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Differential Senescence of Maize Hybrids following Ear Removal

机译:去除耳后玉米杂交种的衰老

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摘要

In conjunction with a study of the effects of ear removal on the senescence of whole maize (Zea mays L.) plants, visual symptoms and associated changes in constituent contents and activities of a selected leaf (first leaf above the ear) were determined. Leaves were sampled from field-grown eared and earless Pioneer brand 3382, B73 × Mo17, and Farm Services brand 854 maize hybrids at nine times during the grainfilling period.Visual symptoms indicated the following sequence and rate of senescence: earless B73 × Mo17 > earless P3382 » eared B73 × Mo17 » eared P3382 ≤ earless FS854 > eared FS854. All earless hybrids showed increases in leaf dry weight and sugar content; however, the increases were transitory for P3382 and B73 × Mo17, but continuous throughout the grain-filling period for FS854, indicative of continued photosynthetic activity of the latter. All earless hybrids exhibited similar and transitory starch accumulation patterns. Thus, FS854 was an exception to the concept that carbohydrate accumulation accelerates leaf senescence. Ear removal resulted in accelerated losses of reduced N, phosphoenolpyruvate and ribulose bisphosphate carboxylases, phosphorus, chlorophyll, nitrate reductase activity, and moisture for P3382 and B73 × Mo17 plants. In contrast, the loss of all components (except phosphorus) was similar for the selected leaf of earless and eared FS854.Although the loss of nitrate reductase activity, reduced N, and carboxylating enzymes accurately reflected the development of senescence of the selected leaf, the rate of net loss of reduced N and carboxylating enzymes appeared to be regulated. We deduced that the rate of flux of N into the leaf was a factor in regulating the differing rates of senescence observed for the six treatments; however, we cannot rule out the possibility of concurrent influence of growth regulators or other metabolites.
机译:结合对除穗处理对整个玉米(Zea mays L.)植物衰老的影响的研究,确定了视觉症状以及所选叶片(穗上方的第一片叶片)的成分含量和活性的相关变化。在灌浆期间从田间生长的有穗和无穗的先锋品牌3382,B73×Mo17和Farm Services品牌854玉米杂交种中抽签了9次叶片,视觉症状表明以下衰老顺序和速率:无穗B73×Mo17>无穗P3382»有耳的B73×Mo17»有耳的P3382≤无耳FS854>有耳的FS854。所有无耳杂种均表现出叶片干重和糖含量的增加;然而,P3382和B73×Mo17的增加是短暂的,但在FS854的整个籽粒充实期却持续增加,表明后者的光合作用持续不断。所有无耳杂种均表现出相似和短暂的淀粉积累模式。因此,FS854是碳水化合物积累加速叶片衰老的概念的例外。除去耳朵可导致P3382和B73×Mo17植物减少的氮,磷酸烯醇丙酮酸和核糖双磷酸羧化酶,磷,叶绿素,硝酸还原酶活性和水分的损失加速减少。相比之下,无穗和有穗FS854所选叶片的所有成分(磷除外)的损失都相似。尽管硝酸还原酶活性的损失,氮的减少和羧化酶的损失准确地反映了所选叶片的衰老发展,还原氮和羧化酶的净损失速率似乎受到调节。我们推论出氮通入叶片的速率是调节这六种处理方法观察到的不同衰老速率的一个因素。但是,我们不能排除生长调节剂或其他代谢物同时作用的可能性。

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