils and rice growth stages is still unclear. Here, we conducted a rice pot experiment to address the effects of rice developmental stage and As contamination on the rhizosphere microbial communities in two contrast paddy soils, a yellow clayey paddy soil (YP, pH 5.1, soil organic matter 20.8 g/kg) and red paddy soil (RP, pH 6.2, soil organic matter 46.1 g/kg). The rhizosphere microbial communities were investigated using phospholipid fatty acids analysis at tillering, panicle initiation, and maturity stages. The results showed that rice growing in YP soil accumulated 2-10 times higher contents of As in root than that in RP soil. There was a significant effect of rice growing stage, independent of soil types and As treatment, on rhizosphere microbial community composition in both YP and RP soils as depicted by canonical correspondence analysis. As contamination significantly altered rhizosphere microbial community composition only in YP soil, which showed the soil type dependency of the As contamination effect. In RP soil, the higher content of soil organic matter reduced the impact of As contamination. Soil pH explained more percentage of variation in microbial community composition than soil DOC and DON did. These influences of soil physiochemical properties on heavy metal available and rhizosphere microbial community may lay the foundation for exploration of bioremediation potential.  相似文献   

3.
Crude vegetable oil obtained by solvent extraction from rubber seed (Hevea brasiliensis) and breadfruit (Artocarpus altilis) were subjected to alkali refining (neutralisation), degumming and bleaching. At each stage of refining, the crude and the refined oil were analysed for their physical and chemical characteristics notably specific gravity, moisture and volatile matter content, saponification, iodine values, peroxide value, unsaponifiable matter, fatty acids and free fatty acids. Results showed an improvement in the quality of the oil after refining. Refining decreased the free fatty acids and peroxide value, which are some of the characteristics that determine stability. There was a very slight decrease in saponification value and unsaponifiables matter after refining. Refining did not have much effect on the fatty acid composition except slight nonconsistent decreases in saturated and unsaturated fatty acids. There was no decrease in iodine value.  相似文献   

4.
该研究以人参籽为原料,采用超临界CO2流体技术萃取人参籽油,通过正交试验优化了萃取人参籽油工艺参数,再将其与通过冷榨法及溶剂法提取的人参籽油进行对比,测定和比较了不同工艺制取的人参籽油的脂肪酸组成。试验结果表明,在萃取压力26MPa、萃取温度50℃、萃取时间2 h工艺条件下,人参籽油得率为16.2%。经检测,人参籽油脂肪酸组成为不饱和脂肪酸占99%以上,其中油酸含量极高,可达73.93%。通过不同制取方法所得到的人参籽油的脂肪酸组成分析表明,超临界CO2萃取法与溶剂萃取法所提取人参籽油的脂肪酸明显多于压榨法的脂肪酸成分;且超临界CO2萃取法具有无有机化学试剂残留的明显优势,因此,是未来人参籽油提取中可以应用的一种绿色环保的提取工艺和技术。  相似文献   

5.
叶籽两用茶树种质的研发利用对于茶产业结构调整、茶园综合效益提升具有特殊意义,因此深入研究现有茶树种质与茶籽相关性状特征,可为叶籽两用茶树的遗传育种提供基础信息.从福建、云南和湖南采集了31份同年结实茶籽,对种仁的含油率和脂肪酸组成特征进行测定.结果表明,不同茶树茶籽含油率存在2倍以上的差异;从茶籽油脂中检测到10种脂肪...  相似文献   

6.
为了筛选出含油量高且脂肪酸组分丰富的茶树品种,对9个省区49个茶树品种茶叶籽进行研究.结果发现,不同品种茶树茶叶籽含油量范围为16.29%~33.80%.采用气相色谱法测定各个品种茶叶籽油中脂肪酸的组分和含量,共检测出19种脂肪酸,主要为油酸、亚油酸、棕榈酸、硬脂酸和α-亚麻酸,分别占总脂肪酸含量的46.00%~72....  相似文献   

7.
《Plant Production Science》2013,16(4):265-269
Abstract

The relationship between nitrogen efficiency (NE), defined as seed yield per unit nitrogen (N) application, and seed quality was examined in two oilseed rape (Brassica napus L.) varieties at 5 N application levels, 0.6, 3, 6, 12, 15 mmol L?1, N1, N2, N3, N4 and N5, respectively. Seed yield, oil yield and protein content were increased with the increase in N application level, but NE and oil content were decreased, and the fatty acid composition in seed was hardly changed. Analysis of seven fatty acids revealed aslight decrease in the contents of erucic acid and arachidonic acid with the increase in N application level, but no obvious change in the contents of palmitic acid, stearic acid, oleic acid, linoleic acid and linolenic acid. Compared with the low NE variety H29, the seed yield and contents of erucic acid and arachidonic acid in the high NE variety bin270 were more markedly increased with the increase in N application level, and the oil content was hardly changed. The seed yield, oilcontent and oil yield were higher in the high NE variety than in the low NE variety at all 5 N application levels. There were no significant differences in protein, palmitic acid, stearic acid and oleic acid contents between the varieties at any of the 5 N application levels, but there were slight differences in the linoleic acid and linolenic acid contents between the two varieties. In brief, N application improved oil yield more greatly in the high NE variety than in the low NE variety, but hardly affected the fatty acid composition. Therefore, the seed quality and oil content of oilseed rape may not be decreased by breeding of a high NE variety with a high N absorption efficiency and high N use efficiency.  相似文献   

8.
The baobab seed and pulp were analyzed for proximate composition, mineral content, and amino acid composition. The seed oil and protein were evaluated for their fatty acid profile and protein solubility. The seed was found to be a good source of energy, protein, and fat. Both the kernel and the pulp contain substantial quantities of calcium, potassium, and magnesium. Amino acid analyses revealed high glutamic and aspartic acid contents and the sulfur-containing amino acids as being the most limited amino acid. The fatty acid profile showed that oleic and linoleic were the major unsaturated fatty acids, whereas palmitic was the major saturated acid. Of the several solvents tested to solubilize the seed protein, 0.1 M NaOH was found to be the most effective. The protein was more soluble at alkaline than acidic pH, with the lowest solubility at pH 4.0.  相似文献   

9.
Kenaf (Hibiscus cannabinus L.) is a fibre plant native to east-central Africa. The potential for using kenaf seeds as a source of edible oil is often overlooked when considering kenaf as a fibre and feed crop. The aim of this research was to study and compare the fatty acid composition and oil content of eight commercial kenaf varieties from various countries. Linoleic, oleic, and palmitic acid were the predominant fatty acids in all cultivars. Percentages of fatty acids varied greatly among different kenaf varieties. Gregg had the highest percentage of linoleic acid whilst El Salvador had the lowest. El Salvador had the highest percentage of oleic acid and Endora had the highest percentage of palmitic acid. Stearic acid and palmitic acid were positively correlated, as well as stearic and linoleic acid. Increasing stearic and linolenic acid and reducing palmitic acid at the same time therefore might be difficult through conventional breeding. The oil content was 19.84% on average and there was not much difference between the varieties. The relatively high oil content and the unique fatty acid composition, suggested that kenaf seed could be used as a source of edible oil. Kenaf oil can be considered nutritionally healthy because of the relatively high amount of monounsaturated and polyunsaturated fatty acids.  相似文献   

10.
Cuphea (Cuphea viscosissima Jacq. x C. lanceolata W.T. Aiton, PSR23) is a new oilseed being developed in the north-central USA. Cuphea oil is high in medium-chain fatty acids suitable for detergent/cleaner applications and has potential for use in cosmetics. The objectives of this study were to determine the effect of seed development on seed moisture, weight, oil content, fatty acid composition, germination, and vigor. Two thousand cuphea flowers were tagged at anthesis in the field each year at Prosper, ND, in 2004, 2005, and 2006. Each flower that developed into a seed capsule was tagged and labeled with the date of anthesis. Two hundred developed capsules from the labeled flowers were harvested at 3 to 4-day intervals from 5- to 35 days post anthesis corresponding with 37 to 295 growing degree days (GDD). The GDD were calculated using a base temperature of 10 °C. Seed development required approximately 253 GDD or 30 days post anthesis to reach physiological maturity. Maximum seed germination was reached at 33 days post anthesis. Seed oil content increased and oil composition changed as seed matured. Seed oil was high in linoleic and palmitic acids from 0 to 10 days post anthesis and declined thereafter while capric acid began to accumulate at 10 days post anthesis and reached above 70% at physiological maturity.  相似文献   

11.
Field studies were conducted over three years on a clay loam (CL) and fine sandy loam (FSL) soil on the eastern Canadian prairies to evaluate the impact of urea and urea ammonium nitrate (UAN), with or without the urease inhibitor N-(n-butyl) thiophosphoric triamide (NBPT), placed near the seed-row in a one-pass seeding and fertilizing operation on seed protein, oil, chlorophyll and glucosinolate content of canola (Brassica napus L.). Application of N fertilizer as a side-band application at the time of seeding increased protein concentration and decreased oil concentration. Protein and oil yield increased with low to moderate N rates, but stabilized or fell with high N rates due to reductions in yield from seedling toxicity. Both chlorophyll and glucosinolate concentrations increased with increasing N rates. Use of UAN led to higher protein, chlorophyll and glucosinolate and lower oil concentration than urea on the CL soil. Use of the urease inhibitor NBPT generally increased oil concentration on both soils and reduced the chlorophyll and glucosinolate concentration on the CL soil. Observed difference may have been due to delayed maturity and reduced stand density caused by seedling damage and high N rates. High N rates applied as a side-band of urea or UAN near the canola seed row can negatively influence both seed yield and quality in canola and the negative effects may be reduced by the use of the urease inhibitor NBPT.  相似文献   

12.
Lesquerella fendleri (Gray) Wats. is a potential new oilseed crop for the arid southwestern United States. Lesquerella seed oil with similar properties as castor oil is being considered as a domestic replacement for the imported castor oil. Development of new crops with low irrigation needs is of high priority. Because the most critical stage of sensitivity to moisture deficits has not been determined in Lesquerella species, the objectives of this study were: (i) to identify the most critical stage or stages for moisture deficit and, (ii) to determine the effect of moisture deficit on yield, yield components, oil and fatty acid composition. Two-year field studies were conducted at the New Mexico State University, Leyendecker Plant Science Research Center. The experimental design was a randomized complete block. The treatments consisted of (a) T1: Continuous favorable soil moisture [irrigated at 50% soil water depletion (SWD)]. (b) T2: Moisture stress (75% SWD) from establishment to initial flowering with no stress from flowering to final harvest (50% SWD). (c) T3: No stress imposed from establishment to initial flowering (50% SWD) followed by stress to final harvest (75% SWD). (d) T4: Moisture stress (75% SWD) from establishment to final harvest. The amount of water applied ranged from 810 to 729 mm for the first year, and 810 to 625 mm for the second year. Seed weight per plant and number of pods per plant were generally higher when water availability was maintained at or above 50% SWD throughout the growing season. Neither seed number per pod nor seed size was influenced by irrigation treatments. Lesquerella was more sensitive to water availability during flowering and seed development as a greater loss in seed yield occurred when irrigation was delayed to 75% SWD during that stage of development. Seed yield and dry matter production from the 2 year field studies were closely related to the seasonal cumulative evapotranspiration. For each millimeter of evapotranspiration, seed yield increased from 1.8 kg ha−1 mm in 1994–1995 to 1.3 kg ha−1 mm for 1995–1996. The dry matter production increased 13.4 kg ha−1 for each mm increase in seasonal evapotranspiration during 1994–1995. This relationship was a second order polynomial with an R2 of 0.86 during 1995–1996. The WUEgr and WUEdm were highest under the most favorable water availability conditions for growth and seed development. Delaying irrigation to 75% SWD throughout the crop growth period resulted in the lowest oil content. Lesquerolic acid content was not affected by irrigation during both the growing seasons.  相似文献   

13.
《Plant Production Science》2013,16(3):226-237
Abstract

Growth, yield and quality of sunflower (Helianthus annuus L.) in a rotational paddy field were compared with those in an upland field. In the rotational paddy field the growth was significantly suppressed and the seed and oil yields were significantly lower than those in the upland field. In the maturing period, oil accumulated in seeds until about 25 d after flowering (DAF) in both fields, but less in the rotational paddy field than in the upland field. Differences in oil contents (per seed) between the fields were seen from about 25 DAF onward. The fatty acid in seeds changed with maturing of plants. In mid-oleic hybrids, oleic acid increased remarkably until about 25 DAF and then decreased slightly; linoleic acid content decreased until about 14 DAF and then tended to increase. In linoleic acid hybrids, oleic acid increased until about 14 DAF and then decreased; the linoleic acid content tended to be low until about 14 DAF and then increased. Although the temporal patterns of fatty acid compositions during seed maturation were similar in both fields, the oleic acid content tended to be lower in the rotational paddy field even under the same climatic conditions and ripening periods. The differences between the fields were seen clearly from around 25 DAF. We discuss our findings with regard to physiological changes in developing seeds and the effects of high or changeable soil moisture content on sunflower growth and quality.  相似文献   

14.
The physicochemical composition ofSclerocarya birrea was assessed by standard methods and was found to contain 11.0% Crude oil, 17.2% Carbohydrate, 36.70% Crude protein 3.4% fibre and 0.9% crude saponins. The fatty acid distribution in the seed oil was obtained by fractionating the volatised fatty acid by GC-MS. The oil is made up of nine fatty acids of which palmitic, stearic and arachidonic acids are the most dominant.  相似文献   

15.
The chemical composition, main physicochemical properties and thermal stability of oil extracted from Acacia senegal seeds were evaluated. The oil, moisture and the ash contents of the seeds were 9.80%, 6.92% and 3.82%, respectively. Physicochemical properties of the oil were iodine value, 106.56 g/100 g of oil; saponification value, 190.23 mg KOH/g of oil; refractive index (25 °C), 1.471; unsaponifiable matter, 0.93%; acidity, 6.41% and peroxide value, 5.43 meq. O2/kg of oil. The main fatty acids in the oil were oleic acid (43.62%) followed by linoleic acid (30.66%) and palmitic acid (11.04%). The triacylglycerols (TAGs) with equivalent carbon number ECN 44 (34.90%) were dominant, followed by TAGs ECN 46 (28.19%), TAGs ECN 42 (16.48%) and TAGs ECN 48 (11.23%). The thermal stability analysed in a normal oxidizing atmosphere showed that the oil decomposition began at 268.6 °C and ended at 618.5 °C, with two stages of decomposition at 401.5 °C and 576.3 °C. According to these results, A. senegal seed oil has physicochemical properties, fatty acids composition and thermal characteristics that may become interesting for specific applications in several segments of food and non-food industries.  相似文献   

16.
花生籽仁不同发育时期不同部位主要营养成分变化   总被引:2,自引:0,他引:2  
本研究以不同油酸花生品种为材料,对籽仁含油量、脂肪酸和蔗糖含量累积规律和基豆先豆间差异及籽 仁不同部位差异进行分析。结果表明,随着花生籽仁的发育,含油量增加且高油品种含油量积累速率高于低油品 种,蔗糖含量下降;不饱和脂肪酸逐渐增加,饱和脂肪酸和超长链饱和脂肪酸逐渐下降,亚麻酸逐渐降低到消失,其 中高油酸材料棕榈酸、亚油酸和亚麻酸的下降速率以及油酸的上升速率高于普通油酸材料。各材料脂肪酸在基豆 和先豆间无显著差异,而含油量基豆高于先豆。成熟籽仁胚中棕榈酸、亚油酸、花生烯酸、山嵛酸和二十四碳烷酸 含量显著高于子叶,含油量、硬脂酸和油酸含量低于子叶,在胚中约含有0.5%左右的亚麻酸,而子叶中未检测到亚 麻酸。本研究结果为选育品质优的油用型和食用型花生品种具有指导意义。  相似文献   

17.
The Mediterranean region suffers of drought which affects plant behaviour regarding biochemical responses. Accordingly, the effects of water deficit on growth, essential oil and fatty acid composition of caraway (Carum carvi L.) seeds were investigated. Plants were treated with different levels of water deficit: control, moderate water deficit and severe water deficit. Plant growth (height, fresh and dry matter weight) was significantly reduced by severe water deficit. This last caused also important reductions of the seed yield and yield components. Drought decreased significantly seed total fatty acid contents and particularly the petroselinic ones whose proportions decreased significantly by 12.17 and 18.47%, in comparison with the control, under moderate water deficit and severe water deficit, respectively. Besides, moderate water deficit increased the essential oil yield (expressed as g/100 g on the basis of dry matter weight). The main essential oil constituents were carvone and limonene which showed an increasing of their contents under water deficit levels. Thus, water deficit induced a significant reduction in growth parameters and fatty acid content, and an increase in the essential oil compounds. These bioactive compounds have been required in many industrial products.  相似文献   

18.
以7种主栽油用山茶为材料,研究了不同山茶果实经济性状、茶油脂肪酸组成及角鲨烯、β-谷甾醇和维生素E等生物活性物质含量间的差异。结果表明:7种主栽油用山茶的果实经济性状、脂肪酸组成、角鲨烯、β-谷甾醇和维生素E含量均存在较大差异,其中小果油茶的鲜出籽率(60.07%)、干出籽率(37.47%)、鲜果含油率(10.76%)最高;浙江红山茶的出仁率(64.99%)、种仁含油率(60.23%)和干籽含油率(38.47%)最大,油酸(82.69%)和单不饱和脂肪酸(83.18%)含量最高、多不饱和脂肪酸(5.96%)含量最低,是高油酸品种选育的理想材料;7种山茶籽油中的角鲨烯、β-谷甾醇和维生素E等3类生物活性物质含量高低依次为β-谷甾醇>角鲨烯>维生素E,其中博白大果油茶的角鲨烯、β-谷甾醇和维生素E含量最为丰富,这可为3类活性物质利用提供潜在植物源树种。相关分析表明,β-谷甾醇含量与出仁率、干籽含油率呈显著负相关,角鲨烯、维生素E与果实经济性状相关不显著。  相似文献   

19.
The soyfood industry prefers some soybean [( Glycine max L. (Merr.)] cultivars over others based on chemical constituents, physical traits, and processing quality of the seed. However, soybean cultivars possessing the combination of desirable agronomic traits and biochemical characteristics that enhance the quality of soyfoods have not been identified in the U.S. Thus, this research was conducted with the objective of determining yield, seed protein, and fatty acid composition of soybean genotypes selected for tofu production. Twelve soybean genotypes were planted in plots arranged in a randomized complete block design with four replications at the Agricultural Research Station, Fort Valley State University, Georgia during 1994 and 1995. Seed yield ranged from 1.6 to 3.0 metric tons/ha. The protein content varied between 314.2 and 480.7 g/kg seed. Both BARC-8 and BARC-9 had significantly higher protein content than other genotypes. These two genotypes also showed significant year by genotype interactions for some fatty acids. V71-370 had the highest oleic acid concentration and a high ratio (0.92) of monounsaturated to polyunsaturated fatty acids. The concentration of linoleic and linolenic acids ranged from 406.5 to 531.0 and 37.1 to 63.0 g/kg oil, respectively. Seed yield was correlated with biomass, harvest index, and filled pods per m2. In this study, V71-370 was found to be relatively superior in oil quality with fatty acid composition desirable for human consumption. The significant variation for seed yield and biochemical characteristics observed among the few genotypes examined in this study indicates the potential for breeding high yielding soybean cultivars suitable for soyfoods. Therefore, there is a need for evaluation of soybean germplasm for agronomic traits that contribute to seed yield and biochemical characteristics including fatty acid profiles that enhance soyfood quality before initiating development of suitable cultivars for tofu.  相似文献   

20.
Chia (Salvia hispanica L.), an annual herb of the Labiatae family, produces seeds which were one of the basic foods of Central American civilizations in pre-Columbian times. Chia seed contains the highest known percentage of α-linolenic fatty acid of any plant source. In recent years, chia seed has become increasingly important for human health and nutrition because of its high content of α-linolenic fatty acid, and the beneficial health effects that arise from its consumption. A study was undertaken to characterize protein and oil contents as well as fatty acid composition of chia seeds grown in some larger commercial fields, in an attempt to determine how these components are affected by location. Oil saturation tended to decrease as elevation of seed production increased, with decreasing levels of palmitic, stearic, oleic, and linoleic fatty acids found. The main constituent in the chia oil was ω-3 α-linolenic fatty acid, and ranged from 64.8% to 56.9%. Differences were significant (P < 0.05) among locations. Significant differences in protein content and fatty acid composition were also found for the commercially grown chia originating from three ecosystems. It is possible that these differences could be used to distinguish chia's origin, if additional research was undertaken to characterize such differences.  相似文献   

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