
任麗軍,博士,校聘教授,山東省“泰山學(xué)者”青年專(zhuān)家。2011、2014年于重慶大學(xué)生物工程學(xué)院分別獲學(xué)士和碩士學(xué)位,2020年于中國(guó)科學(xué)院遺傳與發(fā)育生物學(xué)研究所獲博士學(xué)位,2020-2023年于中國(guó)農(nóng)科院油料作物研究所任助理研究員,2023年加入山東農(nóng)業(yè)大學(xué)園藝科學(xué)與工程學(xué)院,主要從事茶樹(shù)生物育種技術(shù)與種質(zhì)創(chuàng)新研究。先后主持承擔(dān)國(guó)家自然科學(xué)基金(青年項(xiàng)目)、國(guó)家重點(diǎn)研發(fā)計(jì)劃子任務(wù)等科研項(xiàng)目,以第一作者或通訊作者在Cell reports、Plant cell、New phytologist等學(xué)術(shù)期刊發(fā)表論文12篇。
代表性論文:
(1)Ren L.J., Zhao T.T., Zhao Y.Z., Du G.J., Yang S.Y., Mu N., Tang D., Shen Y., Li Y.F., Cheng Z.K. The E3 ubiquitin ligase DESYNAPSIS1 regulates synapsis and recombination in rice meiosis. Cell reports, 2021, 37(5): 109941.
(2)Zhao T.T.*, Ren L.J.*, Chen X.J.*, Yu H.X., Liu C.J., Shen Y. Shi W.Q., Tang D., Du G.J., Li Y.F., Cheng Z.K. The OsRR24/LEPTO1 type-B response regulator is essential for the organization of leptotene chromosomes in rice meiosis. Plant Cell, 2018, 30(12): 3024-3037. (*共同一作)
(3)Ren L.J., Tang D., Zhao T.T., Zhang F.F., Liu C.Z., Xue Z.H., Shi W.Q., Du G.J., Shen Y., Li Y.F., Cheng Z.K. OsSPL regulates meiotic fate acquisition in rice. New phytologist, 2018, 218(2): 789-803.
(4)Ren L.J., Zhao T.T., Zhang L., Du G.J., Shen Y., Tang D., Li Y.F., Luo Q. Cheng Z.K. Defective Microspore Development 1 is required for microspore cell integrity and pollen wall formation in rice. Plant journal, 2020, 103: 1446-1459.
(5)Zhao T.T.*, Ren L.J.*, Zhao Y.Z.*, You H.L., Zhou Y., Tang D., Du G.J., Shen Y., Li Y.F., Cheng Z.K. Reproductive cells and peripheral parietal cells collaboratively participate in meiotic fate acquisition in rice anthers. Plant journal, 2021, 108(3): 661-671. (*共同一作)
(6)Fan Y.G., Zhao T.T., Xiang Q.Z., Han X.Y., Yang S.S., Zhang L.X.#, Ren L.J.# Multi-omics research accelerates the clarification of the formation mechanism and the influence of leaf color variation in tea (Camellia sinensis) Plants. Plants, 2024, 13: 426.(#通訊作者)
(7)Tian Z.S., Wang X.F., Dun X.L. Zhao K.Q., Wang H.Z.#, Ren L.J.# An integrated QTL mapping and transcriptome sequencing provides further molecular insights and candidate genes for stem strength in rapeseed (Brassica napus L.). Theoretical and applied genetics, 2024, 137: 38. (#通訊作者)
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