Botany Department, The Queen's University, Belfast, N. Ireland.
Planta. 1967 Dec;73(4):369-75. doi: 10.1007/BF00385383.
The responses of three types of explants of blue lupin leaves are considered: pulvinar explants, consisting of the pulvinar region alone, petiolar explants, consisting of the pulvinar region plus petiole and laminar explants consisting of the pulvinar region plus leaflets. Abscission is accelerated by removal of the leaflets; removal of the petiole has much less effect. Pulvinar explants fail to abscise in darkness but are the first to abscise in the light. This is in accordance with previous evidence of high light sensitivity of the pulvinar region. Kinetin applied directly to the pulvinar region delays abscission, as does kinetin supplied via the transpiration stream. As shown by experiment, this is probably due to transported kinetin reaching the abscission zones of the pulvinar region. The effects of photoperiodic treatments on explants or whole leaves are described. Abscission in the whole leaf is delayed by short daily photoperiods; the delay reaches a maximum with 8 hours light per day. However, abscission is more rapid in continuous light than in darkness. Removal of the leaflets greatly accelerates abscission even in darkness. The pulvinar explant fails to abscise with photoperiods of 4 hours or less; although it appears to have a long day response, preliminary attempts failed to demonstrate that this is a true photoperiodic response (replacement of a long day by a short day together with a light break). The complex responses of leaves and explants to day length lend further support to the hypothesis that light has effects on abscission other than in photosynthesis.
叶枕外植体,仅由叶枕区域组成;叶柄外植体,由叶枕区域加叶柄组成;和叶片外植体,由叶枕区域加小叶组成。去除小叶会加速脱落;去除叶柄的影响要小得多。叶枕外植体在黑暗中不会脱落,但在光照下是第一个脱落的。这与叶枕区域对高光敏感的先前证据一致。直接应用于叶枕区域的激动素会延迟脱落,通过蒸腾流供应的激动素也是如此。正如实验所示,这可能是由于运输的激动素到达叶枕区域的脱落区域。还描述了光周期处理对外植体或整叶的影响。短日处理会延迟整叶的脱落;每天光照 8 小时时,延迟达到最大值。然而,连续光照下的脱落比黑暗中更快。即使在黑暗中,去除小叶也会大大加速脱落。叶枕外植体在 4 小时或更短的光周期下不会脱落;尽管它似乎有一个长日反应,但初步尝试未能证明这是一个真正的光周期反应(用短日代替长日,并加上一个光中断)。叶片和外植体对日照长度的复杂反应进一步支持了这样一种假设,即光对脱落的影响不仅仅在光合作用中。