排序方式: 共有60条查询结果,搜索用时 15 毫秒
31.
Roy SK Chandra K Ghosh K Mondal S Maiti D Ojha AK Das D Mondal S Chakraborty I Islam SS 《Carbohydrate research》2007,342(16):2380-2389
A water-soluble polysaccharide was isolated from the aqueous extract of pods of Moringa oleifera. The polysaccharide contains d-galactose, 6-O-Me-D-galactose, D-galacturonic acid, l-arabinose, and l-rhamnose in a molar ratio of 1:1:1:1:1. On the basis of total hydrolysis, methylation analysis, periodate oxidation, and NMR ((1)H, (13)C, TOCSY, DQF-COSY, NOESY, ROESY, HSQC, and HMBC) studies, the repeating unit of the polysaccharide is established as [structure: see text]. 相似文献
32.
Patrícia M.G. Paiva Giselly M.S. Santana Igor F.A.C. Souza Lidiane P. Albuquerque Afonso C. Agra-Neto Auristela C. Albuquerque Luciana A. Luz Thiago H. Napoleão Luana C.B.B. Coelho 《International biodeterioration & biodegradation》2011,65(7):982-989
Biodegradation by termites is a serious problem for wood and crop industries worldwide, and new environmentally friendly alternatives for termite control have been developed. This work investigated the effects of crude and purified preparations containing lectins from Opuntia ficus indica cladodes (OfiL) and Moringa oleifera seeds (WSMoL and cMoL) on Nasutitermes corniger workers and soldiers. Purified OfiL was more active than cladode extracts, showing a stronger termiticidal activity against workers (LC50 of 0.116 mg ml−1) than against soldiers. OfiL was active against soldiers only at 1.5 mg ml−1. All preparations containing WSMoL and cMoL were active only at concentrations of 1.0 and 1.5 mg ml−1. The tested preparations did not exert repellent activity against N. corniger. OfiL was able to kill workers and therefore is potentially a new tool for N. corniger control; as a consequence, this lectin could disturb organization, structure, and maintenance of termite colonies. 相似文献
33.
《Saudi Journal of Biological Sciences》2021,28(12):6915-6928
Natural extracts have been of very high interest since ancient time due to their enormous medicinal use and researcher’s attention have further gone up recently to explore their phytochemical compositions, properties, potential applications in the areas such as, cosmetics, foods etc. In this present study phytochemical analysis have been done on the aqueous and methanolic Moringa leaves extracts using Gas Chromatography-Mass spectrometry (GCMS) and their free radical scavenging potency (FRSP) studied using 2, 2-diphenyl-1-picrylhydrazyl (DPPH) free radical for further applications. GCMS analysis revealed an extraction of range of phytochemicals in aqueous and methanolic extracts. In aqueous, extract constituents found with high percent peak area are Carbonic acid, butyl 2-pentyl ester (20.64%), 2-Isopropoxyethyl propionate (16.87%), Butanedioic acid, 2-hydroxy-2-methyl-, (3.14%) (also known as Citramalic acid that has been rarely detected in plant extracts) and many other phytochemicals were detected. Similarly, fifty-four bio components detected in methanolic extract of Moringa leaves, which were relatively higher than the aqueous extract. Few major compounds found with high percent peak area are 1,3-Propanediol, 2-ethyl-2- (hydroxymethyl)- (21.19%), Propionic acid, 2-methyl-, octyl ester (15.02%), Ethanamine, N-ethyl-N-nitroso- (5.21%), and 9,12,15-Octadecatrienoic acid etc. FRSP for methanolic extract was also recorded much higher than aqueous extract. The half-maximal inhibitory concentration (IC50) of Moringa aqueous extract observed is 4.65 µl/ml and for methanolic extract 1.83 µl/ml. These extracts can act as very powerful antioxidants, anti-inflammatory ingredient for various applications in diverse field of food, cosmetics, medicine etc. 相似文献
34.
印度传统辣木引种栽培研究 总被引:3,自引:0,他引:3
从缅甸引进印度传统辣木(Moringa oleifera Lam.)到我国云南干热河谷地区种植,采用春季育播种苗造林,或者春季直播造林,种植地分有灌溉条件的农耕地以及没有灌溉条件的退耕地和荒山坡地三类。3a引种试验结果表明,在农耕地上以二种造林方式栽植的印度传统辣木在造林当年即可开花结果;而在荒山坡地上造林当年不结果或偶见结果,发生枯梢或严重枯梢;在退耕地上造林当年能结果,但产量较农耕地低。印度传统辣木结果母枝和结果枝的发育规律不同于大多数树种,不同龄级的结果母枝同时着生结果枝,并且同一结果母枝可多次着生结果枝。果实伸长生长与粗生长的高峰期不同步,伸长生长高峰期在前,粗生长高峰期在后。果实作鲜食蔬菜,应在纤维化前采收,采收期一般在伸长生长停止、粗生长高峰期前。初步认为印度传统辣木为中等抗旱树种,适生于我国热带、亚热带的半干旱、干旱地区,推广种植时应注意造林地的选择。 相似文献
35.
Glycosides of pyrrole alkaloid (pyrrolemarumine 4″-O-α-l-rhamnopyranoside) and 4′-hydroxyphenylethanamide (marumosides A and B) were isolated from leaves of Moringa oleifera along with eight known compounds; niazirin, methyl 4-(α-l-rhamnopyranosyloxy)benzylcarbamate, benzyl β-d-glucopyranoside, benzyl β-d-xylopyranosyl-(1 → 6)-β-d-glucopyranoside, kaempferol 3-O-β-d-glucopyranoside, quercetin 3-O-β-d-glucopyranoside, adenosine and l-tryptophan. Structure elucidations were based on analyses of chemical and spectroscopic data including 1D- and 2D-NMR. 相似文献
36.
Fluorosis is a metabolic disease that is endemic in nearly 25 countries with India being one of the most affected. It primarily affects the bone and the teeth. Moringa oleifera (MO) leaves are known to reduce the effect of fluorosis on various tissues. Therefore, it is of interest to document the effect of Moringa oleifera leaves on the hematological profile of fluorosis affected rats. Twenty four Sprague Dawley rats were housed two per cage in a room with 12 hours light and 12 hours dark cycle. The rats were allowed to adjust to the laboratory environment for about one to two weeks before the beginning of the study. This study reveals that MO leaves is effective in reducing the plasma fluoride content. It also helps in improving the Hb % and RBC count in fluorosis affected rats. Data shows that Moringa olifera leaves powder is effective in reducing the plasma fluoride content. It also helps in improving the Hemoglobin percentage & Red Blood Cell count in fluorosis affected rats. 相似文献
37.
辣木组织培养与四倍体植株诱导 总被引:2,自引:0,他引:2
建立了印度辣木(Moringa oleifera)和非洲辣木(Moringa stenopetala)离体再生体系,并利用秋水仙碱进行了四倍体的诱导。结果表明:离体培养时以茎段为外植体可快速获得无菌苗,愈伤组织诱导与不定芽分化时,印度辣木以MS BA0.6mgL-1 NAA0.1mgL-1的固体培养基为最佳,非洲辣木以MS BA0.5mgL-1 NAA0.2mgL-1的固体培养基为最佳,生根培养基均以MS IBA0.2mgL-1最适。用不同浓度秋水仙碱对染色体进行加倍诱变,以0.2%秋水仙碱处理5d,加倍效果最好,印度辣木达到40.0%,非洲辣木为36.7%。获得了印度辣木和非洲辣木四倍体新种质,四倍体植株初步表现枝粗、叶片变大变厚且叶色更绿等特征。 相似文献
38.
Moringa oleifera is a pantropical tree of the family Moringaceae. A previously undescribed property of an aqueous extract from the seeds of this plant is the modulation of ruminal fermentation patterns, especially protein degradation, as demonstrated in a short-term batch incubation system. Gas, short chain fatty acids (SCFA) and cellulolytic enzyme activities were determined as general fermentation parameters. A dot blot assay able to directly detect true protein in rumen fluid samples was used to quantify protein degradation. For complex substrates the interpretation of protein degradation profiles was amended by polyacrylamide gel electrophoresis (PAGE) of the samples. When incubated with pure carbohydrates at a concentration of 1 mg ml–1, the extract reduced microbial degradation of the model protein, bovine serum albumin (BSA), such that its concentration was at least 40% above the control after 12 h of incubation. Total protein degradation was thus delayed by approximately 9 h. When fermented along with wheat straw, leaf protein (Rubisco) was almost entirely protected during 12 h of fermentation. The degradation of soy proteins was retarded by at least 4- 6 h, depending on the protein band. There were strong side effects on the fermentation of pure cellulose (SCFA yield -60% after 12 h), whereas cellobiose and starch fermentation were less affected (-18 and -8%, respectively). When the complex substrates were fermented, SCFA yield was reduced by approximately 30% after 12 h. In our work we clearly demonstrate the efficacy of the new substance, which is neither a tannin nor a saponin, in an in vitro system, using pure as well as complex substrates. The properties shown in vitro for the crude extract suggest that it could have a positive effect on the protein metabolism of ruminants under intensive management and that negative side effects can be overcome by an optimized dosage. If the chemical nature of the active substance and its mechanism of action can be clarified, it may provide an alternative to replace critical synthetic feed additives (such as antibiotics) for high yielding dairy cows. 相似文献
39.
Wesam Al Khateeb Eman Bahar Jamil Lahham Dana Schroeder Emad Hussein 《Physiology and Molecular Biology of Plants》2013,19(1):157-164
Moringa peregrinais an endangered species of Moringaceae.M. peregrinais a multipurpose tree with a wide variety of potential uses including its medicinal activity. In our study, a rapid and efficient micropropagation protocol for M. peregrina has been established. In vitro germinated seedlings were cultured on Murashige and Skoog (MS) medium supplemented with different levels of either 6-benzyladenine (BA) or kinetin (Kin). The maximum shoot proliferation of 6.5 shoots per explant with 100 % shoot proliferation rate was observed on MS medium supplemented with 1.0 mg/l BA. On the other hand, MS medium supplemented with 1 mg/l indole-3-butyric acid (IBA) resulted in the maximum number of roots. Micropropagated plants were successfully acclimatized. Genetic stability of micropropagated plants was assessed using Inter-Simple Sequence Repeat (ISSR). The amplification products were monomorphic in all in vitro grown plants. No polymorphism was detected indicating the genetic integrity of in vitro propagated plants. This micropropagation protocol could be useful for raising genetically uniform plants for plant propagation and commercial cultivation. 相似文献
40.
Abdullah Alaklabi 《Saudi Journal of Biological Sciences》2015,22(2):186-190
The genus Moringa was the family of Moringaceae and Moringa oleifera and Moringa peregrina are the most famous species of Moringa. M. peregrina is widely grown in Saudi Arabia, Iran and India. Therefore, based on these reports, this study aimed to investigate the first systematic attempt to regulate the genetic diversity of the species M. peregrina in Saudi Arabian samples collected from several geographic locations using internal transcribed sequences. Genomic DNA was separated by CTAB extraction method and PCR was performed. Later on, DNA sequencing was performed for PCR products with ITS. In conclusion, the present study affords the first report on genetic stability of M. peregrina using ITS analysis in Saudi Arabia. Further studies are suggested in order to study in different regions. 相似文献