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Ph1位点对面包小麦花药发育相关基因转录组图谱、减数分裂染色体行为及农艺性状的遗传效应。

Genetic effect of the Ph1 locus on transcriptome atlas of anther development-related genes, meiotic chromosome behavior and agronomic traits in bread wheat.

作者信息

Zhou Rongguang, Li Guo, Feng Tong, Liu Zesheng, Fu Junzhi, Zhang Deshi, Wang Han, Wang Ruisi, Yu Tingting, Bian Yao, Gong Lei, Zhang Huakun, Liu Bao, Zhang Zhibin

机构信息

Key Laboratory of Molecular Epigenetics of the Ministry of Education (MOE), Northeast Normal University, Changchun, 130024, China.

School of Life Sciences, Liaoning Normal University, Dalian, 116081, China.

出版信息

Plant J. 2025 May;122(3):e70203. doi: 10.1111/tpj.70203.

Abstract

Proper spatiotemporal expression of meiosis-related genes (MRGs) and other male-microsporogenesis/microgametogenesis-related genes (MMRGs) is crucial for normal anther development, yet their expression patterns remain largely unknown in wheat. The Ph1 locus in wheat is known to contain the Ph1 gene that plays a dual role in promoting pairing between homologous chromosomes but repressing pairing between homoeologous chromosomes, but its genetic function is still unclear. Here, we investigated these issues by conducting a comprehensive transcriptome analysis during wheat anther development in Chinese Spring (CS) and its ph1b deletion mutant under greenhouse and field conditions. Our results revealed that MRGs and MMRGs are predominantly expressed during pre-meiosis stages, with MMRGs also being highly expressed in meiotic-II. Gene co-expression analysis showed that C2H2 and B3 transcriptional factors (TFs) are associated with MRGs, and MYB regulators interacted mainly with MMRGs during microgametogenesis. Deletion of genes within the Ph1 locus failed to induce compensatory transcriptional activation of their homoeologous counterparts, while genes outside the Ph1 locus showed environmental-specific responses, especially during meiotic-II and mature pollen stages. Notably, early disjunction of bivalent chromosomes is a primary factor leading to defective meiocytes during metaphase I. Furthermore, the ph1b deletion mutant exhibited a substantially delayed heading date, potentially contributing to environment-stable and environment-specific alterations in fertility and grain-related traits. Our study highlights the significant impact of the Ph1 locus on the transcriptome during anther development, and a previously unheeded effect on meiotic chromosome pairing and agronomic traits, suggesting potential for genetic manipulations within the Ph1 locus for wheat improvement.

摘要

减数分裂相关基因(MRGs)和其他雄性小孢子发生/雄配子体发生相关基因(MMRGs)的时空表达对于花药的正常发育至关重要,但它们在小麦中的表达模式仍 largely 未知。已知小麦中的 Ph1 位点包含 Ph1 基因,该基因在促进同源染色体配对但抑制部分同源染色体配对方面起双重作用,但其遗传功能仍不清楚。在这里,我们通过在中国春小麦(CS)及其 ph1b 缺失突变体的温室和田间条件下进行全面的转录组分析来研究这些问题。我们的结果表明,MRGs 和 MMRGs 在减数分裂前期阶段主要表达,MMRGs 在减数分裂 II 期也高度表达。基因共表达分析表明,C2H2 和 B3 转录因子(TFs)与 MRGs 相关,而 MYB 调节因子在雄配子体发生过程中主要与 MMRGs 相互作用。Ph1 位点内基因的缺失未能诱导其部分同源对应物的补偿性转录激活,而 Ph1 位点外的基因表现出环境特异性反应,特别是在减数分裂 II 期和成熟花粉阶段。值得注意的是,二价染色体的早期分离是导致中期 I 减数分裂细胞缺陷的主要因素。此外,ph1b 缺失突变体的抽穗期大幅延迟,这可能导致育性和籽粒相关性状在环境稳定和环境特异性方面的改变。我们的研究强调了 Ph1 位点在花药发育过程中对转录组的重大影响,以及对减数分裂染色体配对和农艺性状的先前未被注意的影响,这表明在 Ph1 位点内进行基因操作以改良小麦具有潜力。

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