Kansas State University, Manhattan, Kansas, USA.
Theor Appl Genet. 1977 May;50(3):137-46. doi: 10.1007/BF00276808.
A relationship between height genes (dw locus) and perioxidase was demonstrated by extracting and determining peroxidase specific activity in internode tissue from different height isogenic lines of sorghum Sorghum bicolor (L.) Moench]. Tall plants (2 dwarf) had less peroxidase per gram tissue than their short counterparts (3 dwarf); their F1 offspring internodes were closer but had more peroxidase than the tall parent. Peroxidase in the F2 offspring was inversely related to their height and followed a simply-inherited pattern similar to that for height.Among different tissues analyzed, peroxidase concentration in roots was higher than in leaves and internodes, whole internode higher than in pith, and seed embryo higher than in endosperm. Peroxidase activity of nonviable seeds was negligible.Isoelectric focusing provided a more detailed peroxidase zymogram than did gel electrophoresis. Differences in peroxidase bands among tall and short parental plants, F1 and F2 segregating groups all appear to be reflected by intensity differences rather than by position or number of bands.Activities of nitrate reductase and acid phosphatase did not correlate with height. That finding provides a control and suggests that peroxidase activity is not associated with height by chance but may have a functional relationship.
矮秆基因(dw 位点)与过氧化物酶之间的关系,是通过提取和测定不同高度同基因系高粱 Sorghum bicolor(L.)Moench 的节间组织中的过氧化物酶的比活度来证明的。高秆植株(2 矮)的每克组织中的过氧化物酶比矮秆植株(3 矮)少;它们的 F1 后代的节间组织更接近,但过氧化物酶比高秆亲本多。F2 后代的过氧化物酶与它们的高度呈负相关,并遵循类似于高度的简单遗传模式。在分析的不同组织中,根中的过氧化物酶浓度高于叶片和节间组织,整个节间组织高于髓,而种子胚高于胚乳。无活力种子的过氧化物酶活性可以忽略不计。等电聚焦比凝胶电泳提供了更详细的过氧化物酶同工酶图谱。高秆和矮秆亲本植物、F1 和 F2 分离群体之间过氧化物酶带的差异似乎都反映在强度差异上,而不是在带的位置或数量上。硝酸还原酶和酸性磷酸酶的活性与高度无关。这一发现提供了一个对照,并表明过氧化物酶活性与高度不是偶然相关的,而是可能具有功能关系。