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首页> 外文期刊>Journal of Plant Physiology >Wounding induces changes in cytokinin and auxin content in potato tuber, but does not induce formation of gibberellins
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Wounding induces changes in cytokinin and auxin content in potato tuber, but does not induce formation of gibberellins

机译:伤口引起马铃薯块茎中细胞分裂素和生长素含量的变化,但不诱导赤霉素的形成

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摘要

Cytokinin, auxin and gibberellin contents in resting and wound-responding potato tubers have not been fully determined and coordinated with wound-healing processes. Using a well-defined wound-healing model system, hormone content and expression of genes associated with hormone turnover were determined in tubers following wounding. Changes in hormone content were coordinated with: (I) formation and completion of the wound closing layer (0-5/6 days), and (II) initiation of phellogen and wound periderm formation (similar to 7 days). Quantifiable amounts of biologically active cytokinins (Z, DZ and IP) were not detected in resting or wound-responding tubers. However, the precursor IPA and catabolic product c-ZOG were found in small amounts in resting and wound-responding tubers. Wound-induced activation of cytokinin biosynthesis was suggested by an increase in t-ZR and c-ZR content at 0.5 days and large increases in IPA and c-ZR content by 3 days and throughout 7 days after wounding suggesting roles in II, but little or no role in I. Expression of key genes involved in cytokinin metabolism followed similar profiles with transcripts decreasing through 3 days and then increasing at 5-7 days after wounding. Both free IAA and IAA-Asp were present in resting tubers. While IAA-Asp was no longer present by 3 days after wounding, IAA content nearly doubled by 5 days and was more than 4-fold greater at 7 days compared to that in resting tuber (0 day) suggesting roles in II, but little or no role in I. Gibberellins were not present in quantifiable amounts in resting or wound-responding tubers. These results suggest that bio-active cytokinins are wound-induced, but their residency is temporal and highly regulated. The transient presence of active cytokinins and corresponding increases in IAA content strongly suggest their involvement in the regulation of wound periderm development. The absence of gibberellins indicates that they are not a regulatory component of wound-healing processes. Published by Elsevier GmbH.
机译:尚未确定静息和对伤口有帮助的马铃薯块茎中细胞分裂素,生长素和赤霉素的含量,无法与伤口愈合过程协调。使用定义明确的伤口愈合模型系统,确定伤口后块茎中的激素含量和与激素转换相关的基因的表达。激素含量的变化与以下各项相协调:(I)伤口闭合层的形成和完成(0-5 / 6天),以及(II)黄素原的形成和伤口皮层的形成(大约7天)。在静止或有伤口的块茎中未检测到可定量的生物活性细胞分裂素(Z,DZ和IP)。但是,在静息和对伤口敏感的块茎中发现了少量的前体IPA和分解代谢产物c-ZOG。伤口引起的细胞分裂素生物合成的活化提示伤后0.5天时t-ZR和c-ZR含量增加,伤后3天和整个7天时IPA和c-ZR含量大幅增加,提示在II中起作用,但很少I.参与细胞分裂素代谢的关键基因的表达遵循相似的特征,转录本从3天开始减少,在受伤后5-7天增加。静息块茎中均存在游离IAA和IAA-Asp。虽然受伤后3天不再出现IAA-Asp,但与静止块茎(0天)相比,IAA含量在5天时几乎翻了一倍,在7天时增加了4倍以上,表明在II中起作用,但很少或很少在静息或创伤反应块茎中不存在可定量的赤霉素。这些结果表明,生物活性细胞分裂素是伤口诱导的,但是它们的驻留是暂时的并且受到高度调节。活性细胞分裂素的短暂存在和IAA含量的相应增加强烈表明它们参与了伤口皮层发育的调节。赤霉素的缺乏表明它们不是伤口愈合过程的调节成分。由Elsevier GmbH发布。

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