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波叶车桑子物理休眠种子水通道的鉴定与表征:无患子科的首次报道

Identification and characterization of the water gap in the physically dormant seeds of Dodonaea petiolaris: a first report for Sapindaceae.

作者信息

Turner S R, Cook A, Baskin J M, Baskin C C, Tuckett R E, Steadman K J, Dixon K W

机构信息

Kings Park and Botanic Garden, West Perth, WA 6005, Australia.

出版信息

Ann Bot. 2009 Oct;104(5):833-44. doi: 10.1093/aob/mcp171. Epub 2009 Jul 19.

Abstract

BACKGROUND AND AIMS

The Sapindaceae is one of 17 plant families in which seed dormancy is caused by a water-impermeable seed or fruit coat (physical dormancy, PY). However, until now the water gap in Sapindaceae had not been identified. The primary aim of this study was to identify the water gap in Dodonaea petiolaris (Sapindaceae) seeds and to describe its basic morphology and anatomy.

METHODS

Seed fill, viability, water-uptake (imbibition) and other characteristics were assessed for D. petiolaris seeds. The location and structure of the water gap were investigated using a blocking experiment, time series photography, scanning electron microscopy and light microscopy. Dodonaea petiolaris seeds with PY also were assessed for loss of PY at four ecologically significant temperatures under moist and dry conditions. Seeds of three other species of Sapindaceae were examined for presence of a water gap.

KEY RESULTS

The water gap in D. petiolaris seeds was identified as a small plug in the seed coat adjacent to the hilum and opposite the area where the radicle emerges. The plug was dislodged (i.e. water gap opened = dormancy break) by dipping seeds in boiling water for 2.5 min or by incubating seeds on a moist substrate at 20/35 degrees C for 24 weeks. Layers of cells in the plug, including palisade and subpalisade, are similar to those in the rest of the seed coat. The same kind of water gap was found in three other species of Sapindaceae, Diplopeltis huegelii, Distichostemon hispidulus and Dodonaea aptera.

CONCLUSIONS

Following dormancy break (opening of water gap), initial uptake of water by the seed occurs only through the water gap. Thus, the plug must be dislodged before the otherwise intact seed can germinate. The anatomy of the plug is similar to water gaps in some of the other plant families with PY.

摘要

背景与目的

无患子科是17个因种子或果皮不透水导致种子休眠(物理休眠,PY)的植物科之一。然而,迄今为止,无患子科中的水分通道尚未被确定。本研究的主要目的是确定叶柄坡垒(无患子科)种子中的水分通道,并描述其基本形态和解剖结构。

方法

对叶柄坡垒种子的饱满度、活力、水分吸收(吸胀)及其他特征进行评估。通过阻断实验、时间序列摄影、扫描电子显微镜和光学显微镜研究水分通道的位置和结构。还评估了在潮湿和干燥条件下,处于四个具有生态意义温度的具有PY的叶柄坡垒种子的PY丧失情况。检查了无患子科其他三个物种的种子是否存在水分通道。

主要结果

叶柄坡垒种子中的水分通道被确定为种皮上靠近种脐且与胚根出现区域相对的一个小栓子。将种子在沸水中浸泡2.5分钟或在20/35摄氏度的潮湿基质上培养24周,栓子会脱落(即水分通道打开 = 休眠打破)。栓子中的细胞层,包括栅栏层和亚栅栏层,与种皮其他部分的细胞层相似。在无患子科的其他三个物种,即胡氏双柱豆、糙毛双柱豆和无翅坡垒中也发现了同样类型的水分通道。

结论

休眠打破(水分通道打开)后,种子最初仅通过水分通道吸收水分。因此,在原本完整的种子能够萌发之前,栓子必须脱落。栓子的解剖结构与其他一些具有PY的植物科中的水分通道相似。

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