De Martinis D, Cotti G, te Lintel Hekker S, Harren F J M, Mariani C
Department of Botany, Graduate Shool of Experimental Plant Sciences, Catholic University of Nijmegen, The Netherlands.
Planta. 2002 Mar;214(5):806-12. doi: 10.1007/s00425-001-0684-2. Epub 2001 Nov 23.
In flowers of Nicotiana tabacum L., pollination induces a transient increase in ethylene production by the pistil. The characteristic dynamics of the increase in ethylene correspond to the main steps of the pollen-tube journey into the pistil: penetration into the stigma, growth through the style, entry into the ovary and fertilization. Ethylene is synthesized de novo in the pistil, and its production is reduced in the dark. Ethylene production was monitored in tobacco flowers after pollination with incongruous pollen from three different Nicotiana species, N. rustica, N. repanda and N. trigonophylla, and with pollen from Petunia hybrida. Pollen from all of these different sources can germinate on the stigma surface but each pollen type shows a different behavior and efficiency in penetrating the pistil tissues. Thus, these different crosses provided a model with which to study the response of the pistil to pollination and fertilization. Ethylene evolution upon pollination in tobacco differed in each cross, suggesting that ethylene is correlated with the response to pollen tube growth in the tobacco flower.
在烟草(Nicotiana tabacum L.)花朵中,授粉会诱导雌蕊乙烯产量短暂增加。乙烯产量增加的特征动态与花粉管进入雌蕊的主要步骤相对应:穿透柱头、通过花柱生长、进入子房和受精。乙烯在雌蕊中重新合成,其产量在黑暗中会降低。用来自三种不同烟草物种(黄花烟草、反曲烟草和三角叶烟草)以及矮牵牛的不亲和花粉对烟草花授粉后,监测了乙烯产量。来自所有这些不同来源的花粉都能在柱头表面萌发,但每种花粉类型在穿透雌蕊组织时表现出不同的行为和效率。因此,这些不同的杂交组合提供了一个模型,用于研究雌蕊对授粉和受精的反应。烟草授粉后的乙烯释放量在每个杂交组合中都有所不同,这表明乙烯与烟草花中对花粉管生长的反应相关。