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在渐进干旱循环和恢复过程中,紫穗槐和刺槐叶片电势和气体交换的对比动态。

Contrasting dynamics of leaf potential and gas exchange during progressive drought cycles and recovery in Amorpha fruticosa and Robinia pseudoacacia.

机构信息

State Key Laboratory of Soil Erosion and Dryland Farming on the Loess Plateau, Northwest A&F University, Yangling, Shaanxi, 712100, P.R. China.

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing, 100093, China.

出版信息

Sci Rep. 2017 Jun 30;7(1):4470. doi: 10.1038/s41598-017-04760-z.

Abstract

Leaf gas exchange is closely associated with water relations; however, less attention has been given to this relationship over successive drought events. Dynamic changes in gas exchange and water potential in the seedlings of two woody species, Amorpha fruticosa and Robinia pseudoacacia, were monitored during recurrent drought. The pre-dawn leaf water potential declined in parallel with gas exchange in both species, and sharp declines in gas exchange occurred with decreasing water potential. A significant correlation between pre-dawn water potential and gas exchange was observed in both species and showed a right shift in R. pseudoacacia in the second drought. The results suggested that stomatal closure in early drought was mediated mainly by elevated foliar abscisic acid (ABA) in R. pseudoacacia, while a shift from ABA-regulated to leaf-water-potential-driven stomatal closure was observed in A. fruticosa. After re-watering, the pre-dawn water potential recovered quickly, whereas stomatal conductance did not fully recover from drought in R. pseudoacacia, which affected the ability to tightly control transpiration post-drought. The dynamics of recovery from drought suggest that stomatal behavior post-drought may be restricted mainly by hydraulic factors, but non-hydraulic factors may also be involved in R. pseudoacacia.

摘要

叶片气体交换与水分关系密切,但在连续干旱事件中,人们对这种关系的关注较少。在反复干旱期间,监测了两种木本植物,紫穗槐和刺槐幼苗的气体交换和水势的动态变化。在这两个物种中,黎明前的叶片水势与气体交换呈平行下降趋势,随着水势的降低,气体交换急剧下降。在两个物种中都观察到黎明前水势与气体交换之间存在显著相关性,并且在第二次干旱中,刺槐的相关性右移。结果表明,在早期干旱中,气孔关闭主要是由刺槐叶片中脱落酸(ABA)的升高介导的,而在紫穗槐中,气孔关闭则从 ABA 调节到叶片水势驱动的转变。复水后,黎明前的水势迅速恢复,而刺槐的气孔导度在干旱后没有完全恢复,这影响了其在干旱后紧密控制蒸腾的能力。从干旱中恢复的动态表明,干旱后气孔行为可能主要受到水力因素的限制,但非水力因素也可能涉及刺槐。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ef6f/5493649/0c41b3c6d592/41598_2017_4760_Fig1_HTML.jpg

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