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Wound Healing in Potato Tuber Tissue

机译:马铃薯块茎组织的伤口愈合

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摘要

Several aspects of wound healing in tuber tissue of potato (Solanum tuberosum var. Kennebec), known to require protein synthesis, are inhibited by 2,4-dichlorobenzyltributylphosphonium chloride (Phosphon D). Cell division was completely blocked by 60 μm Phosphon and markedly reduced by concentrations as low as 3 μm. When applied at the time of wounding, 0.25mm Phosphon completely prevented the wound-induced respiratory increase. Application at 15 hours after wounding arrested respiration at the rate present at that time. The same concentrations of Phosphon inhibited auxin-induced cell expansion of the tissue, protein synthesis as measured by the incorporation of leucine-14C into the trichloroacetic acid-insoluble fraction of tissue disks, and the appearance of wound-induced peroxidase isozymes. None of these inhibitory effects of Phosphon could be prevented or reversed by the application of gibberellic acid. All wound-induced processes inhibited by Phosphon are also inhibited by cycloheximide. It is suggested that inhibitory effects of Phosphon on wound healing in potato and on other developmental processes in excised plant tissues which cannot be reversed by gibberellin are due to interference with protein synthesis.
机译:已知需要蛋白质合成的马铃薯(Solanum tuberosum var。Kennebec)块茎组织中伤口愈合的几个方面受到2,4-二氯苄基三丁基phosph氯化物(膦D)的抑制。低至60μm的Phosphon可完全阻止细胞分裂,低至3μm的浓度可显着减少细胞分裂。当在伤口处使用时,0.25mm Phosphon可以完全防止伤口引起的呼吸增加。受伤后15小时施药以当时的速率阻止呼吸。相同浓度的膦抑制生长素诱导的组织细胞膨胀,通过将亮氨酸- 14 C掺入组织盘的三氯乙酸不溶级分中来测量蛋白质的合成,并抑制伤口的出现-诱导的过氧化物酶同工酶。施用赤霉素不能预防或逆转膦酸酯的这些抑制作用。膦抑制的所有伤口诱导过程也都被环己酰亚胺抑制。有人提出,膦对马铃薯的伤口愈合和被切除的植物组织中其他不能由赤霉素逆转的发育过程的抑制作用是由于干扰了蛋白质的合成。

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