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Effects of exogenous putrescine on the ultrastructure of and calcium ion flow rate in lettuce leaf epidermal cells under drought stress

机译:外源脓液对干旱胁迫下莴苣叶片表皮细胞超微结构及钙离子流速的影响

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The alleviation effects of exogenous putrescine treatment on the ultrastructure of and calcium ion flow rate in lettuce (Lactuca sativa L.) leaf cells under drought stress were studied. Lettuce seedlings were treated with foliar sprays of 0.1mM putrescine for 8days, after which drought stress was simulated by using 10% polyethylene glycol 6000. The morphological characteristics of the seedlings and the calcium ion flow rate across stomatal guard cells were subsequently determined, and the leaf cell ultrastructure was observed via transmission electron microscopy. Under drought stress, the morphological characteristics of the seedlings decreased, and calcium ion influx was predominant in the guard cells. In addition, compared to that under control conditions, the stomatal density under drought stress conditions increased significantly, the open/closed stoma ratio was lower, and the degree of stomatal opening was smaller. Exogenous putrescine sprays effectively reduced the stomatal density, increased the degree of stomatal opening, and increased the proportion of open stomata. In addition, the chloroplasts became round in shape, the thylakoid structure became blurry in appearance, the number of starch grains decreased, many osmium granules were produced, and plasmolysis occurred in the mesophyll cells. However, the chloroplasts were elongated, the thylakoid structure was clear, the starch grains were abundant, few osmium granules were produced, and plasmolysis did not occur. The above results show that, by altering the leaf cell ultrastructure as well as the flow rate and direction of calcium ions in guard cells, exogenous putrescine effectively improves the drought tolerance of lettuce.
机译:研究了在干旱胁迫下莴苣(Lactuca Sativa L.)叶细胞超微结构对莴苣(Lactuca Sativa L.)叶细胞超微结构和钙离子流速的缓解作用。将莴苣幼苗用0.1mm putrescine的叶面喷雾治疗8天,之后通过使用10%的聚乙二醇6000模拟干旱胁迫。随后测定幼苗的形态特征和气孔防护细胞跨气孔保护细胞的钙离子流速。通过透射电子显微镜观察叶细胞超微结构。在干旱胁迫下,幼苗的形态学特性降低,钙离子流入在防护细胞中占主导地位。另外,与控制条件下,干旱胁迫条件下的气孔密度显着增加,开口/闭孔的造口比率较低,气孔开口度较小。外源性普雷氏菌喷雾器有效地降低了气孔密度,增加了气孔开口度,增加了开放气孔的比例。此外,叶绿体变成圆形,紫曲面结构在外观上变得模糊,淀粉颗粒的数量降低,产生了许多锇颗粒,并且在培蛋白细胞中发生了等离子体溶液。然而,叶绿体伸长,淀粉样结构澄清,淀粉晶粒丰富,产生了几个锇颗粒,并且没有发生质子术。上述结果表明,通过改变叶细胞超微结构以及保护细胞中钙离子的流速和方向,外源腐败型有效改善了莴苣的耐旱性。

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