[授粉前后钙在莴苣(Lactuca sativa L. )柱头和花柱中的分布动态]。

Shi yan sheng wu xue bao Pub Date : 2005-08-01
Yi Lan Qiu, Ru Shi Liu, Chao Tian Xie, Yan Hong Yang, Li Gu, Hui Qiao Tian
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引用次数: 0

摘要

锑酸钾用于在授粉前后将钙沉积在莴苣(Lactuca sativa L.)的柱头和花柱中。莴苣的柱头有两个裂口。授粉前后,柱头受粉面的乳头壁上有大量钙颗粒,这可能有利于花粉发芽。但在无感受面的表皮细胞壁上有少量钙颗粒。在授粉前,花柱中的钙分布在花柱顶部至基部的传导组织和实质细胞中呈梯度分布。授粉后,传导组织中的钙明显增加,梯度分布更加明显。花粉管生长在传粉组织的细胞间隙中。当花粉管长入输导组织时,输导组织周围实质组织中的钙颗粒减少,这表明钙的移动是由花粉管控制的。花柱维管束的气管中也出现了钙梯度分布。总的来说,花柱中的钙呈现出时间特殊分布的特点:传粉组织不需要更多的钙,这些钙只在授粉前储存在实质组织中。但是,实质细胞中的钙可能被输送到传粉组织,使后者含有更多的钙,从而形成明显的钙梯度,满足授粉后花粉管定向生长的需要。这是利用锑钾法发现的第二个花柱中存在钙梯度的样本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The dynamics of calcium distribution in stigma and style of lettuce (Lactuca sativa L.) before and after pollination].

Potassium antimonite was used to deposit calcium in the stigma and style of lettuce (Lactuca sativa L.) before and after pollination. The stigma of lettuce is two splits. Abundant calcium granules are displayed in the wall of papillae on the receptive surface of stigma before and after pollination, which may facilitate pollen germination. However, a few calcium granules in the wall of epidermis cell on no-receptive surface. Calcium distribution in style presents a gradient in transmitting tissue and parenchyma cells from the top to the base of the style before pollination. After pollination, calcium in transmitting tissue distinctly increased and its gradient distribution became more evident. Pollen tubes grow in the intercellular gaps of transmitting tissue. When pollen tubes grew into transmitting tissue, calcium granules in parenchyma around transmitting tissue decreased, suggesting a calcium movement was controlled by pollen tubes. The calcium gradient distribution also appeared in the trachea of vascular bundle of style. In general, calcium in style displays a feature of time-special distribution: transmitting tissue doesn't need much more calcium that is only stored in the parenchyma before pollination. However, calcium in parenchyma cells may be transported to transmitting tissue and make the latter contain more calcium to form an evident calcium gradient and meet the requirement of pollen tubes directionally growing after pollination. This is the second sample of calcium gradient existing in style, which was found by using potassium antimonite method.

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