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Observations on the phosphate status and intracellular pH of intact cells, protoplasts and chloroplasts from photosynthetic tissue using phosphorus-31 nuclear magnetic resonance.

机译:利用磷31核磁共振观察光合组织中完整细胞,原生质体和叶绿体的磷酸盐状态和细胞内pH值。

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摘要

Individual pools of intracellular inorganic phosphate (Pi) can be observed in the dark in intact cells, protoplasts and chloroplasts from photosynthetic tissue by using 31P nuclear magnetic resonance (n.m.r.). Estimates for the pH of vacuolar and extravacuolar compartments are reported although it is shown that intracellular pH is determined by the pH of the suspending medium. Mannose treatment of asparagus (Asparagus officinalis) cells and spinach (Spinacia oleracea) protoplasts results in the inhibition of photosynthesis. The mechanism of mannose phosphate sequestration of free Pi is supported by the 31P n.m.r. spectra of mannose-treated tissue. There is a fundamental difference in 31 P n.m.r. spectra of mannose-treated spinach protoplasts and asparagus cells, reflecting a difference in the availability of vacuolar Pi for cellular metabolism in these species. The 31P n.m.r. spectrum of intact spinach chloroplasts is reported.
机译:通过使用31P核磁共振(n.m.r.),可以在黑暗中从光合作用的完整细胞,原生质体和叶绿体中观察到细胞内无机磷酸盐(Pi)的单个集合。尽管显示了细胞内pH是由悬浮介质的pH决定的,但仍报告了液泡室和真空室的pH值的估计值。甘露糖处理芦笋(Asparagus officinalis)细胞和菠菜(Spinacia oleracea)原生质体会抑制光合作用。 31P n.m.r支持了磷酸甘露糖螯合游离Pi的机理。甘露糖处理过的组织的光谱。 31 P.m.r.有一个根本的不同。甘露糖处理过的菠菜原生质体和芦笋细胞的质谱图,反映了液泡Pi在这些物种中用于细胞代谢的可用性不同。 31P n.m.r.完整菠菜叶绿体的光谱已报道。

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