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抑制剂氯普罗磷和 1,4-二甲基萘诱导不同的转录谱,并且不会通过延长休眠状态来抑制生长。

The sprout inhibitors chlorpropham and 1,4-dimethylnaphthalene elicit different transcriptional profiles and do not suppress growth through a prolongation of the dormant state.

机构信息

School of Science, Penn State Erie, The Behrend College, P-1 Prischak Building, 4205 College Drive, Erie, PA 16563-0203, USA.

出版信息

Plant Mol Biol. 2010 May;73(1-2):181-9. doi: 10.1007/s11103-010-9607-6. Epub 2010 Feb 5.

DOI:10.1007/s11103-010-9607-6
PMID:20135197
Abstract

Chlorpropham (CIPC) and 1,4-dimethylnapthalene (DMN) are used to control postharvest sprouting of potato tubers. CIPC alters microtubule structure and function resulting in inhibition of cell division. The mechanism of action of DMN is unknown but, because it is a natural product found in potato tubers, there is speculation that it inhibits sprout growth by prolonging the dormant state. To address this issue, the effects of CIPC and DMN on abscisic acid (ABA) content and gene expression in potato tuber meristems were determined and compared to those found in dormant and non-dormant meristems. Dormancy progression was accompanied by a dramatic decline in ABA content and the ABA levels in meristems isolated from CIPC- and DMN- treated tubers were identical to the levels found in nondormant meristems demonstrating that sprout repression is not a function of elevated ABA. Evaluation of transcriptional profiles using cDNA microarrays demonstrated that there were similarities between CIPC- and DMN- treated tuber tissues particularly in transcripts that encode phosphatases and proteins associated with oxygen-related metabolism. Despite these similarities, there were significant differences in transcript profiles derived from treatment with either CIPC or DMN and the dormant state. These results suggested the mechanisms-of -action of DMN and CIPC are distinct and not due to a prolongation of the normal dormant condition.

摘要

氯苯胺灵(CIPC)和 1,4-二甲基萘(DMN)被用于控制马铃薯块茎的采后发芽。CIPC 改变微管结构和功能,从而抑制细胞分裂。DMN 的作用机制尚不清楚,但由于它是在马铃薯块茎中发现的天然产物,因此有人推测它通过延长休眠状态来抑制芽的生长。为了解决这个问题,确定了 CIPC 和 DMN 对马铃薯块茎分生组织中脱落酸(ABA)含量和基因表达的影响,并将其与休眠和非休眠分生组织中的含量进行了比较。休眠进程伴随着 ABA 含量的急剧下降,而 CIPC 和 DMN 处理的块茎分离出的分生组织中的 ABA 水平与非休眠分生组织中的水平相同,这表明抑制发芽不是 ABA 升高的功能。使用 cDNA 微阵列评估转录谱表明,CIPC 和 DMN 处理的块茎组织之间存在相似性,特别是在编码磷酸酶和与氧相关代谢相关的蛋白质的转录物中。尽管存在这些相似性,但 CIPC 或 DMN 处理和休眠状态产生的转录谱存在显著差异。这些结果表明,DMN 和 CIPC 的作用机制不同,并非由于正常休眠状态的延长。

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