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首页> 外文期刊>Acta Physiologiae Plantarum >The effects of sodium chloride-salinity upon growth, nodulation, and root nodule structure of pea (Pisum sativum L.) plants
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The effects of sodium chloride-salinity upon growth, nodulation, and root nodule structure of pea (Pisum sativum L.) plants

机译:氯化钠盐度对豌豆(Pisum sativum L.)植物生长,根瘤和根瘤结构的影响

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摘要

Pea (Pisum sativum L.) plants inoculated with Rhizobium leguminosarum bv. viciae effective strain 248 were irrigated with nitrogen-free medium supplemented with 0, 25, 50 or 75 mM NaCl. The inhibitory effect of salinity on the growth of pea plants treated with 25 mM NaCl occurred 6 weeks post inoculation. In case of 75 mM NaCl treatment, the same effect was observed 2 weeks post inoculation. In contrast to investigations described in the literature our results clearly indicated that 25 mM NaCl stimulated nodule formation, however, in contrast to control nodules (the medium without NaCl), the nodules were considerably smaller. Remaining variants of salt treatment reduced plant growth, nodulation, and total nodule volume calculated per plant. Microscopic observations showed that salinity: (1) caused the loss of turgor of the nodule peripheral cells, (2) changed nodule zonation, (3) stimulated infection thread enlargement and expansion, (4) caused disturbances in bacterial release from the infection threads, and (5) induced synthesis of electron dense material (EDM) and its deposition in vacuoles. It was also found that cisternae of RER were involved in the formation of special cytoplasmic compartments responsible for synthesis of EDM. Autofluorescence study revealed that salinity increased accumulation of phenolics in pea nodules, as well.
机译:接种豆科根瘤菌的豌豆(Pisum sativum L.)植物。将蚕豆有效菌株248用补充有0、25、50或75mM NaCl的无氮培养基灌溉。在接种后6周,盐度对用25 mM NaCl处理的豌豆植物的生长具有抑制作用。在75 mM NaCl处理的情况下,接种后2周观察到相同的效果。与文献中描述的研究相反,我们的结果清楚地表明25 mM NaCl刺激了结节形成,但是与对照结节(不含NaCl的培养基)相比,结节要小得多。盐处理的其余变体减少了植物的生长,结瘤和每株植物计算出的总根瘤体积。显微镜观察表明盐度:(1)导致结节周围细胞膨胀消失,(2)结节区域改变,(3)刺激感染线扩大和扩张,(4)引起细菌从感染线释放的干扰, (5)诱导电子致密材料(EDM)的合成及其在液泡中的沉积。还发现RER的水箱参与了负责EDM合成的特殊细胞质区室的形成。自发荧光研究表明,盐度也增加了豌豆根瘤中酚类的积累。

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