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Synergistic interaction of NaCl and Cd on growth and photosynthetic parameters in soybean genotypes differing in salinity tolerance*

机译:NaCl和Cd对盐度耐受性不同的大豆基因型生长和光合参数的协同相互作用*

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摘要

The effects of salinity (50 mmol/L NaCl) and Cd (1 μmol/L CdCl2) as sole and combined on growth and photosynthetic parameters were studied using two soybean genotypes, Huachun 18 and NGB. The concentrations of Cd2+, Zn2+, Ca2+, Mg2+, K+ and Na+ were also determined in seeds and pods. Huachun 18 suffered a more serious decrease than NGB in net photosynthetic rate (P n) in the treatments of salinity stress alone and combined stress (NaCl+Cd), showing that it is relatively sensitive to salinity. The decrease in P n caused by salt stress in Huachun 18 was mainly due to the reduced total chlorophyll content and photosynthetic efficiency (the ratio of variable fluorescence to maximal fluorescence, F v/F m), whereas the decease in NGB was mainly related to reduced stomatal conductance (G s). The combined stress of both Na and Cd did not induce further decrease in photosynthesis and fluorescence in the two genotypes relative to salt or Cd stress alone. Greater change in the pod concentrations of Zn2+, Ca2+, Mg2+, K+ and Na+ was detected under salt stress for Huachun 18 than for NGB. The results suggested that the interactive effect of NaCl-Cd on growth and nutrient uptake differs between the two soybean genotypes.
机译:用华春18号和NGB这两种大豆基因型研究了盐分(50 mmol / L NaCl)和镉(1μmol/ L CdCl2)单独和联合对生长和光合参数的影响。还测定了种子和豆荚中的Cd2 +,Zn2 +,Ca2 +,Mg2 +,K +和Na +的浓度。在单独的盐度胁迫和联合胁迫(NaCl + Cd)的处理中,华春18的净光合速率(P n)比NGB降低更为严重,表明它对盐度相对敏感。华春18号盐胁迫引起的P n降低主要是由于总叶绿素含量降低和光合效率降低(可变荧光与最大荧光之比,F v / F m),而NGB的下降主要与气孔导度降低(G s)。相对于单独的盐或镉胁迫,Na和Cd的综合胁迫并未诱导这两种基因型的光合作用和荧光进一步降低。在盐胁迫下,华春18号的荚果中Zn2 +,Ca2 +,Mg2 +,K +和Na +的浓度变化大于NGB。结果表明,NaCl-Cd对两种大豆基因型的生长和养分吸收的交互作用不同。

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