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一个MADS盒基因NtSVP通过直接抑制烟草(Nicotiana tabacum L.)中一个类似KNAT1的KNOX基因NtBPL来调控花梗伸长。

A MADS-box gene NtSVP regulates pedicel elongation by directly suppressing a KNAT1-like KNOX gene NtBPL in tobacco (Nicotiana tabacum L.).

作者信息

Wang Di, Chen Xiaobo, Zhang Zenglin, Liu Danmei, Song Gaoyuan, Kong Xingchen, Geng Shuaifeng, Yang Jiayue, Wang Bingnan, Wu Liang, Li Aili, Mao Long

机构信息

National Key Facility for Crop Gene Resources and Genetic Improvement (NFCRI), MOA Key Laboratory of Crop Germplasm and Biotechnology, Institute of Crop Science, Chinese Academy of Agricultural Sciences (CAAS), Beijing 100081, China.

Key Laboratory for Tobacco Gene Resources, Tobacco Research Institute, Chinese Academy of Agricultural Sciences, Qingdao 266101, China.

出版信息

J Exp Bot. 2015 Oct;66(20):6233-44. doi: 10.1093/jxb/erv332. Epub 2015 Jul 14.

Abstract

Optimal inflorescence architecture is important for plant reproductive success by affecting the ultimate number of flowers that set fruits and for plant competitiveness when interacting with biotic or abiotic conditions. The pedicel is one of the key contributors to inflorescence architecture diversity. To date, knowledge about the molecular mechanisms of pedicel development is derived from Arabidopsis. Not much is known regarding other plants. Here, an SVP family MADS-box gene, NtSVP, in tobacco (Nicotiana tabacum) that is required for pedicel elongation was identified. It is shown that knockdown of NtSVP by RNA interference (RNAi) caused elongated pedicels, while overexpression resulted in compact inflorescences with much shortened pedicels. Moreover, an Arabidopsis BREVIPEDECELLUS/KNAT1 homologue NtBP-Like (NtBPL) was significantly up-regulated in NtSVP-RNAi plants. Disruption of NtBPL decreased pedicel lengths and shortened cortex cells. Consistent with the presence of a CArG-box at the NtBPL promoter, the direct binding of NtSVP to the NtBPL promoter was demonstrated by yeast one-hybrid assay, electrophoretic mobility shift assay, and dual-luciferase assay, in which NtSVP may act as a repressor of NtBPL. Microarray analysis showed that down-regulation of NtBPL resulted in differential expression of genes associated with a number of hormone biogenesis and signalling genes such as those for auxin and gibberellin. These findings together suggest the function of a MADS-box transcription factor in plant pedicel development, probably via negative regulation of a BP-like class I KNOX gene. The present work thus postulates the conservation and divergence of the molecular regulatory pathways underlying the development of plant inflorescence architecture.

摘要

最佳花序结构对于植物的繁殖成功至关重要,因为它会影响最终结果的花朵数量,并且在与生物或非生物条件相互作用时对植物的竞争力也很重要。花梗是花序结构多样性的关键贡献者之一。迄今为止,关于花梗发育分子机制的知识来源于拟南芥。对于其他植物,了解并不多。在这里,鉴定了烟草(Nicotiana tabacum)中一个花梗伸长所需的SVP家族MADS-box基因NtSVP。结果表明,通过RNA干扰(RNAi)敲低NtSVP会导致花梗伸长,而过度表达则导致花序紧凑且花梗大大缩短。此外,拟南芥BREVIPEDECELLUS/KNAT1同源基因NtBP-Like(NtBPL)在NtSVP-RNAi植物中显著上调。破坏NtBPL会降低花梗长度并缩短皮层细胞。与NtBPL启动子处存在CArG-box一致,通过酵母单杂交试验、电泳迁移率变动分析和双荧光素酶试验证明了NtSVP与NtBPL启动子的直接结合,其中NtSVP可能作为NtBPL的抑制因子。微阵列分析表明,NtBPL的下调导致与许多激素生物合成和信号基因相关的基因差异表达,例如生长素和赤霉素的相关基因。这些发现共同表明了一个MADS-box转录因子在植物花梗发育中的作用可能是通过对BP样I类KNOX基因的负调控实现的。因此,目前的工作推测了植物花序结构发育潜在分子调控途径的保守性和差异性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2555/4588881/d82d5abea52b/exbotj_erv332_f0001.jpg

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