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MdMTA-mediated m A modification enhances drought tolerance by promoting mRNA stability and translation efficiency of genes involved in lignin deposition and oxidative stress

New Phytol. 2022-03; 
Nan Hou, Chaoshuo Li, Jieqiang He, Yu Liu, Sisi Yu, Mickael Malnoy, Muhammad Mobeen Tahir, Lingfei Xu, Fengwang Ma, Qingmei Guan
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Proteins, Expression, Isolation and Analysis … nmol RNA probe (synthesized in Genscript), 0.15 nmol proteins (MdMTA and MdMTB), 0.8 mM SAM (A4377, Sigma), 80 mM KCl, 1.5 mM MgCl2, 0.2 U μL?1 RNasin, 10 mM DTT, 4% … Get A Quote

摘要

Although the N -methyladenosine (m A) modification is the most prevalent RNA modification in eukaryotes, the global m A modification landscape and its molecular regulatory mechanism in response to drought stress remain unclear. Transcriptome-wide m A methylome profiling revealed that m A is mainly enriched in the coding sequence and 3' untranslated region in response to drought stress in apple, by recognizing the plant-specific sequence motif UGUAH (H=A, U or C). We identified a catalytically active component of the m A methyltransferase complex, MdMTA. An in?vitro methyl transfer assay, dot blot, LC-MS/MS and m A-sequencing (m A-seq) suggested that MdMTA is an m A writer and essential for m A mRNA modificati... More

關鍵詞

apple, drought tolerance, lignin deposition, m6A methylation, methyltransferase, reactive oxygen species (ROS) scavenging
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