RELATIONSHIPS BETWEEN SODIUM ION ACCUMULATION AND PHYSIOLOGICAL CHARACTERISTICS IN RICE (ORYZA SATIVA L. SPP. INDICA) SEEDLINGS GROWN UNDER ISO-OSMOTIC SALINITY STRESS

被引:0
|
作者
Siringam, Kongake [2 ]
Juntawong, Niran [2 ]
Cha-um, Suriyan [1 ]
Kirdmanee, Chalermpol [1 ]
机构
[1] NSTDA, Natl Ctr Genet Engn & Biotechnol, Klongluang 12120, Pathumthani, Thailand
[2] Kasetsart Univ, Fac Sci, Dept Bot, Bangkok 10900, Thailand
关键词
FREE PROLINE ACCUMULATION; SALT STRESS; CHLOROPHYLL FLUORESCENCE; CARBOHYDRATE-METABOLISM; SELECTION CRITERIA; SEED-GERMINATION; WATER RELATIONS; GAS-EXCHANGE; TOLERANCE; NACL;
D O I
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中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
The objective of this research was to elucidate the role of sodium ion (Na+) on photosynthetic machinery and growth characteristics in both salt-tolerant (HJ) and salt-sensitive (PT1) rice varieties grown under iso-osmotic salinity stress. The Ne and Na+/K+ in HJ and PT1 rice seedlings were increased with increasing salt concentrations in the culture media. K+ in salt-stressed HJ seedlings was increased but that in salt-stressed PT1 seedlings was unchanged. The Na+ accumulation in salt-stressed seedlings was negatively related to the water potential in HJ (r(2) = 0.78) and PT1 (r(2) = 0.72), leading to pigment degradation i.e. chlorophyll a (Chl(a)), chlorophyll b (Chl(b)) and total carotenoids (Cx+c). The water potential in both HJ and PT1 salt-stressed seedlings was positively related to the Cilia concentration (r(2) = 0.78 and r(2) = 0.58). Furthermore, Chl(a) and total chlorophyll (TC) concentrations in HJ and PT1 salt-stressed seedlings were positively related to water oxidation in PSII (PSII) as maximum quantum yield of PSII (F-v/F-m) (r(2) = 0.73 and r(2) = 0.68) and quantum efficiency of PSII (Phi(PSII)) (r(2) = 0.92 and r(2) = 0.91), respectively. The Phi(PSII) in HJ and PT1 salt-stressed seedlings was positively related to the dry matter (r(2) = 0.86 and r(2) = 0.67). The K+ accumulation in HJ salt-stressed seedlings may play a major role in salt defense mechanisms, leading to enhance on photosynthesis capacity, water oxidation in photosystem II (PSII) and growth abilities.
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页码:1837 / 1850
页数:14
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