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Light-induced ultrastructure changes of amyloplasts and effect of nitrogen fertilization on greening in potato tubers (Solanum tuberosum L.)

机译:淀粉淀粉淀粉淀粉淀粉蛋白的超微结构变化及氮肥对薯片绿化的影响(Solanum Tuberosum L.)

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摘要

Tuber greening causes potato quality decline and economic loss. We investigated physiological mechanisms of greening by fluorescence and transmission electron microscopy. We then explored the effect of nitrogen level (0, 210, and 315 kg N ha(-1)) on starch granule size and tuber greening of three commercial cultivars. Results showed that chlorophyll content of tuber skin increased (5-8 times) in a quadratic manner with increasing duration of light exposure (0-7 d) in all cultivars. Light-induced greening occurred in cortical parenchyma 0-1.5 mm below the periderm, where chloroplast auto-fluorescence was evident under ultraviolet light. The greening process involved membrane lose, starch granule dissolution, and grana formation in amyloplasts, along with chloroplast development. Formation of grana lamellae was observed around amyloplasts with a diameter of 9-30 mu m. Nitrogen application increased the percentage of small granule starch (<30 mu m) in tuber skin and thereby promoted tuber greening under light in all cultivars. This study provides new evidence for the mechanisms of tuber greening and nitrogen management in potato.
机译:块茎绿化会导致马铃薯质量下降和经济损失。我们研究了荧光和透射电子显微镜的绿化生理机制。然后,我们探讨了氮水平(0,210和315kg Na(-1))对三种商业品种的淀粉颗粒尺寸和块茎绿化的影响。结果表明,块茎皮肤的叶绿素含量以二次方式增加(5-8次),随着所有品种的透光(0-7d)的持续时间增加而增加。在紫外线下,皮质实质术治疗0-1.5毫米的皮质实质疗法0-1.5mm发生光诱导的绿化。绿化过程涉及膜丢失,淀粉颗粒溶解,淀粉组织中的颗粒形成,以及叶绿体发育。在直径为9-30μm的淀粉组织周围观察到甘蓝薄片的形成。氮施用增加了块茎皮肤中小颗粒淀粉(<30μm)的百分比,从而在所有品种的光下促进了块茎绿化。本研究为马铃薯的块茎绿化和氮管理机制提供了新的证据。

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