Osmotic adjustment, stomata morphology and function show contrasting responses to water stress in mesic and hydric grasses under elevated CO2 concentration

被引:5
|
作者
Mwendia, S. W. [1 ]
Yunusa, I. A. M. [2 ,3 ]
Sindel, B. M. [2 ]
Whalley, R. D. B. [2 ]
Bruhl, J. J. [2 ]
机构
[1] Africa Reg Off, Int Ctr Trop Agr, POB 823-00621, Nairobi, Kenya
[2] Univ New England, Sch Environm & Rural Sci, Armidale, NSW 2351, Australia
[3] Charles Sturt Univ, Graham Ctr Agr Innovat, Panorama Ave, Bathurst, NSW 2795, Australia
关键词
heat stress; leaf water potential; water-use efficiency; C-4; PHOTOSYNTHESIS; ATMOSPHERIC CO2; DROUGHT; DENSITY; PLANTS; SOIL; TRANSPIRATION; CONDUCTANCE; CULTIVARS; ECOSYSTEM;
D O I
10.32615/ps.2019.016
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The physiological response of two species of grasses with C-3 and C-4 mechanisms syndromes, Napier grass (Pennisetum purpureum Schumach x Pennisetum glaucum (L.) R. Br) and hydric common reed grass (Phragmites australis (Cav.) Trin. Ex Steud) was examined under ambient (aCO(2)) and elevated CO2 (eCO(2)), in combination with water and temperature stress treatments. Under eCO(2) and subjected to water and temperature stress, the Napier grass maintained higher daytime leaf water potential (LWP) by reducing transpiration (E) and executing larger osmotic adjustment (OA) at an average of 0.85 MPa compared with 0.42 MPa for common reed; carbon assimilation (P-N) was thus higher for the Napier grass. Under aCO(2) and low temperature, water stress induced no significant differences in OA between the grasses, but Napier grass still had higher P-N than that of common reed. Recovery in LWP and P-N following re-watering of water-stressed plants was more rapid in Napier grass than that in the common reed; the former had also higher water-use efficiency due to its low specific water use (water use/leaf area) that was just a fraction (less than 6%) that of the common reed. Exposure of common reed to eCO(2) reduced stomata number, but increased it in the Napier grass, especially when subjected to water stress and high temperature. Exposure to eCO(2) enhanced OA capacity and E control in Napier grass resulting in superior physiological profile over the common reed subjected to water and heat stress.
引用
收藏
页码:121 / 131
页数:11
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