个性化文献订阅>期刊> American Journal of Botany
 

A COMPARATIVE STUDY OF OAK (QUERCUS, FAGACEAE) SEEDLING PHYSIOLOGY DURING SUMMER DROUGHT IN SOUTHERN CALIFORNIA

  作者 Mahall, BE; Tyler, CM; Cole, ES; Mata, C  
  选自 期刊  American Journal of Botany;  卷期  2009年96-4;  页码  751-761  
  关联知识点  
 

[摘要]Natural recruitment of oaks appears to be declining throughout the northern hemisphere. Summer drought poses a potentially important barrier to oak recruitment in southern California. To evaluate this barrier, we grew evergreen Quercus agrifolia and deciduous Q. lobata from seeds near parental trees. We measured water relations, chlorophyll fluorescence, and gas exchange during these seedlings' fourth and fifth Summers and compared them to neighboring adults. Most seedlings had substantially lower values for predawn xylem pressure potential (Psi(pd)), minimum photosystem II (PSII) quantum efficiency (Phi(PSIIMIN)), maximum quantum efficiency for PSII under dark-adapted leaf conditions (Fv/Fm), and maximum photosynthetic assimilation (Amax), and higher values for maximum nonphotochemical quenching (NPQmax) than did conspecific adults. The high, unvarying Psi(pd) values of the adults suggest they use perennially available groundwater. Quercus lobata seedlings commonly had lower values for Psi(pd) than did Q. agrifolia, and values for Psi(pd) and Phi(PSIIMIN), were significantly related to size in Q. lobata but not in Q. agrifolia. These data suggest important interspecific differences in root architecture. Lower values for Phi(PSIIMIN), Fv/Fm, and higher NPQmax in Q. agrifolia indicate that Q. agrifolia seedlings were usually under more stress than Q. lobata, which typically had higher Amax rates than did Q. agrifolia seedlings. Diurnal photosynthesis curves were quite flat for Q. agrifolia, but they peaked in the morning for Q. lobata. Established seedlings appeared to be Under more stress than adults, but this stress did not appear severe enough to cause death. Access to perennially available groundwater may be crucial for the seedling to sapling transition.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内