Salt management strategy defines the stem and leaf hydraulic characteristics of six mangrove tree species

被引:38
|
作者
Jiang, Guo-Feng [1 ,2 ]
Goodale, Uromi Manage [1 ,2 ]
Liu, Yan-Yan [3 ]
Hao, Guang-You [3 ]
Cao, Kun-Fang [1 ,2 ]
机构
[1] Guangxi Univ, Coll Forestry, Guangxi Key Lab Forest Ecol & Conservat, Plant Ecophysiol & Evolut Grp, Daxuedonglu 100, Nanning 530004, Guangxi, Peoples R China
[2] Guangxi Univ, State Key Lab Conservat & Utilizat Subtrop Agro B, Daxuedonglu 100, Nanning 530004, Guangxi, Peoples R China
[3] Chinese Acad Sci, Inst Appl Ecol, Key Lab Forest Ecol & Management, Shenyang 110010, Peoples R China
关键词
cavitation resistance; hydraulic efficiency; hydraulic safety; salt adaptation; salt exclusion; salt secretion; XYLEM CAVITATION; RHIZOPHORA-MANGLE; AVICENNIA-MARINA; GROWTH-RESPONSES; SEEDLING GROWTH; WATER TRANSPORT; PREDAWN PLANT; GAS-EXCHANGE; CARBON GAIN; SALINITY;
D O I
10.1093/treephys/tpw131
中图分类号
S7 [林业];
学科分类号
0829 ; 0907 ;
摘要
Mangroves in hypersaline coastal habitats are under constant high xylem tension and face great risk of hydraulic dysfunction. To investigate the relationships between functional traits and salt management, we measured 20 hydraulic and photosynthetic traits in four salt-adapted (SA) and two non-SA (NSA) mangrove tree species in south China. The SA species included two salt secretors (SSs), Avicennia marina (Forsskal) Vierhapper and Aegiceras corniculatum (L.) Blanco and two salt excluders (SEs), Bruguiera gymnorrhiza (L.) Savigny and Kandelia obovata (L.) Sheue et al. The two NSA species were Hibiscus tiliaceus (L.) and Pongamia pinnata (L.) Merr. Extremely high xylem cavitation resistance, indicated by water potential at 50% loss of xylem conductivity (Psi(50); -7.85 MPa), was found in SEs. Lower cavitation resistance was observed in SSs, and may result from incomplete salt removal that reduces the magnitude of xylem tension required to maintain water uptake from the soil. Surprisingly, the NSA species, P. pinnata, had very low Psi(50) (-5.44 MPa). Compared with NSAs, SAs had lower photosynthesis, vessel density, hydraulic conductivity and vessel diameter, but higher sapwood density. Eight traits were strongly associated with species' salt management strategies, with predawn water potential (Psi(PD)) and mean vessel diameter accounting for 95% flow (D-95) having the most significant association; D-95 separated SAs from NSAs and SEs had the lowest Psi(PD). There was significant coupling between hydraulic traits and carbon assimilation traits. Instead of hydraulic safety being compromised by xylem efficiency, mangrove species with higher safety had higher efficiency and greater sapwood density (rho(Sapwood)), but there was no relationship between rho(Sapwood) and efficiency. Principal component analysis differentiated the species of the three salt management strategies by loading D, D-95 and vessel density on the first axis and loading Psi(PD), Psi(50) and water potential at 12% loss of xylem conductivity (Psi(12)), rho(Sapwood) and quantum yield on the second axis. Our results provide the first comparative characterization of hydraulic and photosynthetic traits among mangroves with different salt management strategies.
引用
收藏
页码:389 / 401
页数:13
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