Arid
DOI10.1071/PP96127
Photosynthetic responses of three codominant species from the north-western Sonoran Desert - a C-3 deciduous sub-shrub, a C-4 deciduous bunchgrass, and a CAM evergreen leaf succulent
Nobel, PS; Zhang, HH
通讯作者Nobel, PS
来源期刊AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY
ISSN0310-7841
出版年1997
卷号24期号:6页码:787-796
英文摘要

To investigate seasonal and annual influences of environmental conditions on leaf net CO2 uptake (A), three codominant species from the north-western Sonoran Desert differing in photosynthetic pathway and leaf phenology were examined: the C-3 deciduous sub-shrub Encelia farinosa, the C-4 deciduous bunchgrass Pleuraphis rigida, and the CAM evergreen leaf succulent Agave deserti. To allow interspecific comparisons and to predict field responses from 1974 through 1995, an environmental productivity index (EPI) model previously developed for CAM plants was used, which scaled the responses of A to water, temperature, and photosynthetic photon flux (PPF) over 24-h periods to individual dimensionless values. The net CO2 uptake predicted using the EPI approach agreed well with field measurements. Agave deserti was the most drought-tolerant and E. farinosa was the least; the optimum day/night air temperatures and the PPF requirement for A were highest for FI rigida and lowest for A, deserti. For 1974 through 1995, daily EPI averaged over a year was highest for E. farinosa, indicating that it operates closest to its photosynthetic optimum. However, the predicted A was highest for P. rigida. Variations in A were annually bimodal, with the greatest differences among the three species in wet years. A for all three species increased linearly as annual rainfall increased. Leaf area per plant for E. farinosa was highest in the winter and early spring and did not respond appreciably to summer rainfall; leaf area for P. rigida was also highest in the winter. For the evergreen A. deserti, which based on ground cover is the dominant species at the field site, new leaves unfolded in response to both winter and summer rainfall but most photosynthetic area was contributed by older leaves, leading to the highest annual plant net CO2 uptake.


类型Article
语种英语
国家USA
收录类别SCI-E
WOS记录号WOS:000071809300010
WOS关键词DOUBLED CO2 CONCENTRATIONS ; AGAVE-DESERTI ; ENCELIA-FARINOSA ; MODEL SIMULATIONS ; WATER RELATIONS ; USE EFFICIENCY ; ROOT-GROWTH ; CLIMATE ; PLANTS ; PRODUCTIVITY
WOS类目Plant Sciences
WOS研究方向Plant Sciences
来源机构University of California, Los Angeles
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/133856
作者单位(1)Univ Calif Los Angeles, Dept Biol, Los Angeles, CA 90095 USA
推荐引用方式
GB/T 7714
Nobel, PS,Zhang, HH. Photosynthetic responses of three codominant species from the north-western Sonoran Desert - a C-3 deciduous sub-shrub, a C-4 deciduous bunchgrass, and a CAM evergreen leaf succulent[J]. University of California, Los Angeles,1997,24(6):787-796.
APA Nobel, PS,&Zhang, HH.(1997).Photosynthetic responses of three codominant species from the north-western Sonoran Desert - a C-3 deciduous sub-shrub, a C-4 deciduous bunchgrass, and a CAM evergreen leaf succulent.AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY,24(6),787-796.
MLA Nobel, PS,et al."Photosynthetic responses of three codominant species from the north-western Sonoran Desert - a C-3 deciduous sub-shrub, a C-4 deciduous bunchgrass, and a CAM evergreen leaf succulent".AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY 24.6(1997):787-796.
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