Ionic and photosynthetic homeostasis in quinoa challenged by salinity and drought - mechanisms of tolerance

被引:71
|
作者
Razzaghi, Fatemeh [1 ,3 ]
Jacobsen, Sven-Erik [2 ]
Jensen, Christian Richardt [2 ]
Andersen, Mathias Neumann [3 ]
机构
[1] Shiraz Univ, Water Engn Dept, Coll Agr, Shiraz, Iran
[2] Univ Copenhagen, Dept Plant & Environm Sci, Fac Sci, DK-2630 Taastrup, Denmark
[3] Aarhus Univ, Fac Sci & Technol, Dept Agroecol, DK-8830 Tjele, Denmark
关键词
intrinsic water use efficiency; ion uptake; mesophyll conductance; salinity threshold value; stomatal conductance; WATER-USE EFFICIENCY; CHENOPODIUM-QUINOA; MESOPHYLL CONDUCTANCE; SALT TOLERANCE; METABOLIC LIMITATIONS; CO2; CONCENTRATION; CARBON-DIOXIDE; LEAF ANATOMY; STRESS; GROWTH;
D O I
10.1071/FP14132
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Quinoa (Chenopodium quinoa Willd.) grown under field conditions was exposed to five irrigation water salinities (0, 10, 20, 30 and 40 dSm(-1); 4 : 1 NaCl : CaCl2 molar ratio) from flowering, and divided between full irrigation and progressive drought (PD) during seed filling. Quinoa demonstrated homeostatic mechanisms which contributed to quinoa's extraordinary tolerance. Salinity increased K+ and Na+ uptake by 60 and 100 kg ha(-1), respectively, resulting in maintenance of cell turgor by osmotic adjustment, and a 50% increase of the leaf's fresh weight (FW) : dry weight (DW) ratio and nonsignificant increase in elasticity enhanced crop water-capacitance. Dayrespiration (R-d) increased 2.7 times at high salinity but decreased 0.6 times during drought compared with control. Mesophyll conductance (g(m)) tended to be negatively affected by salinity as the increased succulence (FW : DW) possibly decreased intercellular space and increased cell-wall thickness. However, the increased K+ uptake seemed to alleviate biochemical limitations, as maximum Rubisco carboxylation rate (V-cmax) and photosynthetic electron transport (J)tended to increase under salinity. Overall, salinity and PD restricted stomatal conductance (g(s)) and photosynthesis (A(n)) moderately, leading to decreased leaf internal to ambient [CO2], increase of intrinsic-water-use-efficiency (A(n)/g(s)). The saturated electrical conductivity (ECe) resulting in 50% yield was estimated to be 25 dSm(-1), reaching no yield at 51.5 dS m(-1).
引用
收藏
页码:136 / 148
页数:13
相关论文
共 50 条
  • [1] Salinity tolerance of quinoa (Chenopodium quinoa Willd) as assessed by chloroplast ultrastructure and photosynthetic performance
    Manaa, Arafet
    Goussi, Rahma
    Derbali, Walid
    Cantamessa, Simone
    Abdelly, Chedly
    Barbato, Roberto
    ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2019, 162 : 103 - 114
  • [2] Salinity Stress Promote Drought Tolerance of Chenopodium Quinoa Willd
    Aly, Anwar A.
    Al-Barakah, Fahad N.
    El-Mahrouky, Mohamed A.
    COMMUNICATIONS IN SOIL SCIENCE AND PLANT ANALYSIS, 2018, 49 (11) : 1331 - 1343
  • [3] Comparative physiological and biochemical mechanisms of drought tolerance in three contrasting cultivars of quinoa (Chenopodium quinoa)
    Zhang, Yemeng
    Yang, Qian
    Zhu, Lili
    Chen, Zhiguo
    ANALES DEL JARDIN BOTANICO DE MADRID, 2022, 79 (01):
  • [4] Physiological and photosynthetic response of quinoa to drought stress
    Fghire, Rachid
    Anaya, Fatima
    Ali, Oudou Issa
    Benlhabib, Ouafae
    Ragab, Ragab
    Wahbi, Said
    CHILEAN JOURNAL OF AGRICULTURAL RESEARCH, 2015, 75 (02): : 174 - 183
  • [5] ZxSKOR is important for salinity and drought tolerance of Zygophyllum xanthoxylum by maintaining K+ homeostasis
    Jing Hu
    Qing Ma
    Tanweer Kumar
    Hui-Rong Duan
    Jin-Lin Zhang
    Hui-Jun Yuan
    Qian Wang
    Sardar Ali Khan
    Pei Wang
    Suo-Min Wang
    Plant Growth Regulation, 2016, 80 : 195 - 205
  • [6] ZxSKOR is important for salinity and drought tolerance of Zygophyllum xanthoxylum by maintaining K+ homeostasis
    Hu, Jing
    Ma, Qing
    Kumar, Tanweer
    Duan, Hui-Rong
    Zhang, Jin-Lin
    Yuan, Hui-Jun
    Wang, Qian
    Khan, Sardar Ali
    Wang, Pei
    Wang, Suo-Min
    PLANT GROWTH REGULATION, 2016, 80 (02) : 195 - 205
  • [7] Na+ AND K+ HOMEOSTASIS IS IMPORTANT FOR SALINITY AND DROUGHT TOLERANCE OF CALLIGONUM MONGOLICUM
    Hu, Jing
    Hu, Xiaoke
    Duan, Huirong
    Zhang, Huiwen
    Yu, Qiushi
    PAKISTAN JOURNAL OF BOTANY, 2021, 53 (06) : 1927 - 1934
  • [8] Foliage applied proline induces salt tolerance in chili genotypes by regulating photosynthetic attributes, ionic homeostasis, and antioxidant defense mechanisms
    Madiha Butt
    Abdul Sattar
    Tahira Abbas
    Ahmad Sher
    Muhammad Ijaz
    Sami Ul-Allah
    Muhammad Rashid Shaheen
    Fawad Kaleem
    Horticulture, Environment, and Biotechnology, 2020, 61 : 693 - 702
  • [9] Foliage applied proline induces salt tolerance in chili genotypes by regulating photosynthetic attributes, ionic homeostasis, and antioxidant defense mechanisms
    Butt, Madiha
    Sattar, Abdul
    Abbas, Tahira
    Sher, Ahmad
    Ijaz, Muhammad
    Ul-Allah, Sami
    Shaheen, Muhammad Rashid
    Kaleem, Fawad
    HORTICULTURE ENVIRONMENT AND BIOTECHNOLOGY, 2020, 61 (04) : 693 - 702
  • [10] Salt tolerance mechanisms in quinoa (Chenopodium quinoa Willd.)
    Adolf, Verena Isabelle
    Jacobsen, Sven-Erik
    Shabala, Sergey
    ENVIRONMENTAL AND EXPERIMENTAL BOTANY, 2013, 92 : 43 - 54