Siegel B Z, Galston A W
Plant Physiol. 1967 Feb;42(2):221-6. doi: 10.1104/pp.42.2.221.
The heterogeneity of the peroxidases in peas was examined by starch gel electrophoresis. Comparisons were made between tall and dwarf cultivars and among organ systems developed in light and darkness. Isoperoxidase bands could be grouped as cathodic, anodic and near-neutral (at pH 9.0) types. The cathodic set stained well with guaiacol oxidation products whereas some anodic bands reacted preferentially with 2,6-dimethoxyphenol. Some near-neutral bands were aceto-carmine positive and may have been organellar. Each organ had a characteristic isozyme pattern, and the band patterns in corresponding organs from different varieties were far more alike than were the patterns in the different organs within each variety. Ontogenetic changes were marked in all 3 organ systems, principally in the cathodic bands. The effect of light on isozymal patterns was quantitative rather than qualitative, possibly influencing the isoperoxidases secondarily via its effect upon organ physiology and development.
通过淀粉凝胶电泳研究了豌豆中过氧化物酶的异质性。对高秆和矮秆品种以及在光照和黑暗条件下发育的器官系统进行了比较。过氧化物酶同工酶带可分为阴极型、阳极型和近中性(pH 9.0时)型。阴极组用过氧化氢酶氧化产物染色良好,而一些阳极带则优先与2,6-二甲氧基苯酚反应。一些近中性带对乙酰卡红呈阳性,可能是细胞器的。每个器官都有独特的同工酶模式,不同品种相应器官中的带型彼此之间的相似性远高于同一品种内不同器官的带型。在所有三个器官系统中都有明显的个体发育变化,主要表现在阴极带上。光照对同工酶模式的影响是定量的而非定性的,可能主要通过其对器官生理和发育的影响来影响过氧化物酶同工酶。