Kumar Anil, Tripathi Kaushlendra, Rana Manish, Purwar Shalini, Garg G R
Department of Molecular Biology and Genetic Engineering, GB Pan University of Agriculture and Technology, Pantnagar, India.
J Biosci. 2004 Mar;29(1):23-31. doi: 10.1007/BF02702558.
Effect of dibutyryl adenosine 3',5'-cyclic monophosphate (dbc-AMP), an analogue of c-AMP, was investigated on growth and morphological differentiation of Tilletia indica. Exponential growth was observed up to 21 days in both presence and absence of dbc-AMP; however, increasing concentration of dbc-AMP was deleterious to mycelial growth in liquid culture. A slow increase of mycelial biomass up to 21 days and decline at 30 days in the presence of 2.5 mM dbc-AMP was observed, therefore, this concentration was chosen in subsequent investigations. The inhibitory influence of dbc-AMP was further substantiated by decrease in soluble protein. The fungus on exposure to dbc-AMP experienced morphological differentiation from vegetative mycelial phase to sporogenous mycelial phase, and was induced to produce filiform sporidia. Use of quantitative ELISA further suggested that sporidia formation took more than 21 days in the presence of dbc-AMP. Variations of proteins during different stages of T. indica grown in the presence and absence of dbc-AMP suggested the expression of stage-specific proteins or differential expression of proteins induced by dbc-AMP. The changes in expression of cell surface antigens as evidenced from decrease and increase binding of anti-mycelial and anti-sporidial antibodies in dbc-AMP treated culture by ELISA was further interpreted on the basis of morphological differentiation from mycelial to sporidial phase
研究了环磷腺苷(c-AMP)类似物二丁酰环磷腺苷(dbc-AMP)对印度腥黑粉菌生长和形态分化的影响。在有无dbc-AMP的情况下,均观察到指数生长持续21天;然而,dbc-AMP浓度的增加对液体培养中的菌丝体生长有害。在2.5 mM dbc-AMP存在的情况下,观察到菌丝体生物量在21天内缓慢增加,在30天时下降,因此,在后续研究中选择了该浓度。可溶性蛋白质的减少进一步证实了dbc-AMP的抑制作用。该真菌在接触dbc-AMP后经历了从营养菌丝体阶段到产孢菌丝体阶段的形态分化,并被诱导产生丝状担孢子。定量ELISA的结果进一步表明,在dbc-AMP存在的情况下,担孢子形成需要超过21天。在有无dbc-AMP的情况下生长的印度腥黑粉菌不同阶段的蛋白质变化表明存在阶段特异性蛋白质的表达或由dbc-AMP诱导的蛋白质差异表达。基于ELISA检测,在dbc-AMP处理的培养物中,抗菌丝体和抗担孢子抗体的结合减少和增加,这证明了细胞表面抗原表达的变化,这一变化进一步基于从菌丝体阶段到担孢子阶段的形态分化进行了解释