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马铃薯 CONSTANS 以可嫁接传递的方式参与光周期块茎形成。

Potato CONSTANS is involved in photoperiodic tuberization in a graft-transmissible manner.

机构信息

Centre for Research in Agricultural Genomics, CSIC-IRTA-UAB-UB, Campus UAB, Edifici CRAG, Bellaterra (Cerdanyola del Vallès), Barcelona, Spain.

出版信息

Plant J. 2012 May;70(4):678-90. doi: 10.1111/j.1365-313X.2012.04909.x. Epub 2012 Mar 5.

Abstract

CONSTANS (CO) is involved in the photoperiodic control of plant developmental processes, including flowering in several species and seasonal growth cessation and bud set in trees. It has been proposed that CO could also affect the day-length regulation of tuber induction in Solanum tuberosum (potato), a plant of great agricultural relevance. To address this question, we examined the role of CO in potato. A potato CO-like gene, StCO, was identified and found to be highly similar to a previously reported potato gene of unknown function. Potato plants overexpressing StCO tuberized later than wild-type plants under a weakly inductive photoperiod. StCO silencing promoted tuberization under both repressive and weakly inductive photoperiods, but did not have any effect under strongly inductive short days, demonstrating that StCO represses tuberization in a photoperiod-dependent manner. The effect of StCO on tuber induction was transmitted through grafts. In addition, StCO affected the mRNA levels of StBEL5 - a tuberization promoter, the mRNA of which moves long distances in potato plants - and StFT/StSP6A, a protein highly similar to FLOWERING LOCUS T (FT), which is a key component of systemic flowering signals in other species. We also found that StFT/StSP6A transcript levels correlate with the induction of tuber formation in wild-type plants. These results show that StCO plays an important role in photoperiodic tuberization and, together with the recent demonstration that StFT/StSP6A promotes tuberization, indicate that the CO/FT module participates in controlling this process. Moreover, they support the notion that StCO is involved in the expression of long-distance regulatory signals in potato, as CO does in other species.

摘要

CONSTANS (CO) 参与植物发育过程的光周期控制,包括在几个物种中的开花以及树木的季节性生长停止和芽形成。有人提出,CO 也可能影响块茎诱导的长日调节,这是一种具有重要农业意义的植物。为了解决这个问题,我们研究了 CO 在马铃薯中的作用。鉴定出一个马铃薯 CO 类似基因 StCO,与先前报道的一个功能未知的马铃薯基因高度相似。在弱诱导光周期下,过表达 StCO 的马铃薯植株比野生型植株晚结薯。StCO 沉默促进了抑制和弱诱导光周期下的块茎形成,但在强诱导短日照下没有任何影响,表明 StCO 以光周期依赖的方式抑制块茎形成。StCO 对块茎诱导的影响通过嫁接传递。此外,StCO 影响 StBEL5 的 mRNA 水平 - 一种促进块茎形成的启动子,其 mRNA 在马铃薯植株中长距离移动 - 和 StFT/StSP6A,一种与开花 locus T(FT)高度相似的蛋白质,FT 是其他物种系统开花信号的关键组成部分。我们还发现 StFT/StSP6A 转录水平与野生型植株中块茎形成的诱导相关。这些结果表明 StCO 在光周期诱导块茎形成中起重要作用,并且与最近证明 StFT/StSP6A 促进块茎形成一致,表明 CO/FT 模块参与控制这个过程。此外,它们支持 StCO 参与马铃薯中长距离调节信号表达的观点,就像 CO 在其他物种中一样。

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