Exogenous Application of the Polyamine Spermine Delays Natural Leaf Senescence in Wheat Through Protecting Chlorophyll from Degradation and Preventing Oxidative Stress

N. Hassan, H. Ebeed, H. S. Ahmed
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Abstract

Senescence is a genetically regulated process that involves decomposition of cellular structures and the mobilization of the products to other plant parts. The progression of developmental senescence in wheat plant under the effect of foliar application with 100 µM of the polyamine spermine (Spm) was studied. Biochemical changes were recorded in the fourth leaf starting from the onset of senescence at 30 day after sowing (DAS) until the end of leaf senescence at 50 DAS. Leaf senescence was delayed in Spm-treated plants through maintaining water content, preventing chlorophyll degradation and enhancement of total soluble sugars, starch accumulation and total protein compared to controls. In addition, reactive oxygen species and lipid peroxidation were lower in Spm-treated plants than control values. Catalase (CAT) activity was obviously lowered due to Spm-treatment; however, guaiacol peroxidase activity was slightly decreased below the control
外源施用多胺精胺通过保护叶绿素降解和防止氧化胁迫延缓小麦叶片自然衰老
衰老是一个基因调控的过程,涉及细胞结构的分解和产品的动员到其他植物部分。研究了叶面施用100µM多胺精胺(Spm)对小麦植株发育性衰老的影响。从播后30天开始衰老,到播后50天叶片衰老结束,第4叶的生化变化均有记录。与对照相比,spm处理的植株通过保持水分含量、防止叶绿素降解、增加总可溶性糖、淀粉积累和总蛋白质来延缓叶片衰老。此外,spm处理植株的活性氧和脂质过氧化也低于对照。过氧化氢酶(CAT)活性明显降低;愈创木酚过氧化物酶活性较对照组略有下降
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