...
首页> 外文期刊>American journal of botany >SEED GERMINATION, SEEDLING TRAITS, AND SEED BANK OF THE TREE MORINGA PEREGRINA (MORINGACEAE) IN A HYPER-ARID ENVIRONMENT
【24h】

SEED GERMINATION, SEEDLING TRAITS, AND SEED BANK OF THE TREE MORINGA PEREGRINA (MORINGACEAE) IN A HYPER-ARID ENVIRONMENT

机译:干旱环境下辣木百香林的种子萌发,幼苗性状和种子库

获取原文
获取原文并翻译 | 示例

摘要

Premise of the study : Water-limited hot environments are good examples of hyper-aridity. Trees are scarce in these environments but some manage to survive, such as the tree Moringa peregrina. Understanding how trees maintain viable populations in extremely arid environments may provide insight into the adaptive mechanisms by which trees cope with extremely arid weather conditions. This understanding is relevant to the current increasing aridity in several regions of the world.Methods : Seed germination experiments were conducted to assess variation in seed mass, seed germination, and seedling traits of Moringa peregrina plants and the correlations among these traits. A seed burial experiment was also designed to study the fate of M. peregrina seeds buried at two depths in the soil for two time periods.Key results : On average, seeds germinated in three days and seedling shoots grew 0.7 cm per day over three weeks. Larger seeds decreased germination time and increased seedling growth rates relative to smaller seeds. Seeds remained quiescent in the soil and germination was very high at both depths and burial times.Conclusions : The after-ripening time of Moringa peregrina seeds is short and seeds germinate quickly after imbibition. Plants of M. peregrina may increase in hyper-arid environments from seeds with larger mass, shorter germination times, and faster seedling growth rates. The results also illustrate the adjustment in allocation to seed biomass and correlations among seed and seedling traits that allows M. peregrina to be successful in coping with aridity in its environment.
机译:研究的前提:有限的高温环境是超干旱的很好例证。在这些环境中树木稀少,但有些可以生存,例如辣木peregrina。了解树木如何在极端干旱的环境中维持可行的种群数量,可能有助于洞察树木应对极端干旱的天气条件的适应机制。方法:进行种子发芽实验,以评估辣木植物的种子质量,种子发芽和幼苗性状的变异以及这些性状之间的相关性。还设计了一个种子埋葬实验来研究在两个深度埋葬在土壤中两个深度的百日草种子的命运两个关键结果:平均而言,种子在三天内发芽,而苗芽在三周内每天生长0.7厘米。与较小的种子相比,较大的种子减少了发芽时间,并提高了幼苗的生长速度。种子在土壤中保持静止状态,在深度和埋葬时间都发芽很高。结论:辣木种子的后熟时间短,吸水后种子发芽快。百日草的植物在高干旱环境中可能会从质量更大,发芽时间短和幼苗生长速度快的种子中生长。结果还说明了对种子生物量分配的调整以及种子和幼苗性状之间的相关性,这使Peregrina能够成功应对其环境中的干旱。

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