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ZmMs7介导的番茄显性核不育的分子机制及利用

The molecular mechanism and utilization of ZmMs7-mediated dominant nuclear sterility in L.

作者信息

Xu Yusheng, Yuan Dingyang, Duan Meijuan

机构信息

School of Tea and Coffee, Pu'er University, Puer, China.

Yunnan International Joint Laboratory for Digital Conservation and Germplasm Innovation and Application of China-Laos Tea Resources, Pu'er University, Puer, China.

出版信息

Front Plant Sci. 2025 Apr 29;16:1572721. doi: 10.3389/fpls.2025.1572721. eCollection 2025.

Abstract

INTRODUCTION

Research on the molecular basis of dominant male sterility in rice and its application in sterile lines is significantly underdeveloped. This article aims to utilize dominant nuclear male sterile lines, which were created through the ectopic expression of in the genetic background of rice, for the purpose of heterosis utilization.

METHODS

At the same time, we conducted a study on the spatiotemporal expression characteristics of , performed transcriptome analysis, and implemented yeast two-hybrid experiments to elucidate its molecular regulatory mechanisms in mediating dominant nuclear male sterility in rice.

RESULTS

The results confirm the successful construction of a dominant nuclear male-sterile (NMS) vector system (p5126-ZmMs7-DsRed) using the exogenous male-sterile gene . This system comprises three modules: first, a dominant nuclear male-sterile (NMS) functional module driven by p5126, designed to achieve the dominant nuclear male-sterile trait; second, a fluorescence-based selection module driven by the endosperm-specific promoter LTP2, which facilitates the expression of the red fluorescent protein gene ; and finally, a herbicide resistance screening module driven by the constitutive CaMV35S promoter, enabling the expression of the selectable marker gene. The system has successfully developed a practical dominant male-sterile rice line characterized by complete pollen sterility, stable fertility, and straightforward visual seed selection, with no adverse effects on plant growth. In the hybrid offspring, approximately 50% of the seeds are genetically modified fluorescent seeds, while the remaining seeds are non-genetically modified and non-fluorescent. Transgenic plants Pro5126: GUS and ProZmMs7: GUS do not exhibit expression in roots, stems, leaves, or glumes. It is proposed that p5126 may enhance the expression of the gene, which could lead to the up-regulation of the rice pollen fertility gene , as well as the down-regulation of and the leafy glume sterile genes and .

DISCUSSION

Furthermore, it was demonstrated that the proteins encoded by these three fertility genes interact with the protein encoded by . This study provides new insights into the molecular regulatory network governing male reproductive development in rice and offers a theoretical foundation and technical support for the development of novel male-sterile germplasm resources.

摘要

引言

水稻显性雄性不育的分子基础研究及其在不育系中的应用严重滞后。本文旨在利用通过在水稻遗传背景中异位表达创建的显性核雄性不育系,用于杂种优势利用。

方法

同时,我们对……的时空表达特征进行了研究,进行了转录组分析,并开展了酵母双杂交实验,以阐明其介导水稻显性核雄性不育的分子调控机制。

结果

结果证实使用外源雄性不育基因……成功构建了显性核雄性不育(NMS)载体系统(p5126-ZmMs7-DsRed)。该系统包括三个模块:首先,由p5126驱动的显性核雄性不育(NMS)功能模块,旨在实现显性核雄性不育性状;其次,由胚乳特异性启动子LTP2驱动的基于荧光的选择模块,其促进红色荧光蛋白基因的表达;最后,由组成型CaMV35S启动子驱动的除草剂抗性筛选模块,使选择标记……基因得以表达。该系统已成功培育出一个实用的显性雄性不育水稻系,其特征为花粉完全不育、育性稳定且种子视觉选择简便,对植株生长无不利影响。在杂交后代中,约50%的种子为转基因荧光种子,其余种子为非转基因且无荧光的种子。转基因植株Pro5126:GUS和ProZmMs7:GUS在根、茎、叶或颖花中均不表达。推测p5126可能增强……基因的表达,这可能导致水稻花粉育性基因……上调,以及……和颖花不育基因……和……下调。

讨论

此外,已证明这三个育性基因编码的蛋白质与……编码的蛋白质相互作用。本研究为调控水稻雄性生殖发育的分子调控网络提供了新见解,并为新型雄性不育种质资源的开发提供了理论基础和技术支持。 (注:原文中部分关键基因名称未给出具体内容,用……替代以便呈现大致叙事结构)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3251/12069387/696540889d07/fpls-16-1572721-g001.jpg

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