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February 21, 2026The Plant Journal0 citations

Abnormal meiocytes and tapetum 1 ( OsAMT1 ) is essential for proper meiosis and tapetal development in rice

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BYBowen YaoNanjing Agricultural UniversityYHYang HuNanjing Agricultural UniversityHZHai ZhengChinese Academy of Agricultural Sciences

Key Points

  • This research aims to uncover the role of the OsAMT1 gene in meiosis and tapetal cell development in rice.
  • Isolated and characterized the Osamt1 mutant in rice.
  • Conducted map-based cloning of the OsAMT1 gene.
  • Performed tissue expression analysis to assess localization in tapetal cells.
  • Executed biochemical analyses to determine interactions with OsMT2b.
  • Utilized RT-qPCR to investigate gene expression related to meiosis and tapetum.
  • Osamt1 mutant showed meiotic chromosomal fragmentation and pollen mother cell development arrest.
  • Abnormal tapetal development and excessive ROS accumulation were observed in mutants.
  • A splice site mutation in Osamt1 resulted in an aberrant transcript and a premature stop codon.
  • OsAMT1 is localized in the endoplasmic reticulum and strongly expressed in early tapetal cells.
  • OsAMT1 interacts with OsMT2b, indicating its role in ROS scavenging.

Abstract

SUMMARY In higher plants, both normal meiosis and timely degradation of tapetal cells are crucial for gametophyte development, and abnormal reactive oxygen species (ROS) levels are detrimental to this process. However, the molecular mechanisms underlying their coordination remain unclear. Here, we isolated and characterized a sterile rice mutant, designated as abnormal meiocytes and tapetum 1 ( Osamt1 ). Compared with the wild‐type (WT), Osamt1 mutant plants exhibited meiotic chromosomal fragmentation, arrest of pollen mother cell development at meiotic prophase I, abnormal tapetal development, and excessive accumulation of ROS. Map‐based cloning revealed that the OsAMT1 gene encodes a protein containing a DUF1771 domain with a Small MutS‐related (SMR) domain, whose function is related to DNA repair. Sequence analysis revealed that a single‐nucleotide mutation occurred at the splice site between the 5th exon and its adjacent intron of Osamt1 , leading to a longer transcript than that in the WT. This aberrant splicing resulted in a frameshift and consequently introduced a premature stop codon. Subcellular localization showed that OsAMT1 is localized to the endoplasmic reticulum (ER). Tissue expression analysis demonstrated that OsAMT1 is strongly expressed in tapetal cells during the early stage of anther development. Biochemical analyses further established that OsAMT1 can physically interact with OsMT2b, a key mediator of ROS scavenging. Further RT‐qPCR assays indicated that OsAMT1 affects the reproductive process by influencing the expression of genes related to meiosis and tapetal development. Collectively, our study identifies OsAMT1 as a key regulator of meiosis and tapetum development, expanding the network of reproductive development in rice.

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Cite This Study

Yao et al. (2026) studied this question.

synapsesocial.com/papers/69994c80873532290d02111dhttps://doi.org/10.1111/tpj.70722
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