7 resultados para Eruca sativa Miller

em Deakin Research Online - Australia


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Using monoclonal antibodies raised against pollen-specific proteins, we have isolated a cDNA clone, designatedOry-Cl from a rice anther cDNA expression library. A transcript corresponding to theOry-Cl gene showed preferential expression in anthers. This transcript was not detected in any vegetative tissues analysed. RNA gel blot analysis of different developmental stages of anthers showed that theOry-Cl gene is expressed at later stages of pollen development. In situ hybridisation showed that theOry-Cl transcript is only present in mature pollen.

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 This project is based on production of biofuel from lignocellulosic waste. Hemp hurds were used for the production of ethanol. This was achieved by treating hemp at high temperature followed by enzymatic reaction and fermentation. Different techniques were used to detect the changes occurred on hemp structure and product quantification.

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The physicochemical properties of hemp biomass structure to pretreatment and enzymatic hydrolysis were investigated to improve upon reducing sugar production for biofuel development. Sodium hydroxide pretreated biomass (SHPB) yielded maximum conversion of holocellulose into reducing sugar (72 %). Scanning electron microscopy (SEM) revealed that enzymatic hydrolysis generated regular micropores in the fragmented biomass structure. The thermogravimetric analysis (TGA) curve suggested the degradation of hemicellulose and cellulose, which conformed well to the subsequent nuclear magnetic resonance (NMR) studies indicating the presence of α- and β-glucose (28.4 %) and α- and β-xylose (10.7 %), the major carbohydrate components commonly found in hydrolysis products of hemicellulose and cellulose. Attenuated total reflection Fourier transform infrared (ATR-FTIR) spectra showed stretching modes of the lignin acetyl group, suggesting the loosening of the polymer matrix and thus the exposure of the cellulose polymorphs. X-ray diffraction pattern indicated that enzymatic hydrolysis caused a higher crystallinity index (36.71), due to the fragmentation of amorphous cellulose leading to the reducing sugar production suitable for biofuel development.