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TOR途径参与番茄和马铃薯不定根的形成。

The TOR Pathway Is Involved in Adventitious Root Formation in and Potato.

作者信息

Deng Kexuan, Dong Pan, Wang Wanjing, Feng Li, Xiong Fangjie, Wang Kai, Zhang Shumin, Feng Shun, Wang Bangjun, Zhang Jiankui, Ren Maozhi

机构信息

School of Life Sciences, Chongqing UniversityChongqing, China.

College of Agronomy and Biotechnology, Southwest UniversityChongqing, China.

出版信息

Front Plant Sci. 2017 May 12;8:784. doi: 10.3389/fpls.2017.00784. eCollection 2017.

Abstract

In the agriculture industry, adventitious root formation is a core issue of plants asexual propagation. However, the underlying molecular mechanism of adventitious root formation is far beyond understanding. In present study we found that target of rapamycin (TOR) signaling plays a key role in adventitious root formation in potato and . The core components of TOR complex including TOR, RAPTOR, and LST8 are highly conserved in potato, but the seedlings of potato are insensitive to rapamycin, implying FK506 Binding Protein 12 KD (FKBP12) lost the function to bridge the interaction of rapamycin and TOR in potato. To dissect TOR signaling in potato, the rapamycin hypersensitive potato plants (BP12-OE) were engineered by introducing yeast () into potato. We found that rapamycin can significantly attenuate the capability of adventitious root formation in BP12-OE potatoes. KU63794 (KU, an active-site TOR inhibitor) combined with rapamycin can more significantly suppress adventitious root formation of BP12-OE potato than the single treatments, such as KU63794 or rapamycin, indicating its synergistic inhibitory effects on potato adventitious root formation. Furthermore, RNA-seq data showed that many genes associated with auxin signaling pathway were altered when BP12-OE potato seedlings were treated with rapamycin + KU, suggesting that TOR may play a major role in adventitious root formation via auxin signaling. The auxin receptor mutant was sensitive to TOR inhibitors and the double and quadruple mutants including , and displayed more sensitive to asTORis than single mutant . Consistently, overexpression of in and potato can partially overcome the inhibitory effect of asTORis and promote adventitious root formation under asTORis treatments. These observations suggest that TOR signaling regulates adventitious root formation by mediating auxin signaling in and potato.

摘要

在农业领域,不定根形成是植物无性繁殖的核心问题。然而,不定根形成的潜在分子机制仍远未明确。在本研究中,我们发现雷帕霉素靶蛋白(TOR)信号通路在马铃薯不定根形成中起关键作用。TOR复合物的核心组分包括TOR、RAPTOR和LST8在马铃薯中高度保守,但马铃薯幼苗对雷帕霉素不敏感,这意味着FK506结合蛋白12KD(FKBP12)在马铃薯中丧失了介导雷帕霉素与TOR相互作用的功能。为了剖析马铃薯中的TOR信号通路,通过将酵母的()导入马铃薯构建了对雷帕霉素超敏感的马铃薯植株(BP12-OE)。我们发现雷帕霉素能显著减弱BP12-OE马铃薯不定根形成的能力。KU63794(KU,一种TOR活性位点抑制剂)与雷帕霉素联合使用比单独使用KU63794或雷帕霉素更能显著抑制BP12-OE马铃薯的不定根形成,表明其对马铃薯不定根形成具有协同抑制作用。此外,RNA测序数据显示,当用雷帕霉素+KU处理BP12-OE马铃薯幼苗时,许多与生长素信号通路相关的基因发生了改变,这表明TOR可能通过生长素信号通路在不定根形成中起主要作用。生长素受体突变体对TOR抑制剂敏感,包括、和的双突变体和四突变体对asTORis比单突变体更敏感。同样,在和马铃薯中过表达可以部分克服asTORis的抑制作用,并在asTORis处理下促进不定根形成。这些观察结果表明,TOR信号通路通过介导和马铃薯中的生长素信号来调节不定根形成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de03/5427086/c99e3b78853b/fpls-08-00784-g0001.jpg

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