...
首页> 外文期刊>Seed Science and Technology >Embryo morphology indicates physiological maturity better than seed mass in Syngonanthus elegans (Eriocaulaceae)
【24h】

Embryo morphology indicates physiological maturity better than seed mass in Syngonanthus elegans (Eriocaulaceae)

机译:胚形态学表明线虫的生理成熟度比种子质量好。

获取原文
获取原文并翻译 | 示例

摘要

Syngonanthus elegans is used for dried flower arrangements and is one of the most important economic species in the family Eriocaulaceae. Due to over-collection, this species and congeners have become threatened with extinction in their natural environment. Variable germination has been observed for this species. A better understanding of germination problems may assist in the development of cultivation methods, thereby reducing the pressure on natural populations and safeguarding their survival. Seeds harvested from a natural population were sorted by testa colour into four groups ranging from dark red to pale brown. Seeds were then subjected to digital X-ray imaging and germination tests. X-ray images showed differences in the embryo size for the four colour fractions, indicating a difference in maturity that was confirmed by seed mass. The fraction with the smallest embryos also displayed the lowest viability. However, embryo size and seed mass showed a poor linear relationship. A strong association was observed for germination capacity and embryo size, but a weaker association for germination capacity and seed mass. Fluridone increased germination in the most mature fraction, but not in the other three fractions. We conclude that during seed development, maximum germination capacity is reached prior to mass maturity and that physiological dormancy develops late during maturation
机译:Syngonanthus elegans用于干花插花,是鸢尾科最重要的经济物种之一。由于过度捕捞,该物种和同类动物已在其自然环境中面临灭绝的威胁。已经观察到该物种发芽不定。对发芽问题的更好理解可能有助于发展耕种方法,从而减轻自然种群的压力并保障其生存。从自然种群中收获的种子按种皮颜色分类为四组,从深红色到浅棕色。然后将种子进行数字X射线成像和发芽测试。 X射线图像显示四个颜色部分的胚胎大小不同,表明成熟度的差异已由种子质量确认。具有最小胚胎的级分也显示出最低的生存力。但是,胚胎大小和种子质量显示出不良的线性关系。观察到萌发能力和胚胎大小有很强的联系,但是发芽能力和种子质量却没有很强的联系。氟啶酮在最成熟的级分中增加发芽,但在其他三个级分中则没有。我们得出的结论是,在种子发育过程中,大规模成熟之前达到了最大发芽能力,并且生理休眠在成熟过程中发展到后期。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号