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Differential Sensitivity of Chloroplasts in Mesophyll and Bundle Sheath Cells in Maize, an NADP-Malic Enzyme-Type C4 Plant, to Salinity Stress

机译:NADP苹果酸酶型C4植物玉米叶肉和束鞘细胞中叶绿体对盐分胁迫的敏感性

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The changes in chloroplast ultrastructure and the contents of chlorophyll, Na and K in response to salinity stress were investigated in leaves of maize, an NADP-malic enzyme-type C4 plant species possessing dimorphic chloroplasts. The seedlings were treated with 0, 1, 2 or 3% NaCl for three or five days under a light or dark condition. In both light and dark conditions, the dry weight of salt-treated plants decreased as NaCl concentration increased. Chlorophyll and K contents of the second leaf blade decreased as NaCl concentration increased under the light condition but not under the dark condition. Na content of the second leaf blade was significantly higher at high NaCl concentrations under both light and dark conditions. However, Na content was much lower under the dark condition than light condition. Higher concentrations (2 and 3%) of NaCl significantly increased the size of plastoglobules, decreased the number and size of starch granules and altered the chloroplast ultrastructure. Under the light condition, mesophyll cell (MC) chloroplasts appeared more sensitive to the damaging effect of salinity than the bundle sheath cell (BSC) chloroplasts. MC chloroplasts became more globular in shape and showed swollen and disorganized thylakoids and reduced thickness of grana by salinity. BSC chloroplasts were less affected by salinity than MC chloroplasts. Although chloroplast size and number and size of starch granules were reduced, there was no structural distortion in the thylakoids of BSC chloroplasts. However, the thickness of grana was increased by salinity. Under the dark condition, the chloroplast structure was less affected by salinity. Though the envelope of BSC chloroplasts was occasionally damaged, the thylakoids in both MC and BSC chloroplasts were preserved under salinity stress. The present study suggests that the chloroplast damage caused by salinity is light-dependent and MC chloroplasts are more sensitive to salinity than BSC chloroplasts.
机译:研究了具有双态叶绿体的NADP-苹果酸酶型C4植物玉米叶片中盐分胁迫下叶绿体超微结构的变化以及盐胁迫下叶绿素,Na和K含量的变化。在明亮或黑暗的条件下,将幼苗用0、1、2或3%NaCl处理三或五天。在明暗条件下,盐处理植物的干重均随NaCl浓度的增加而降低。在明亮的条件下,第二叶片的叶绿素和K含量随NaCl浓度的增加而降低,而在黑暗条件下则不。在高NaCl浓度下,在明亮和黑暗条件下,第二片叶片的Na含量均显着较高。但是,在黑暗条件下,Na含量要比在明亮条件下低得多。较高的NaCl浓度(2%和3%)会显着增加质体小球的大小,减少淀粉颗粒的数量和大小,并改变叶绿体的超微结构。在光照条件下,叶肉细胞(MC)叶绿体比束鞘细胞(BSC)叶绿体对盐度的破坏作用更敏感。 MC叶绿体的形状变得更球形,并显示出盐度使肿胀和杂乱的类囊体和减小的颗粒厚度。 BSC叶绿体受盐度的影响比MC叶绿体少。尽管减少了叶绿体的大小和淀粉颗粒的数量和大小,但BSC叶绿体的类囊体没有结构变形。然而,盐度增加了谷物的厚度。在黑暗条件下,盐度对叶绿体结构的影响较小。尽管BSC叶绿体的包膜偶尔会受到破坏,但MC和BSC叶绿体中的类囊体均在盐分胁迫下得以保存。目前的研究表明,盐度引起的叶绿体损害是光依赖性的,MC叶绿体比BSC叶绿体对盐度更敏感。

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