Khon Khaen Field Crops Research Center, Amphur Muang, Khon Kaen, 40000, Thailand.
Mahidol University, Amnatcharoen Campus, Amphur Muang, Amnatcharoen, 37000, Thailand.
Plant Physiol Biochem. 2023 Jul;200:107758. doi: 10.1016/j.plaphy.2023.107758. Epub 2023 May 18.
Ethylene is a plant hormone that causes flower senescence. Dendrobium flowers are sensitive to ethylene and ethylene can induce premature senescence depending on the cultivar and the ethylene concentration. Dendrobium 'Lucky Duan' is one of the most sensitive cultivars to ethylene exposure. Open florets of 'Lucky Duan' were subjected to ethylene, 1-MCP, or 1-MCP plus ethylene treatments and compared with an untreated control. Ethylene induced earlier development of color fading, drooping and venation in petals, whereas 1-MCP pre-treatment counteracted these changes. Under light microscopy, epidermal cells and mesophyll parenchyma tissue around the vascular bundles of petals treated with ethylene showed collapsed cells whereas 1-MCP pre-treatment counteracted this collapse. An scanning electron microscopy (SEM) study confirmed clearly that ethylene treatment caused the collapse of mesophyll parenchyma tissue around vascular bundles. Ultrastructural changes were also studied using transmission electron microscopy (TEM) and showed that ethylene treatment induced morphological changes in conjunction with disorganization of the plasma membrane, the nuclei, chromatin, the nucleoli, myelin bodies, multivesicular bodies, and mitochondria including changes in size and number, breakages of membranes, enlargement of intercellular spaces and disintegration. 1-MCP pre-treatment was observed to counter these changes that were induced by ethylene. The role of ethylene-induced ultrastructural changes in the different organelles was apparently associated with membrane damage.
乙烯是一种植物激素,会导致花朵衰老。石斛花对乙烯敏感,乙烯可以根据品种和乙烯浓度诱导过早衰老。石斛‘幸运段’是对乙烯暴露最敏感的品种之一。将‘幸运段’开放的花朵暴露于乙烯、1-MCP 或 1-MCP 加乙烯处理中,并与未处理的对照进行比较。乙烯诱导花瓣颜色褪色、下垂和叶脉的更早发育,而 1-MCP 预处理则抵消了这些变化。在光学显微镜下,乙烯处理的花瓣血管束周围的表皮细胞和叶肉薄壁组织显示出细胞塌陷,而 1-MCP 预处理则抵消了这种塌陷。扫描电子显微镜(SEM)研究清楚地证实,乙烯处理导致了维管束周围叶肉薄壁组织的塌陷。使用透射电子显微镜(TEM)进行的超微结构变化研究也表明,乙烯处理诱导了与质膜、核、染色质、核仁、髓鞘体、多泡体和线粒体形态变化相关的形态变化,包括大小和数量的变化、膜的破裂、细胞间隙的扩大和解体。1-MCP 预处理被观察到可以抵消乙烯诱导的这些变化。乙烯诱导的不同细胞器中超微结构变化的作用显然与膜损伤有关。