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1.
The objective of this study was to characterise the nutritional potential of leaves and identify a diversity centre with low cyanide and high nutrient content among 178 Latin American cassava genotypes. This field-based collection represents the seven diversity centres, held at The International Center for Tropical Agriculture (CIAT Palmira, Colombia) by the Cassava Program. The cyanide, all-trans-β-carotene and lutein concentrations in cassava leaves ranged from 346 to 7484 ppm dry basis (db), from 174–547 μg g−1 db and 15–181 μg g−1 db, respectively. Cassava leaves also showed significant levels of essential amino acids leucine, lysine, phenylalanine, valine and threonine, and average total protein content of 26.24 g 100 g−1 db. Among seven diversity centres, South American rainforest group showed low cyanide and high carotene content in leaves. In addition, VEN77 and PAN51 genotypes stood out for having low cyanide in leaves and roots and high carotene in leaves. This genetic diversity can be used to select high potential progenitors for breeding purposes.  相似文献   
2.
To modify the glycan part of glycosides, the gene encoding β‐glycosidase was cloned from Bacteroides thetaiotaomicron VPI‐5482. The cloned gene, bt_1780, was expressed in Escherichia coli MC1061 and the expressed enzyme was purified using Ni‐NTA affinity chromatography. The purified enzyme, BTBG, showed optimal activity at 50 °C and pH 5.5. Interestingly, this enzyme did not have any hydrolysing activity on ordinary β‐linkage–containing substrates such as xylobiose, lactose and cello‐oligosaccharide, but specifically hydrolysed isoflavone glycosides such as daidzin, genistin and glycitin. Compared to a commercial beta glucosidase, BTBG selectively hydrolysed isoflavone glycosides in soybean extract mixture solution. These results suggest that BTBG may be a specialized enzyme for the hydrolysis of glycosides and that the substrate specificity of BTBG is applicable for the bioconversion of isoflavone glycosides in the food industry.  相似文献   
3.
合成十二烷基葡萄糖苷的工艺条件   总被引:4,自引:0,他引:4  
采用对甲苯磺酸为催化剂 ,以D 葡萄糖和正十二醇为原料直接合成十二烷基糖苷 ,研究了工艺条件对反应速率、产物收率与色泽的影响。结果表明 ,催化剂用量对产物色泽无影响 ,适宜的工艺条件为 :正十二醇 /D 葡萄糖 (摩尔比 ) =4∶1,反应温度 110~ 12 0℃ ,反应时间 4h ,反应压力 4kPa ,搅拌速率大于 840r/min ,对甲苯磺酸 /D 葡萄糖 (摩尔比 ) =1.5 %,MgO为较好的中和剂。产物为乳白色 ,十二烷基糖苷总收率大于89%。  相似文献   
4.
We examined the effects of a set of four biosynthetically related iridoid glycosides, aucubin, catalpol, loganin, and asperuloside, on larvae of a generalist,Lymantria dispar (Lymantriidae), the gypsy moth, and an adapted specialist, the buckeye,Junonia coenia (Nymphalidae). In general,L. dispar grew and survived significantly less well on artificial diets containing iridoid glycoside, compared to a control diet without iridoid glycosides. In choice tests, previous exposure to a diet containing iridoid glycosides caused larvae subsequently to prefer iridoid glycoside-containing diets even though they were detrimental to growth and survival. In contrast,J coenia larvae grew and survived better on diets with aucubin and catalpol, the two iridoid glycosides found in the host plantPlantago lanceolata (Plantaginaceae), than on diets with no iridoid glycoside or with loganin and asperuloside. The results of choice tests of diets with and without iridoid glycosides and between diets with different iridoid glycosides reflected these differences as well. These results are discussed in terms of (1) differences between generalists and specialists in their response to qualitative variation in plant allelochemical content, (2) the induction of feeding preferences, and (3) the evolution of qualitative allelochemical variation as a plant defense.  相似文献   
5.
以自制苯并噻唑离子液体([HBth]HSO4)为活性组分,HZSM-5分子筛为载体,通过过量溶剂浸渍法制备了固载型苯并噻唑离子液体催化剂([HBth]HSO4/HZSM-5)并用于催化合成烷基糖苷,通过傅立叶变换红外光谱、N2物理脱附、场发射电子显微镜和X射线衍射对催化剂结构进行表征,结果表明,[HBth]HSO4被成功地引入到HZSM-5载体的表面及孔道内。当催化剂用量为1.5 wt%,反应温度为105℃,醇糖摩尔比n(葡萄糖):n(辛醇)=6:1时,辛基糖苷得率达148.8%(产物质量/葡萄糖的质量?100%)。底物拓展及催化剂稳定性研究结果表明,[HBth]HSO4/HZSM-5对烷基糖苷及其衍生物都具有良好的催化效果,且催化剂能稳定循环使用四次,活性组分流失是催化剂失活的主要原因。通过对烷基糖苷催化合成机理和动力学的研究,确定了动力学方程。  相似文献   
6.
Quantitative experimental results on the antiherbivorous effect of cyanogenesis are rare. In our analyses, we distinguished between the total amount of cyanide-containing compounds stored in a given tissue [cyanogenic potential (HCNp)] and the capacity for release of HCN per unit time (HCNc) from these cyanogenic precursors as a reaction to herbivory. We analyzed the impact of these cyanogenic features on herbivorous insects using different accessions of lima beans (Phaseolus lunatus L.) with different cyanogenic characteristics in their leaves and fourth instars of the generalist herbivore Schistocerca gregaria Forskål (Orthoptera, Acrididae). Young leaves exhibit a higher HCNp and HCNc than mature leaves. This ontogenetic variability of cyanogenesis was valid for all accessions studied. In no-choice bioassays, feeding of S. gregaria was reduced on high cyanogenic lima beans compared with low cyanogenic beans. A HCNp of about 15 μmol cyanide/g leaf (fresh weight) with a corresponding HCNc of about 1 μmol HCN released from leaf material within the first 10 min after complete tissue disintegration appears to be a threshold at which the first repellent effects on S. gregaria were observed. The repellent effect of cyanogenesis increased above these thresholds of HCNp and HCNc. No repellent action of cyanogenesis was observed on plants with lower HCNp and HCNc. These low cyanogenic accessions of P. lunatus were consumed extensively—with dramatic consequences for the herbivore. After consumption, locusts showed severe symptoms of intoxication. Choice assays confirmed the feeding preference of locusts for low over high cyanogenic leaf material of P. lunatus. The bioassays revealed total losses of HCN between 90 and 99% related to the estimated amount of ingested cyanide-containing compounds by the locusts. This general finding was independent of the cyanogenic status (high or low) of the leaf material.  相似文献   
7.
烷基糖苷—新型世界级表面活性剂   总被引:42,自引:0,他引:42  
本文综述了烷基糖苷的合成方法、物化性能及应用性能。  相似文献   
8.
在大豆叶子中大豆皂甙总配糖体提取工艺的基础上,进一步对总配糖体进行了分离纯化研究,主要研究了大豆皂甙总配糖体的脱色澄清、萃取以及萃取后得到大豆皂甙总配糖体的柱分离精制,从而得到了大豆皂甙分离纯化最佳的工艺条件.  相似文献   
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