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油菜素类固醇生物合成基因HvDWARF5的突变能够实现大麦半矮化与粒重维持之间的平衡。

Mutations of the brassinosteroid biosynthesis gene HvDWARF5 enable balance between semi-dwarfism and maintenance of grain size in barley.

作者信息

Zolkiewicz Karolina, Oklestkova Jana, Chmielewska Beata, Gruszka Damian

机构信息

Institute of Biology, Biotechnology and Environmental Protection, Faculty of Natural Sciences, University of Silesia, Katowice, Poland.

Laboratory of Growth Regulators, Faculty of Science, Centre of the Region Haná for Biotechnological and Agricultural Research, Institute of Experimental Botany, Czech Academy of Sciences, Palacký University, Olomouc, Czechia.

出版信息

Physiol Plant. 2025 Mar-Apr;177(2):e70179. doi: 10.1111/ppl.70179.

Abstract

Brassinosteroids (BRs) are phytohormones which regulate various developmental processes in plants. They are exceptional phytohormones, as they do not undergo long-distance transport between plant organs. However, knowledge about the function of the enzymes that catalyse BR biosynthesis (particularly its early stages) in cereal crops remains limited. Therefore, this study identifies and analyses the function of the HvDWARF5 (HvDWF5) gene, involved in the early stage of BR biosynthesis in barley (Hordeum vulgare), an important cereal crop, using the TILLING (Targeting Induced Local Lesions IN Genomes) approach. The detailed functional analysis allowed for the identification of various mutations in different gene fragments. The influence of these mutations on plant architecture, reproduction, and yield was characterised. Moreover, effects of the missense and intron retention mutations on sequence and splicing of the HvDWF5 transcript, sequence and predicted structure of the encoded HvDWF5 enzyme, and accumulation of endogenous BR were determined. Some of the barley mutants identified in this study showed semi-dwarfism, a trait of particular importance for cereal breeding and yield. However, unlike other BR mutants in cereals, this did not negatively affect grain size or weight. It indicated that mutations in this gene allow for a balance between plant height reduction and maintenance of grain size. Thus, the results of this study provide a novel insight into the role of the HvDWF5 gene in the BR biosynthesis-dependent regulation of architecture and reproduction of the important cereal crop - barley.

摘要

油菜素甾醇(BRs)是调节植物各种发育过程的植物激素。它们是特殊的植物激素,因为它们不会在植物器官之间进行长距离运输。然而,关于催化BR生物合成(特别是其早期阶段)的酶在谷类作物中的功能的知识仍然有限。因此,本研究使用定向诱导基因组局部突变(TILLING)方法,鉴定并分析了HvDWARF5(HvDWF5)基因的功能,该基因参与重要谷类作物大麦(Hordeum vulgare)BR生物合成的早期阶段。详细的功能分析使得能够鉴定不同基因片段中的各种突变。表征了这些突变对植物结构、繁殖和产量的影响。此外,还确定了错义突变和内含子保留突变对HvDWF5转录本的序列和剪接、编码的HvDWF5酶的序列和预测结构以及内源BR积累的影响。本研究中鉴定的一些大麦突变体表现出半矮化,这一性状对谷类作物育种和产量尤为重要。然而,与谷类作物中的其他BR突变体不同,这并未对籽粒大小或重量产生负面影响。这表明该基因中的突变能够在降低株高和维持籽粒大小之间实现平衡。因此,本研究结果为HvDWF5基因在重要谷类作物——大麦的BR生物合成依赖性结构和繁殖调控中的作用提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3add/11933512/227e2cbcb683/PPL-177-e70179-g005.jpg

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