Arid
DOI10.1007/s11099-016-0234-6
Effect of NaCl-induced changes in growth, photosynthetic characteristics, water status and enzymatic antioxidant system of Calligonum caput-medusae seedlings
Lu, Y.1,2,3; Lei, J. -Q.1,2,3; Zeng, F. -J.1,2,3; Zhang, B.1,2,3; Liu, G. -J.1,2,3; Liu, B.1,2,3; Li, X. -Y.1,2,3
通讯作者Zeng, F. -J.
来源期刊PHOTOSYNTHETICA
ISSN0300-3604
EISSN1573-9058
出版年2017
卷号55期号:1页码:96-106
英文摘要

Calligonum caput-medusae is known to grow well when irrigated with water containing NaCl. The aim of this study was to investigate ecophysiological responses of C. caput-medusae to different NaCl concentrations. In our study, we examined the effect of 0, 50, 100, 200, and 400 mM NaCl. Our results demonstrated that maximum seedling growth occurred at 50 mM NaCl. Photosynthetic parameters, such as the photosynthetic pigment content and gas exchange parameters, correlated with growth response. High salinity (>= 100 mM NaCl) resulted in a significant reduction of the plant growth. Similarly, marked declines in the pigment content, maximal efficiency of PSII photochemistry, net photosynthetic rate, transpiration rate, and stomatal conductance were also detected. However, intercellular CO2 concentration showed a biphasic response, decreasing with water containing less than 200 mM NaCl and increasing with NaCl concentration up to 400 mM. Water-use efficiency and intrinsic water-use efficiency exhibited the opposite response. The reduction of photosynthesis at the high NaCl concentration could be caused by nonstomatal factors. High salinity led also to a decrease in the relative water content and water potential. Correspondingly, an accumulation of soluble sugars and proline was also observed. Na+ and Cl- concentrations increased in all tissues and K+ concentrations were maintained high during exposure to NaCl compared with the control. High salinity caused oxidative stress, which was evidenced by high malondialdehyde and hydrogen peroxide contents. In order to cope with oxidative stress, the activity of antioxidative enzymes increased to maximum after 50 mM NaCl treatment. The data reported in this study indicate that C. caput-medusae can be utilized in mild salinity-prone environments.


英文关键词adaptation chlorophyll content lipid peroxidation reactive oxygen species salinity stress gas exchange chlorophyll fluorescence
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000394441500011
WOS关键词SALT STRESS ; CHLOROPHYLL FLUORESCENCE ; SALINITY TOLERANCE ; OSMOTIC ADJUSTMENT ; SODIUM-CHLORIDE ; L. SEEDLINGS ; PLANTS ; RESPONSES ; DESERT ; ACCUMULATION
WOS类目Plant Sciences
WOS研究方向Plant Sciences
来源机构中国科学院新疆生态与地理研究所
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/201442
作者单位1.Chinese Acad Sci, Xinjiang Inst Ecol & Geog, State Key Lab Desert & Oasis Ecol, Urumqi 830011, Peoples R China;
2.Cele Natl Stn Observat & Res Desert Grassland Eco, Cele 848300, Peoples R China;
3.Chinese Acad Sci, Xinjiang Inst Ecol & Geog, Key Lab Biogeog & Bioresource Arid Land, Urumqi 830011, Peoples R China
推荐引用方式
GB/T 7714
Lu, Y.,Lei, J. -Q.,Zeng, F. -J.,et al. Effect of NaCl-induced changes in growth, photosynthetic characteristics, water status and enzymatic antioxidant system of Calligonum caput-medusae seedlings[J]. 中国科学院新疆生态与地理研究所,2017,55(1):96-106.
APA Lu, Y..,Lei, J. -Q..,Zeng, F. -J..,Zhang, B..,Liu, G. -J..,...&Li, X. -Y..(2017).Effect of NaCl-induced changes in growth, photosynthetic characteristics, water status and enzymatic antioxidant system of Calligonum caput-medusae seedlings.PHOTOSYNTHETICA,55(1),96-106.
MLA Lu, Y.,et al."Effect of NaCl-induced changes in growth, photosynthetic characteristics, water status and enzymatic antioxidant system of Calligonum caput-medusae seedlings".PHOTOSYNTHETICA 55.1(2017):96-106.
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