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一种由甲基磺酸乙酯(EMS)诱导产生的短节间2基因等位基因可降低玉米株高。

An EMS-induced allele of the brachytic2 gene can reduce plant height in maize.

作者信息

Zhao Yang, Huang Yuanxiang, Gao Yajie, Wang Yixiao, Wu Hongying, Zhu Hongjia, Lu Xiaoduo, Ma Qing

机构信息

National Engineering Laboratory of Crop Stress Resistance Breeding, School of Life Sciences, Anhui Agricultural University, Hefei, 230036, China.

Key Laboratory of Breeding Engineering of Anhui Province, School of Life Sciences, Anhui Agricultural University, Hefei, 230036, China.

出版信息

Plant Cell Rep. 2023 Apr;42(4):749-761. doi: 10.1007/s00299-023-02990-2. Epub 2023 Feb 8.

Abstract

D129 is an EMS-induced mutant with dwarf phenotype, which has important breeding potential to cultivate new varieties suitable for high-density planting in maize Plant height is one of the important agronomic traits that affecting maize planting density, identification of superior dwarf mutants can provide important genetic materials for breeding new varieties suitable for high-density planting. In this study, we identified a dwarf mutant, d129, from maize EMS-induced mutant population. Gene mapping indicated that a G-to-A transition in the second exon of the br2 gene was responsible for the dwarf phenotype of the d129 mutant using MutMap method, which was further validated through allelism testing. Compared with WT plants, the average plant height and ear height of d129 were reduced by 26.67% and 39.43%, respectively, mainly due to a decrease in internode length. Furthermore, the d129 mutant exhibited increased internode diameter, which is important for increasing planting density due to the lodging resistance may be enhanced. Endogenous hormone measurement demonstrated that the contents of IAA and GA3 in the internode of the mutant were significantly lower than that of WT plants. RNA-seq analysis indicated that at least fifteen auxin-responsive and signaling-related genes exhibited differential expression, and some genes involved in cell development and other types of hormone signaling pathways, were also identified from the differential expressed genes. These genes may be related to the reduced hormone contents and decreased elongation of internode cells of the d129 mutant. Our study provided a novel dwarf mutant which can be applied in maize breeding to cultivate new varieties suitable for high-density planting.

摘要

D129是一个经甲基磺酸乙酯(EMS)诱变产生的具有矮化表型的突变体,在培育适合玉米高密度种植的新品种方面具有重要的育种潜力。株高是影响玉米种植密度的重要农艺性状之一,鉴定优良的矮化突变体可为培育适合高密度种植的新品种提供重要的遗传材料。在本研究中,我们从玉米EMS诱变突变体群体中鉴定出一个矮化突变体d129。基因定位表明,利用MutMap方法,br2基因第二个外显子中的G到A的转变导致了d129突变体的矮化表型,通过等位性测试进一步验证了这一点。与野生型植株相比,d129的平均株高和穗位高分别降低了26.67%和39.43%,主要是由于节间长度的减少。此外,d129突变体的节间直径增加,这对于提高种植密度很重要,因为可能增强了抗倒伏能力。内源激素测定表明,突变体节间中生长素(IAA)和赤霉素(GA3)的含量显著低于野生型植株。RNA测序分析表明,至少有15个生长素响应和信号相关基因表现出差异表达,并且从差异表达基因中还鉴定出了一些参与细胞发育和其他类型激素信号通路的基因。这些基因可能与d129突变体激素含量降低和节间细胞伸长减少有关。我们的研究提供了一个新的矮化突变体,可应用于玉米育种以培育适合高密度种植的新品种。

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