Istituto Sperimentale per la Cerealicoltura, Via Stezzano 24, I-24100 Bergamo, Italy.
Plant Physiol. 1987 Nov;85(3):720-5. doi: 10.1104/pp.85.3.720.
Objective of research was (a) to evaluate the influence of pollination-prevention on various metabolic parameters of the two maize inbreds B73 and B14A and their F1, and (b) to gain information on the inheritance of leaf senescence, in response to pollination-prevention. The results show that the visual pattern of leaf senescence, in response to prevention of ear pollination, contrasts markedly between the two inbred lines. Relative to control plants, prevention of ear pollination, causes a premature senescence in B73 and B73 x B14A plants, while leaves of unpollinated B14A remain green and similar in appearance to pollinated controls. Furthermore, prevention of ear pollination induces a sizable reduction of dry matter accumulation of all above-ground material and changes in various metabolic parameters. An accumulation of sucrose in the leaves of unpollinated B73 and B73 x B14A plants is correlated with the development of premature senescence. Finally, the genetic analysis supports suggestions that a single dominant gene is responsible for the differences observed, in the visual pattern of leaf senescence, in response to prevention of ear pollination.
研究目的(a)评估防止授粉对两个玉米自交系 B73 和 B14A 及其 F1 的各种代谢参数的影响,(b)了解叶衰老对防止授粉的遗传反应。结果表明,防止穗授粉对两个自交系叶片衰老的视觉模式有显著影响。与对照植株相比,防止穗授粉导致 B73 和 B73 x B14A 植株提前衰老,而未授粉的 B14A 叶片保持绿色,外观与授粉对照相似。此外,防止穗授粉导致所有地上部分物质的干物质积累减少,并改变各种代谢参数。未授粉的 B73 和 B73 x B14A 植株叶片中蔗糖的积累与提前衰老的发展有关。最后,遗传分析支持这样的观点,即一个单一的显性基因负责观察到的防止授粉对叶片衰老的视觉模式的差异。