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一种SEPALLATA MADS盒转录因子SlMBP21在番茄中作为花数和果实产量的负调控因子发挥作用。

A SEPALLATA MADS-Box Transcription Factor, SlMBP21, Functions as a Negative Regulator of Flower Number and Fruit Yields in Tomato.

作者信息

Zhang Jianling, Dong Tingting, Hu Zongli, Li Jing, Zhu Mingku, Chen Guoping

机构信息

Laboratory of Plant Germplasm Resources Innovation and Utilization, School of Life Sciences, Liaocheng University, Liaocheng 252000, China.

Institute of Integrative Plant Biology, School of Life Science, Jiangsu Normal University, Xuzhou 221008, China.

出版信息

Plants (Basel). 2024 May 20;13(10):1421. doi: 10.3390/plants13101421.

Abstract

MADS-box transcription factors act as the crucial regulators in plant organ differentiation. Crop yields are highly influenced by the flower number and fruit growth. However, flower identification is a very complex biological process, which involves many cascade regulations. The molecular mechanisms underlying the genetic regulation of flower identification in cultivated plants, such as tomato, are intricate and require further exploration. In this study, we investigated the vital function of a SEPALLATA (SEP) MADS-box gene, , in tomato sympodial inflorescence meristem (SIM) development for the conversion from SIMs to floral meristems (FMs). transcripts were primarily accumulated in young inflorescence meristem, flowers, sepals, and abscission zones. The Ailsa Craig (AC) tomato plants with suppressed mRNA levels using RNAi exhibited a large increase in flower number and fruit yields in addition to enlarged sepals and inhibited abscission zone development. Scanning electron microscopy (SEM) revealed that the maturation of inflorescence meristems (IMs) was repressed in -RNAi lines. RNA-seq and qRT-PCR analyses showed that numerous genes related to the flower development, plant hormone signal transduction, cell cycle, and cell proliferation et al. were dramatically changed in -RNAi lines. Yeast two-hybrid assay exhibited that SlMBP21 can respectively interact with SlCMB1, SFT, JOINTLESS, and MC, which play key roles in inflorescence meristems or FM development. In summary, our data demonstrate that functions as a key regulator in SIM development and the conversion from SIMs to FMs, through interacting with other regulatory proteins to control the expression of related genes.

摘要

MADS盒转录因子是植物器官分化的关键调节因子。作物产量受花的数量和果实生长的影响很大。然而,花的识别是一个非常复杂的生物学过程,涉及许多级联调控。像番茄这样的栽培植物中花识别的遗传调控的分子机制错综复杂,需要进一步探索。在本研究中,我们研究了一个SEPALLATA(SEP)MADS盒基因,在番茄合轴花序分生组织(SIM)从SIM向花分生组织(FM)转变发育中的重要功能。转录本主要在幼嫩的花序分生组织、花、萼片和离区积累。利用RNA干扰抑制mRNA水平的艾尔莎·克雷格(AC)番茄植株,除了萼片增大和离区发育受抑制外,花的数量和果实产量大幅增加。扫描电子显微镜(SEM)显示,RNA干扰株系中花序分生组织(IM)的成熟受到抑制。RNA测序和qRT-PCR分析表明,许多与花发育、植物激素信号转导、细胞周期和细胞增殖等相关的基因在RNA干扰株系中发生了显著变化。酵母双杂交试验表明,SlMBP21能分别与SlCMB1、SFT、JOINTLESS和MC相互作用,这些蛋白在花序分生组织或FM发育中起关键作用。总之,我们的数据表明,通过与其他调控蛋白相互作用来控制相关基因的表达,在SIM发育以及从SIM向FM的转变中起关键调节因子的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15be/11125064/d17b08ffacd8/plants-13-01421-g001.jpg

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