Effects of salinity on leaf characteristics and CO2/H 2O exchange of Kandelia candel (L.) Druce seedlings

被引:0
|
作者
Qiu, D.-L. [1 ,2 ,3 ]
Lin, P. [1 ]
Guo, S.Z. [2 ]
机构
[1] School of Life Science, Xiamen University
[2] College of Horticulture, Fujian Agriculture and Forestry University, Fuzhou
[3] Fujian Agriculture and Forestry University, College of Horticulture
关键词
Cell structure; Mangrove; Photosynthesis; Salinity; Transpiration;
D O I
10.17221/2081-jfs
中图分类号
学科分类号
摘要
Effects of salinities on leaf characteristics and CO2/H 2O exchange of mangrove species Kandelia candel seedlings were studied in a pot experiment. The seedlings grown in salinity of 50‰ caused a strong reduction in the rate of growth, but their leaves were black-green, smaller and less expanded or distorted than those of plants in the control and treatment of 25‰. As compared with control plants, leaves of plants treated with salinity of 25‰ were shiny and smooth. Stomatal number and density under the epidermis in leaves were reduced with the increase of salinity. Mesophyll cells in plants grown in salinity of 50‰ were smallest, 25‰ ranked the second and 0‰ were largest. Their arrangement was compact in 50‰, while in the control it was loose. Cells of the upper epidermis in leaves of control plants were loose and the cell wall was thin while that of 50‰ was more compact and the cell wall was thicker than that of 25‰. Chlorophyll (Chl) (a + b) content (uμmol/cm 2) in plants grown in 50‰ salinity increased significantly compared with that in 0‰, and Chl a/b was also reduced. Carotenoid pigments (Car) increased significantly in different treatments. Photosynthesis (Pn) was significantly inhibited by higher salinity, and the light compensation point of higher salinity leaves increased. Net photosynthetic rate (Pn), stomatal conductance (Cs), and transpiration rate (Tr) were reduced with the increase of salinity while dark respiration (Rd) increased.
引用
收藏
页码:13 / 19
页数:6
相关论文
共 50 条
  • [21] Through-flow chamber CO2/H2O canopy gas exchange system-Construction, microclimate, errors, and measurements in a barley (Hordeum vulgare L.) field
    Mueller, Johannes
    Eschenroeder, Andre
    Diepenbrock, Wulf
    AGRICULTURAL AND FOREST METEOROLOGY, 2009, 149 (02) : 214 - 229
  • [22] Modeling canopy CO2 and H2O exchange of a temperate mixed forest
    Shi, Ting-Ting
    Guan, De-Xin
    Wang, An-Zhi
    Wu, Jia-Bing
    Yuan, Feng-Hui
    Jin, Chang-Jie
    Zhang, Mi
    JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2010, 115
  • [23] Effects of elevated [CO2] and soil temperature on photosynthetic responses of mountain maple (Acer spicatum L.) seedlings to light
    Danyagri, Gabriel
    Dang, Qing-Lai
    ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2014, 107 : 64 - 70
  • [24] Mesophyll conductance to CO2 and leaf morphological characteristics under drought stress during Quercus ilex L. resprouting
    Fleck, Isabel
    Pena-Rojas, Karen
    Aranda, Xavier
    ANNALS OF FOREST SCIENCE, 2010, 67 (03)
  • [25] INTERACTIVE EFFECTS OF ELEVATED CO2 AND MINERAL-NUTRITION ON GROWTH AND CO2 EXCHANGE OF SWEET CHESTNUT SEEDLINGS (CASTANEA-SATIVA)
    ELKOHEN, A
    MOUSSEAU, M
    TREE PHYSIOLOGY, 1994, 14 (7-9) : 679 - 690
  • [26] Elevated CO2 exacerbates effects of TiO2 nanoparticles on rice (Oryza sativa L.) leaf transcriptome and soil bacteria
    Ma, Wenqian
    Du, Wenchao
    Gu, Kaihua
    Xu, Meiling
    Yin, Ying
    Sun, Yuanyuan
    Wu, Jichun
    Zhu, Jianguo
    Guo, Hongyan
    SCIENCE OF THE TOTAL ENVIRONMENT, 2023, 857
  • [27] Effects of elevated CO2 and nitrogen on growth ofPoa pratensis (L.)
    Jun-Kwon Hwangbo
    Young Se Kwak
    Journal of Plant Biology, 2001, 44 (1) : 12 - 16
  • [28] Effects of NaCl salinity and CO2 enrichment on pepino (Solanum muricatum Ait.) -: II.: Leaf photosynthetic properties and gas exchange
    Chen, K
    Hu, GQ
    Keutgen, N
    Janssens, MJJ
    Lenz, F
    SCIENTIA HORTICULTURAE, 1999, 81 (01) : 43 - 56
  • [29] LEAF GAS-EXCHANGE OF BEECH (FAGUS-SYLVATICA L) SEEDLINGS IN LIGHTFLECKS - A SYSTEM FOR MEASURING RAPID CHANGES IN CO2 PARTIAL PRESSURES
    KUPPERS, M
    SCHNEIDER, H
    SWAN, AG
    PHOTOSYNTHESIS RESEARCH, 1993, 35 (03) : 299 - 304
  • [30] CO2 gas exchange and phosphoenolpyruvate carboxylase activity in leaves of Zea mays L.
    Pfeffer, M
    Peisker, M
    PHOTOSYNTHESIS RESEARCH, 1998, 58 (03) : 281 - 291