Contrasting physiological responses of two co-occurring eucalypts to seasonal drought at restored bauxite mine sites

被引:22
作者
Szota, Christopher [2 ]
Farrell, Claire [2 ]
Koch, John M. [1 ]
Lambers, Hans [2 ]
Veneklaas, Erik J. [2 ]
机构
[1] Alcoa World Alumina Australia, Pinjarra, WA 6208, Australia
[2] Univ Western Australia, Sch Plant Biol, Crawley, WA 6009, Australia
基金
澳大利亚研究理事会;
关键词
Corymbia calophylla; drought resistance; ecological restoration; Eucalyptus marginata; osmotic adjustment; photosynthesis; stomatal conductance; water relations; LEAF WATER RELATIONS; NORTHERN JARRAH FOREST; FIELD-GROWN EUCALYPTUS; STOMATAL RESPONSES; WESTERN-AUSTRALIA; GAS-EXCHANGE; CARBON ASSIMILATION; DIURNAL PATTERNS; MARGINATA TREES; ROOT DEPTH;
D O I
10.1093/treephys/tpr085
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
This study describes the physiological response of two co-occurring tree species (Eucalyptus marginata and Corymbia -calophylla) to seasonal drought at low- and high-quality restored bauxite mine sites in south-western Australia. Seasonal changes in photosynthesis (A), stomatal conductance (g(s)), leaf water potential (Sigma), leaf osmotic potential (Sigma), leaf relative water content (RWC) and pressure-volume analysis were captured over an 18-month field study to (i) determine the nature and severity of physiological stress in relation to site quality and (ii) identify any physiological differences between the two species. Root system restriction at the low-quality site reduced maximum rates of gas exchange (g(s) and A) and increased water stress -(midday Sigma and daily RWC) in both species during drought. Both species showed high stomatal sensitivity -during drought; however, E. marginata demonstrated a higher dehydration tolerance where Sigma and RWC fell to -3.2 MPa and 73% compared with -2.4 MPa and 80% for C. calophylla. Corymbia calophylla showed lower g(s) and higher Sigma and RWC during drought, indicating higher drought tolerance. Pressure-volume curves showed that cell-wall elasticity of E. marginata leaves increased in response to drought, while C. calophylla leaves showed lower osmotic potential at zero turgor in summer than in winter, indicating osmotic adjustment. Both species are clearly able to tolerate seasonal drought at hostile sites; however, by C. -calophylla closing stomata earlier in the drought cycle, maintaining a higher water status during drought and having the additional mechanism of osmotic adjustment, it may have a greater capacity to survive extended periods of drought.
引用
收藏
页码:1052 / 1066
页数:15
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