首页> 外文期刊>African Journal of Agricultural Research >Temperature and pre-germinative treatments for overcoming Acacia farnesiana (L.) Willd. (Fabaceae) seeds dormancy
【24h】

Temperature and pre-germinative treatments for overcoming Acacia farnesiana (L.) Willd. (Fabaceae) seeds dormancy

机译:温度和萌发前处理,以克服相思木(L.)威尔德。 (豆科)种子休眠

获取原文
           

摘要

Acacia farnesiana L. is a species known for its uses in recovery of degraded pastures, animal feeding, medical and fungicide properties. However, it is one of the most problematic invasive species in agriculture, due to the little known dormancy aspects of its seeds that results in the propagation and dispersion to distinct areas and the establishment of the invasive plant. The knowledge on ecophysiological characteristics of invasive species seeds aiming at the dormancy process is important for the comprehension of aggressive regeneration unities, and allows the development of strategies against infestation of new areas and reduction of soil seed banks. The objective of this research was to assess how A. farnesiana seeds overcome dormancy using different temperatures and pre-germinative treatments. The study was conducted in Federal University of Paraiba, using seeds obtained from fruits of ten matrix trees in Paraiba State, Brazil.? The completely randomized design was adopted, with treatments arranged in a 3 x 15 factorial scheme representing temperatures and pre-germinative treatments with four replicates. Parameters related to germination percentage, germination and emergency index were assessed, with best results observed in seeds scarified with sandpaper 80 followed by imbibitions of water at environmental temperature (25-30°C) for 24 h.
机译:金合欢属(Acacia farnesiana L.)是一种因其在退化牧场的恢复,动物饲养,医疗和杀菌性能方面的用途而闻名的物种。然而,由于其种子的休眠方式鲜为人知,因此它是农业中最成问题的入侵物种之一,导致其向不同区域的繁殖和扩散以及入侵植物的建立。针对休眠过程的入侵种种子生态生理特性的知识对于理解侵略性再生单位非常重要,并有助于制定新的侵害策略和减少土壤种子库。这项研究的目的是评估使用不同的温度和发芽前处理法氏菌种子如何克服休眠。该研究是在巴西帕拉伊巴联邦大学进行的,使用从巴西帕拉伊巴州的十棵基质树的果实中获得的种子。采用完全随机的设计,将处理以3 x 15阶乘方案进行排列,代表温度,并且发芽前处理具有四次重复。评估了与发芽率,发芽率和紧急指数相关的参数,在用砂纸80划痕的种子中观察到最佳结果,然后在环境温度(25-30°C)下吸水24 h。

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