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首页> 外文期刊>Journal of Plant Physiology >Wounding induces changes in tuber polyamine content, polyamine metabolic gene expression, and enzyme activity during closing layer formation and initiation of wound periderm formation
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Wounding induces changes in tuber polyamine content, polyamine metabolic gene expression, and enzyme activity during closing layer formation and initiation of wound periderm formation

机译:伤口在闭合层形成和创创伤口皮层形成过程中引起块茎多胺含量,多胺代谢基因表达和酶活性的变化

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Tuber wound-healing processes are complex, and the associated regulation and modulation of these processes are poorly understood. Polyamines (PA) are involved in modulating a variety of responses to biotic and abiotic plant stresses and have been suggested to be involved in tuber wound responses. However, the time course of wound-induced changes in tuber PA content, activity of key biosynthetic enzymes and associated gene expression has not been determined and coordinated with major wound-healing processes. The objective of this study was to determine these wound-induced changes and their coordination with wound-healing processes. Wounding induced increases in putrescine (Put) and spermidine (Spd), but had only minor effects on spermine (Spm) content during the 168 h time course which encompassed the initiation and completion of the closing layer formation, and the initiation of cell division and wound periderm formation. As determinants of the first committed step in PA biosynthesis, arginine and ornithine decarboxylase (ADC and ODC, respectively) activities were below levels of detectability in resting tubers and expression of genes encoding these two enzymes was low. Within 6 h of wounding, increases in the in vitro activities of ADC and ODC and expression of their cognate genes were observed. Expression of a gene encoding S-adenosylmethionine decarboxylase, required for Spd and Spm biosynthesis, was also increased 6 h after wounding and remained elevated throughout the time course. Expression of a polyamine catabolic gene, encoding polyamine oxidase, was down-regulated after wounding. Results indicated a rapid wound-induced increase in PA biosynthesis during closing layer formation and the time of nuclei entry and exit from S-phase. PA content remained elevated as wound-induced cells became meristematic and initiated formation of the wound periderm suggesting sustained involvement in wound-healing. Published by Elsevier GmbH.
机译:块茎伤口愈合过程很复杂,并且对这些过程的相关调节和调节知之甚少。多胺(PA)参与调节对生物和非生物植物胁迫的多种反应,并已被建议参与块茎伤口反应。然而,尚未确定伤口诱导的块茎PA含量,关键生物合成酶活性和相关基因表达变化的时程,并且未与主要的伤口愈合过程相协调。这项研究的目的是确定这些伤口引起的变化以及它们与伤口愈合过程的协调性。伤口引起腐胺(Put)和亚精胺(Spd)的增加,但在168 h时间过程中对精胺(Spm)含量的影响很小,包括闭合层形成的开始和完成,以及细胞分裂和形成的开始。伤口皮层的形成。作为PA生物合成第一步的决定因素,精氨酸和鸟氨酸脱羧酶(分别为ADC和ODC)的活性低于静止块茎的可检测水平,并且编码这两种酶的基因表达较低。在受伤的6小时内,观察到ADC和ODC的体外活性及其相关基因的表达增加。 Spd和Spm生物合成所需的编码S-腺苷甲硫氨酸脱羧酶的基因的表达在受伤后6小时也增加,并且在整个时间过程中保持升高。伤口后,编码聚胺氧化酶的聚胺分解代谢基因的表达下调。结果表明,在闭合层形成过程中以及核进入和退出S期的过程中,伤口诱导的PA生物合成迅速增加。当伤口诱导的细胞成为分生组织并开始形成伤口皮层时,PA含量仍然升高,这表明持续参与伤口愈合。由Elsevier GmbH发布。

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