Iakimova Elena T, Woltering Ernst J
Horticulture and Product Physiology Group, Wageningen University, Droevendaalsesteeg 1, P.O. Box 630, 6700AP, Wageningen, The Netherlands.
Institute of Ornamental Plants, 1222, Negovan, Sofia, Bulgaria.
Protoplasma. 2018 Jul;255(4):1225-1238. doi: 10.1007/s00709-018-1228-y. Epub 2018 Feb 22.
In this work, the involvement of programmed cell death (PCD) in the wound-induced postharvest browning disorder and senescence in butterhead lettuce (Lactuca sativa L.) fresh-cuts was studied. At the wounded (cut, bruised) sites, rapid browning, loss of chlorophyll and massive cell death, accompanied with accumulation of reactive oxygen species and increased electrolyte leakage occurred in a narrow strip of tissue adjacent the injury. The dead cell morphology (protoplast and nuclei shrinkage) together with the biochemical and physiological changes resembled necrotic PCD type. With a slight delay post-wounding, senescence associated with similar cell death features was initiated in distant non-wounded sites. In addition to necrotic PCD, both in wounded and senescing tissue, the appearance of empty cell corpses was observed, indicating that part of the cells might undergo vacuolar PCD (self-digestion of cellular content after vacuole collapse). The wounding-induced local cell death at the primary site of damage suggested that PCD may serve as a mechanism to seal-off the wound by building a physical barrier of dead cells. However, the cell death at sites remote from the wound suggests the distribution of long-distance senescence-inducing wound messengers. Trichomes in unwounded tissue often were the first to show HO accumulation and dead cells; thereafter, the elevated HO and cell death appeared in connecting cells and senescence progressed over larger areas. This suggests that trichomes may contribute to mediating the wound signalling leading to subsequent senescence. Our findings demonstrate that PCD is an integral part of the wound syndrome in fresh-cut lettuce.
在这项研究中,我们探究了程序性细胞死亡(PCD)在伤口诱导的结球生菜(Lactuca sativa L.)鲜切后褐变紊乱和衰老过程中的作用。在受伤(切割、擦伤)部位,紧邻损伤处的狭窄组织条带会迅速褐变、叶绿素丧失、大量细胞死亡,并伴有活性氧积累和电解质渗漏增加。死亡细胞的形态(原生质体和细胞核收缩)以及生化和生理变化类似于坏死性PCD类型。受伤后稍有延迟,远处未受伤部位就会开始出现与类似细胞死亡特征相关的衰老。除了坏死性PCD外,在受伤和衰老组织中均观察到空细胞尸体的出现,这表明部分细胞可能经历液泡型PCD(液泡破裂后细胞内容物的自我消化)。损伤主要部位受伤诱导的局部细胞死亡表明,PCD可能作为一种机制,通过构建死细胞的物理屏障来封闭伤口。然而,远离伤口部位的细胞死亡表明存在长距离衰老诱导伤口信号的分布。未受伤组织中的毛状体通常是最先显示HO积累和细胞死亡的;此后,HO升高和细胞死亡出现在相连细胞中,衰老在更大区域进展。这表明毛状体可能有助于介导导致后续衰老的伤口信号传导。我们的研究结果表明,PCD是鲜切生菜伤口综合征的一个组成部分。