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生长素和独脚金内酯对马铃薯块茎形成和匍匐茎结构的影响。

The effects of auxin and strigolactones on tuber initiation and stolon architecture in potato.

机构信息

Laboratory of Plant Breeding, Wageningen University and Research Centre, PO Box 386, 6700 AJ Wageningen, The Netherlands.

出版信息

J Exp Bot. 2012 Jul;63(12):4539-47. doi: 10.1093/jxb/ers132. Epub 2012 Jun 11.

Abstract

Various transcriptional networks and plant hormones have been implicated in controlling different aspects of potato tuber formation. Due to its broad impact on many plant developmental processes, a role for auxin in tuber initiation has been suggested but never fully resolved. Here, auxin concentrations were measured throughout the plant prior to and during the process of tuber formation. Auxin levels increase dramatically in the stolon prior to tuberization and remain relatively high during subsequent tuber growth, suggesting a promoting role for auxin in tuber formation. Furthermore, in vitro tuberization experiments showed higher levels of tuber formation from axillary buds of explants where the auxin source (stolon tip) had been removed. This phenotype could be rescued by application of auxin on the ablated stolon tips. In addition, a synthetic strigolactone analogue applied on the basal part of the stolon resulted in fewer tubers. The experiments indicate that a system for the production and directional transport of auxin exists in stolons and acts synergistically with strigolactones to control the outgrowth of the axillary stolon buds, similar to the control of above-ground shoot branching.

摘要

各种转录网络和植物激素被认为参与控制马铃薯块茎形成的不同方面。由于生长素对许多植物发育过程都有广泛的影响,因此有人提出生长素在块茎起始中的作用,但从未得到完全解决。在这里,在块茎形成之前和形成过程中测量了整个植株中的生长素浓度。在块茎形成之前,匍匐茎中的生长素水平急剧增加,并且在随后的块茎生长过程中相对较高,这表明生长素在块茎形成中起促进作用。此外,体外块茎形成实验表明,从腋芽外植体中形成的块茎数量更高,其中去除了生长素源(匍匐茎尖端)。这种表型可以通过在切除的匍匐茎尖端上施加生长素来挽救。此外,在匍匐茎的基部施加合成的独脚金内酯类似物会导致产生的块茎较少。实验表明,在匍匐茎中存在生长素的产生和定向运输系统,并且与独脚金内酯协同作用,以控制腋芽匍匐茎芽的生长,类似于对地上部枝条分枝的控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1257/3421988/5d4e34a12b7c/EXBOTJ_ers132_F0004.jpg

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