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Use of Silica Sol Step Gradients to Prepare Bundle Sheath and Mesophyll Chloroplasts from Panicum maximum

机译:使用二氧化硅溶胶梯度梯度从Panicum max制备束鞘和叶肉叶绿体

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摘要

The first method for the direct separation of mesophyll and bundle sheath chloroplasts from whole tissue homogenates of a C4 plant is described. Centrifugation of mixed chloroplast preparations from Panicum maximum through low viscosity silica sol gradients effectively separates large, starch-containing chloroplasts from smaller plastids. The large chloroplasts are judged to be bundle sheath chloroplasts on the basis of microscopic appearance, the presence of starch grains, the protein complement displayed on sodium dodecyl sulfate acrylamide gels, and the exclusive localization of ribulose bisphosphate carboxylase activity in these plastids. As a measure of intactness both the large (bundle sheath) and small (mesophyll) chloroplasts contain glyceralde-hyde-3-phosphate NADP-dependent dehydrogenase activity that is greatly enhanced by plastid lysis and both chloroplast preparations are impermeable to deoxyribonuclease. Chloroplast enzyme activities are inhibited by silica sol due to the Mg2+ chelating activity of this reagent. However, well washed chloroplasts separated on silica gradients had enzyme activities similar to reported values in which silica sol gradients were not used.
机译:描述了从C4植物的整个组织匀浆中直接分离叶肉和束鞘叶绿体的第一种方法。通过低粘度硅胶溶胶梯度,从Panicum max离心混合叶绿体制剂,可有效地将较大的含淀粉叶绿体与较小的质体分离。根据微观外观,淀粉颗粒的存在,十二烷基硫酸钠丙烯酰胺凝胶上显示的蛋白质补体以及这些质体中核糖二磷酸羧化酶活性的唯一定位,可将大型叶绿体判定为束鞘叶绿体。作为完整性的衡量标准,大叶绿藻(束鞘)和小叶绿藻(mesophyll)都含有3-磷酸甘油醛-NADP依赖性脱氢酶活性,通过质体裂解可大大增强其活性,并且两种叶绿体制剂都不能渗透脱氧核糖核酸酶。由于该试剂的Mg 2 + 螯合活性,硅溶胶抑制了叶绿体酶活性。但是,在硅胶梯度上分离的洗净的叶绿体的酶活性类似于未使用硅胶溶胶梯度的报道值。

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