[Glycine max、Glycine soja 及其杂交幼苗耐氯化物能力与多胺积累之间的关系]。

植物生理与分子生物学学报 Pub Date : 2007-02-01
Xuan-Qin Chen, Bing-Jun Yu, You-Liang Liu
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引用次数: 0

摘要

将逐代选育出的耐盐性 F4 杂交品系'JB185'的幼苗、其亲本 Glycine max cv.Jackson和Glycine soja群体'BB52'分别用不同浓度的NaCl和等渗(-0.53 MPa)PEG-6000、NaCl、Na+(不含Cl-)和Cl-(不含Na+)溶液处理6 d:(1)当 NaCl 浓度升高时,上述三种大豆幼苗叶片中的相对电解质渗漏和丙二醛(MDA)含量呈上升趋势,但叶绿素含量下降,只有'BB52'和'JB185'在 NaCl 50 mmol/L 胁迫下叶绿素含量显著增加。JB185'的变化介于其亲本之间。(2)在不同等渗胁迫下,3种大豆幼苗叶片中的相对电解质渗漏和MDA含量也大多增加,Na+(无Cl-)胁迫下'BB52'和'JB185'的变化大于Cl-(无Na+)胁迫下的变化。与对照相比,'BB52'和'JB185'幼苗在 Na+(无 Cl-)胁迫下叶片中游离和结合的 Put、Spd 和 Spm 含量均有所增加,游离(Spd+Spm)/Put 和总结合多胺的比值是三种等渗盐胁迫中最低的。结果表明,与野生亲本'BB52'群体相比,F4 杂交品系'JB185'对 Na+更敏感。
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[Relationship between chloride tolerance and polyamine accumulation in Glycine max, Glycine soja, and their hybrid seedlings].

The seedlings of the F4 hybrid strain 'JB185' selected for salt tolerance generation by generation, their parents Glycine max cv. Jackson and Glycine soja population 'BB52' were treated with different NaCl concentrations and iso-osmotic (-0.53 MPa) PEG-6000, NaCl, Na+ (without Cl-) and Cl- (without Na+) solutions for 6 d. The results showed that: (1) The relative electrolyte leakage and malondialdehyde (MDA) content in leaves of the above three soybean seedlings showed an increase trend when the NaCl concentration was elevated, but chlorophyll contents decreased except the significant increase in 'BB52' and 'JB185' under NaCl 50 mmol/L stress. The change in 'JB185' was between its parents. (2) Under different iso-osmotic stresses, the relative electrolyte leakage and MDA contents in leaves of three soybean seedlings also increased mostly, the changes in 'BB52' and 'JB185' under Na+ (without Cl-) stress were more than those under Cl- (without Na+) stress. The free and bound Put, Spd and Spm contents in leaves all increased when compared with the control, the ratios of free (Spd+Spm)/Put and total bound polyamines in 'BB52' and 'JB185' seedlings under Na+ (without Cl-) treatment were the lowest one among three iso-osmotic salt stresses. The results indicate that the F4 hybrid strain 'JB185' is more sensitive to Na+ than Cl- as its wild parent 'BB52' population.

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