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1.
大豆种子发育过程中脂肪酸积累模式研究   总被引:1,自引:1,他引:1  
对夏大豆种子发育过程中脂肪酸的累积过程进行了研究.研究表明,大豆种子发育早期有6种脂肪酸,成熟期减少为5种.成熟期的种子亚油酸和油酸占全部脂肪酸的80%以上,棕榈油酸发育中途消失.大豆种子脂肪酸总量呈升-降-升的Z字型变化模式.此外,本文通过对脂肪酸组分的相关性及主成份分析,对大豆种子发育过程中脂肪酸的积累模式进行了探讨,发现大豆种子发育过程中油酸与亚油酸呈同步积累,高度正相关,在脂肪酸组成中具支配地位,推测SAD和FAD2两种酶在决定大豆含油量方面可能具有决定性作用.  相似文献   

2.
不同小麦品种籽粒中脂肪酸组分含量及其相关性研究   总被引:1,自引:0,他引:1  
为了明确小麦品种的脂肪酸及其组分的含量,选取97个小麦品种(系),利用气相色谱仪对其全麦粉脂肪酸组分进行了测定,并初步分析了部分品种(系)的脂肪酸组分含量的分布及其相关性,结果表明,总脂肪酸平均含量为1.91%,其中棕榈酸(C16∶0)、硬脂酸(C18∶0)、油酸(C18∶1)、亚油酸(C18∶2)和亚麻酸(C18∶3)的平均含量依次为0.37%、0.02%、0.27%、1.17%和0.08%,分别占总脂肪酸组成的20%、1%、14%、61%和4%.不饱和脂肪酸(油酸、亚油酸和亚麻酸)在总脂肪酸中所占的比例达到79%;总脂肪酸及其组分含量呈现中间多、两头少的正态分布,变异幅度较大;总脂肪酸含量与棕榈酸、硬脂酸、油酸和亚油酸4种组分含量相关极显著,而与亚麻酸的含量无显著相关.  相似文献   

3.
高低芥酸油菜品种发育籽粒脂肪酸积累模式的研究   总被引:3,自引:1,他引:2  
以甘蓝型油菜低芥酸品种秦油7号和高芥酸品种中油821为材料,对油菜籽粒发育过程中主要脂肪酸的积累模式进行研究,并分析高低芥酸品种间脂肪酸积累的差异及各种脂肪酸之间的相关性。结果表明:根据7种主要脂肪酸在种子发育过程中的积累模式,可将它们分成两类:一类为棕榈酸、硬脂酸、亚油酸、亚麻酸,其积累主要集中在种子发育早期;而油酸、二十碳烯酸和芥酸可归为另一类,其积累主要集中在种子发育后期。两个品种在棕榈酸、硬脂酸、亚油酸、亚麻酸、油酸以及油份积累模式上基本一致,但在油酸、二十碳烯酸和芥酸的积累量上差异较大。  相似文献   

4.
不同花生品种脂肪酸组成及其积累规律的研究   总被引:2,自引:0,他引:2  
以15个花生品种(系)为研究材料,对其油脂含量和脂肪酸组成进行了比较分析。结果显示,所有花生品种(系)种子总油脂含量差异不大,平均为51.34%。主要检测到油酸、亚油酸、棕榈酸、硬脂酸、山萮酸、花生酸、花生烯酸、二十四烷酸8种脂肪酸,其中油酸含量最高,品系E1高达85.61%,品系E11的油酸含量最低,仅为37.12%。含量仅次于油酸的是亚油酸,含量在1.44%~37.11%之间,其中品系E11的亚油酸含量最高,品系E1含量最低。同时,选取其中4个品种(系)进行种子发育过程中油脂和脂肪酸含量变化规律的研究。结果显示,在种子发育过程中油脂含量持续积累,呈先快后慢趋势,部分品系在后期油脂含量略有下降。硬脂酸含量逐渐升高,棕榈酸含量逐渐降低。油酸含量的变化规律与亚油酸相反,说明油酸含量的增加可能由于生成亚油酸脂肪酸的减少。  相似文献   

5.
以高含油量油菜品系为材料,研究角果发育过程中种子和果皮油份积累与主要脂肪酸的动态变化。结果表明:高含油量品种在角果发育早期油份的合成与积累较为缓慢,开花后20d种子含油率仅占成熟种子油份含量的8.35%-12.32%,角果发育中期是油份含量增加最快的时期,开花后40d种子含油率占成熟种子油份含量的72.89%-94.73%,籽粒成熟时油份含量达到最大值。果皮的油份积累与种子相反,随角果发育油份含量依次下降,两者呈极显著负相关,相关系数为-0.95。种子和果皮的二十碳烯酸、芥酸合成规律明显不同。种子的7种主要脂肪酸组成中芥酸和二十碳烯酸与16碳、18碳脂肪酸含量均呈负相关,亚麻酸和亚油酸与棕榈酸、硬脂酸和亚油酸含量均呈正相关,与油酸含量H2和H27为正相关,H1和H28为负相关。而油酸与其它脂肪酸的相关关系较为复杂,与棕榈酸、硬脂酸和亚油酸、亚麻酸的相关关系有正相关,也有负相关,可见油酸的合成与积累不仅与棕榈酸、硬脂酸有关,还会影响亚油酸和亚麻酸的含量,这是创新油菜高油酸材料的基础。  相似文献   

6.
花生种子发育过程中脂肪酸累积模式研究   总被引:8,自引:2,他引:6  
花生种子脂肪酸组成是决定花生油营养和储藏品质的关键因子。本文通过对花生种子脂肪酸累积模式的研究,揭示花生脂肪酸组成的形成规律。在开花结荚期和荚果成熟期每隔7天取材一次,果针入土后第7天第一次取材,对各个时期果仁进行脂肪酸分析,研究脂肪酸组成及积累规律;并对种子发育全过程的脂肪酸组成进行相关分析和主成份分析。研究结果显示,下针后10天内的花生种子可检测到9种脂肪酸,C16:1和C18:3在发育过程中由高到低,逐渐消失,其他7种脂肪酸则随着花生种子的发育逐渐积累增高。成熟的花生种子中油酸和亚油酸含量占脂肪酸总含量的81%左右。脂肪酸总量在接近成熟时有所下降。不同脂肪酸在累积过程中显示了高度相关性,C16:1和C18:3之间呈正相关,属于第一类;其余7种脂肪酸之间也均呈正相关,属于第二类。第一和第二类脂肪酸之间呈负相关。主成份分析表明,9种脂肪酸可以分成三类:C18:1与C18:2各为一类,其他7种脂肪酸为另一类,C18:1与C18:2之比是花生脂肪酸组成的决定性因素。通过分析表明,决定花生脂肪酸组成的关键基因主要是脂肪酸去饱和酶FAD2基因和SAD基因,有目的地对这两个基因的表达进行调控对于花生脂肪酸组成的改良有着重要的价值和意义。  相似文献   

7.
花生籽仁发育过程中脂肪酸积累规律研究   总被引:2,自引:0,他引:2  
以高O/L花生品种8130为材料对其籽仁发育过程中脂肪酸的累积过程进行分析。结果显示,花生籽仁中,含有8种主要的脂肪酸,按含量高低依次为油酸、亚油酸、棕榈酸、硬脂酸、山嵛酸、花生酸、二十四烷酸、花生烯酸;花生籽仁发育过程中,油酸含量逐渐增多,其它脂肪酸呈逐渐降低的变化规律。饱满籽仁中亚油酸和油酸含量占全部脂肪酸的80%以上。脂肪酸总量在籽仁发育前期增加迅速,然后缓慢增长,到籽仁成熟期又迅速增加,在收获期达到峰值,油酸亚油酸比值(O/L),随籽仁发育呈逐渐增加的变化规律,饱满籽仁达到最大。  相似文献   

8.
大豆种质资源脂肪酸组分含量及品质性状的相关性分析   总被引:4,自引:3,他引:1  
对黑龙江省大豆种质资源的脂肪酸含量及其与品质性状的相关性进行分析,为科学地评价和利用大豆种质资源奠定基础.采用毛细管气相色谱法,对100个大豆品种(系)的脂肪酸组分进行了测定,并对各组分和品质性状间的相关性进行了分析.结果表明:大豆中的脂肪酸含量高低顺序为:亚油酸>油酸>棕榈酸>亚麻酸>硬脂酸.不同大豆品种各脂肪酸含量均有一定的差异,其中硬脂酸的变异系数最大,为13.24%,亚油酸的变异系数最小,为4.57%.通过组分间的相关性分析表明,油酸与亚油酸、亚麻酸和棕榈酸呈极显著负相关,棕榈酸与硬脂酸呈显著负相关,而亚油酸与亚麻酸呈显著正相关.蛋自质与油份呈极显著负相关.  相似文献   

9.
试验结果表明,高、中芥酸含量的油菜种子油酸含量,开花后25—30天达到最大量,此后迅速下降。芥酸含量随着油酸含量的下降而迅速增加。亚油酸和棕榈酸以及亚麻酸含量在种子形成初期最高,以后随着种子的发育而下降。双低品种的油酸含量,在种子形成过程中出现一个停滞期。不同药剂处理角果,对种子主要脂肪酸含量有一定影响。  相似文献   

10.
为了进一步鉴定和评价亚麻种质资源的脂肪酸组分含量,采用近红外仪检测国内外102份亚麻种质的棕榈酸、硬脂酸、油酸、亚油酸、亚麻酸5种脂肪酸含量,用统计学方法分析遗传多样性和相关性.结果 表明,5种脂肪酸含量变异系数为11.78% ~35.61%,依次排序为硬脂酸>亚油酸>油酸>亚麻酸>棕榈酸;遗传多样性指数为1.84~ ...  相似文献   

11.
Teas of plant origin traditionally consumed by the Mountain Pima of Chihuahua, Mexico, were analyzed for mineral nutritional content. Fe, Cu, Zn, Ca, and Mg composition was determined for native teas made from shoots ofTagetes lucida, T. filifolia, Elytraria imbricata, andHolodiscus dumosus, and from root xylem ofCeanothus depressus andPhaseolus ritensis. Native uses of these teas are also described.  相似文献   

12.
13.
Summary The effects of the leaves of five plant species, one from each of the generaAmbrosia, Anemone, Eupatorium, Eucalyptus andLantana, on potato tuber moth were investigated under indigenous storage conditions at the Central Potato Research Station, Shillong (1800 m above sea level). Their action was compared with that of a biological insecticide (spores ofBacillus thuringiensis), a chemical insecticide (carbaryl), and an untreated control. The data collected after six months storage on tuber damage, sprout damage and the rotting indicated that the leaves ofLantana aculeata provided most protection to the tubers, reducing damage from over 70% in the check to below 5%, and sprout damage from over 45% to below 3%. Next best wasEucalyptus globulus followed byB. thuringiensis. They may be used on tubers stored for table use or for seed as they had no adverse effect on germination or on the yield of a subsequent crop.  相似文献   

14.
Summary

The efficiency of N fertilizers is usually poor; often less than 50% of the applied N is taken up by the crop. This review focuses on various N fertilizers with respect to the significance of different N loss pathways, namely (i) ammonia volatilization, (ii) dinitrogen and nitrogen oxide emissions, and (iii) nitrate leaching. Further, the significance of biological N immobilization, ammonium fixation and, finally, the impact of nitrate vs. ammonium uptake on crop yield are also discussed. The reviewed literature shows that N fertilizers may differ markedly in their susceptibility to losses. There is, however, considerable scope to improve N efficiency of each N source by proper N management practices.  相似文献   

15.
16.
Health authorities worldwide have consistently recommended the regular consumption of marine fishes and seafood to preserve memory, sustain cognitive functions, and prevent neurodegenerative processes in humans. Shrimp, crabs, lobster, and salmon are of particular interest in the human diet due to their substantial provision of omega-3 fatty acids (n-3/PUFAs) and the antioxidant carotenoid astaxanthin (ASTA). However, the optimal ratio between these nutraceuticals in natural sources is apparently the key factor for maximum protection against most neuro-motor disorders. Therefore, we aimed here to investigate the effects of a long-term supplementation with (n-3)/PUFAs-rich fish oil, ASTA-rich algal biomass, the combination of them, or krill oil (a natural combination of both nutrients) on baseline redox balance and neuro-inflammation indexes in cerebellum and motor cortex of Wistar rats. Significant changes in redox metabolism were only observed upon ASTA supplementation, which reinforce its antioxidant properties with a putative mitochondrial-centered action in rat brain. Krill oil imposed mild astrocyte activation in motor cortex of Wistar rats, although no redox or inflammatory index was concomitantly altered. In summary, there is no experimental evidence that krill oil, fish oil, oralgal biomass (minor variation), drastically change the baseline oxidative conditions or the neuro-inflammatory scenario in neuromotor-associated rat brain regions.  相似文献   

17.
Wheat bran is a composite material made of several layers, such as pericarp, testa and aleurone. It could be fractionated into purified fractions, which might either be used as food ingredients, or serve as a starting material for extraction of bioactive compounds. The aim of this work was to evaluate the potential of using electrostatic separation as a way to obtain purified fractions from wheat bran. Ultrafine-ground bran obtained either by cryogenic grinding or by grinding at ambient temperature was used as starting material. The ultrafine bran was then charged by tribo-electrification and introduced in a chamber containing two high voltage electrodes, where bran particles were separated depending on their acquired charge, allowing positively and negatively charged fractions to be collected separately. The particle size distribution, microstructure and biochemical composition of the obtained fractions were studied. The charge of the particles was influenced by their biochemical composition: particles rich in highly branched and cross-linked arabinoxylans (pericarp) were separated from particles rich in β-glucan, ferulic acid and para-coumaric acid (aleurone cell walls). The testa and the intracellular compounds from aleurone were not highly charged, neither positively nor negatively. The most positively charged fraction represented 34% of the initial bran, and contained 62% of the ferulic acid present in the initial bran. The yield of the separation process was good (5.4% loss), and could be further increased.  相似文献   

18.
Summary The in vitro antimicrobial activity of extracts from accessions ofSolanum commersonii Dun. collected in the south of Uruguay was investigated against five microorganisms including the pathogenRalstonia solanacearum. A total of 30 extracts corresponding to organic and aqueous extracts were studied. Interestingly, most of the positive results for growth inhibition were againstR. solanacearum. The extracts were also analyzed for the presence of glycoalkaloids and lectins. Six of the ten aqueous extracts showed lectin presence and a wide variation in the type and amounts of glycoalkaloids, was found. Results indicate that there is no clear relationship between the antimicrobial activity against the five microorganisms screened and the presence or amounts of lectins and glycoalkaloids, traditionally regarded as possible antimicrobial metabolites in theSolanum genus, which indicates the presence of as yet unidentified antimicrobial compounds.  相似文献   

19.
Pulque is made by fermenting the agave sap or aguamiel of Agave atrovirens with a whole array of microorganisms present in the environment including several lactic acid bacteria and yeasts such as Saccharomyces cerevisiae. Ascorbic acid was determined in pulque and aguamiel, respectively. Phytase activity in lees, liquid and freeze-dried pulque was assayed by measuring the appearance of phosphate from phytate by a colorimetric method likewise phosphate from phytate present in fresh corn tortilla was measured after in vitro incubation with pulque. Iron, zinc, calcium, magnesium and selenium contents were measured in pulque and corn tortilla as well as in nixtamalized corn flour (NCF), the latter is used to make instant tortilla, since corn provides most of the energy as well as most of the phytate in the Mexican rural diet. Pulque showed phytase activity but much less ascorbic acid and iron than previously reported; additionally, phytase in pulque hydrolyzed most of phytate’s corn tortilla. Lees, which is mostly made of pulque’s microbiota, significantly accumulated iron and zinc but no selenium. NCF was fortified with iron by the manufacturers but poorly blended. There were significant differences on selenium content between tortillas samples, apparently some soils in central Mexico are selenium deficient. Moderate pulque intake appears to increase the bioavailability of iron and zinc bound by phytate in corn.  相似文献   

20.
Novel food and non-food uses for sorghum and millets   总被引:4,自引:3,他引:4  
Sorghum and millets have considerable potential in foods and beverages. As they are gluten-free they are suitable for coeliacs. Sorghum is also a potentially important source of nutraceuticals such antioxidant phenolics and cholesterol-lowering waxes. Cakes, cookies, pasta, a parboiled rice-like product and snack foods have been successfully produced from sorghum and, in some cases, millets. Wheat-free sorghum or millet bread remains the main challenge. Additives such as native and pre-gelatinised starches, hydrocolloids, fat, egg and rye pentosans improve bread quality. However, specific volumes are lower than those for wheat bread or gluten-free breads based on pure starches, and in many cases, breads tend to stale faster. Lager and stout beers with sorghum are brewed commercially. Sorghum's high-starch gelatinisation temperature and low beta-amylase activity remain problems with regard to complete substitution of barley malt with sorghum malt . The role of the sorghum endosperm matrix protein and cell wall components in limiting extract is a research focus. Brewing with millets is still at an experimental stage. Sorghum could be important for bioethanol and other bio-industrial products. Bioethanol research has focused on improving the economics of the process through cultivar selection, method development for low-quality grain and pre-processing to recover valuable by-products. Potential by-products such as the kafirin prolamin proteins and the pericarp wax have potential as bioplastic films and coatings for foods, primarily due to their hydrophobicity.  相似文献   

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