Page 46 - 《广西植物》2025年第7期
P. 46

1 2 3 8                                广  西  植  物                                         45 卷
            box 蛋白 AtPP2 ̄B11 转基因植株通过介导抗逆蛋                         涛ꎬ 等ꎬ 2020. 转 MsLEA4 ̄4 基因拟南芥株系的耐盐性分
            白 AtLEA14 降解来增强其对干旱和盐胁迫的敏感                            析 [J]. 草地学报ꎬ 28(3): 597-605.]
                                                               JIA XYꎬ REN LGꎬ CHEN QJꎬ et al.ꎬ 2009. UV ̄B ̄responsive
            性ꎬ 在抗干旱胁迫中起到负调控作用( Li et al.ꎬ
                                                                  microRNAs in Populus tremula [ J ]. Journal of Plant
            2014)ꎮ 本研究通过靶基因预测分析 Tae ̄miR167c
                                                                  Physiologyꎬ 166(18): 2046-2057.
            可能通过靶向调控下游负调控 F ̄box 蛋白ꎬ从而增                         JODDER Jꎬ DAS Rꎬ SARKAR Dꎬ et al.ꎬ 2018. Distinct
            强了转基因株系的抗旱性ꎬ但是对 miR167c 的靶                            transcriptional and processing regulations control miR167a
            基因预测分析需要进一步实验验证ꎬ具体调控机                                 level in tomato during stress [ J]. RNA Biologyꎬ 15(1):
                                                                 130-143.
            制还有待深入研究ꎮ
                                                               LI CHꎬ YIN ZJꎬ LIU YDꎬ et al.ꎬ 2009. Differential expression
                 本研究系统鉴定了小麦 Tae ̄miR167 家族ꎬ成                       of miRNA in different salt ̄tolerant cotton varieties under salt
            熟体 Tae ̄miR167c 在干旱胁迫下显著上调ꎬ过表达                         stress [J]. Shandong Agricultural Sciencesꎬ 49(7): 12 -
            Tae ̄miR167c 的拟南芥在渗透胁迫下发芽率和根                           17. [李春贺ꎬ 阴祖军ꎬ 刘玉栋ꎬ 等ꎬ 2009. 盐胁迫条件下
                                                                  不同耐盐棉花 miRNA 差异表达研究 [J]. 山东农业科
            长显著增大ꎬ转基因株系对干旱胁迫耐受性增强ꎮ
                                                                  学ꎬ 49(7): 12-17.]
            本研究结果丰富了小麦 Tae ̄miR167 的功能研究ꎬ
                                                               LI RXꎬ ZHAO WGꎬ ZHANG YPꎬ et al.ꎬ 2020. Research
            可为小麦种质创新提供新的基因资源ꎮ                                     progress on microRNAs in plant [J]. Science of Sericultureꎬ
                                                                 46( 2): 239 - 247. [ 李 瑞 雪ꎬ 赵 卫 国ꎬ 章 玉 萍ꎬ 等ꎬ
                                                                 2020. 植 物 MicroRNA 的 研 究 进 展 [ J]. 蚕 业 科 学ꎬ
            参考文献:                                                46(2): 239-247.]
                                                               LI XYꎬ CUI Jꎬ LI JLꎬ et al.ꎬ 2019. Research status of miRNA
            AN Jꎬ LI QXꎬ YANG JJꎬ et al.ꎬ 2019. Wheat F ̄box protein  regulating plant stress resistance [J]. Jiangsu Agricultural
               TaFBA1 positively regulates plant drought tolerance but  Sciencesꎬ 47(21): 63-66. [李昕晏ꎬ 崔杰ꎬ 李俊良ꎬ 等ꎬ
               negatively regulates stomatal closure [J]. Frontiers in Plant  2019. miRNA 调控植物抗逆机制的研究现状 [J]. 江苏
               Scienceꎬ 10(1): 1242.                              农业科学ꎬ 47(21): 63-66.]
            CAI Hꎬ YANG CXꎬ LIU SAꎬ et al.ꎬ 2019. MiRNA ̄target pairs  LI Yꎬ ZANG Lꎬ LI DKꎬ et al.ꎬ 2016. The Arabidopsis F ̄box E3
               regulate adventitious rooting in Populus: a functional role for  ligase RIFP1 plays a negative role in abscisic acid signalling
               miR167a and its target auxin response factor 8 [J]. Tree  by facilitating ABA receptor RCAR3 degradation [J]. Plant
               Physiologyꎬ 39(11): 1922-1936.                     Cell and Environmentꎬ 39(3): 571-582.
            CHANG YNꎬ    WANG   PTꎬ  WU   YJꎬ  et  al.ꎬ  2019.  LI YZꎬ JIA FJꎬ YU YLꎬ et al.ꎬ 2014. The SCF E3 ligase
               Characterization and expression patterns of microRNA167e  AtPP2 ̄B11 plays a negative role in response to drought
               in wheat [J]. Journal of Triticeae Cropsꎬ 39(8): 887 -  stress in Arabidopsis [J]. Plant Molecular Biology Reporterꎬ
               894. [ 常 亚 南ꎬ 王 瀑 童ꎬ 吴 玉 杰ꎬ 等ꎬ 2019. 小 麦          32(5): 943-956.
               microRNA167e 的特征及表达模式分析 [J]. 麦类作物学              LIU Hꎬ ABLE AJꎬ ABLE JAꎬ 2016. Smarter de ̄stressed cereal
               报ꎬ 39(8): 887-894.]                                breeding [J]. Trends in Plant Scienceꎬ 21(11): 909-925.
            FILECCIA Vꎬ INGRAFFIA Rꎬ AMATO Gꎬ et al.ꎬ 2019.    LIU Hꎬ JIA SHꎬ SHEN DFꎬ et al.ꎬ 2012. Four auxin response
               Identification of microRNAS differentially regulated by water  factor genes downregulated by microRNA167 are associated
               deficit in relation to mycorrhizal treatment in wheat  with growth and development in Oryza sativa [ J ].
               [J]. Molecular Biology Reportsꎬ 46(6): 5163-5174.  Functional Plant Biologyꎬ 39(9): 736-744.
            HU Wꎬ HUANG Cꎬ DENG XMꎬ et al.ꎬ 2013. TaASR1ꎬ a    LIU Xꎬ HUANG Sꎬ XIE HTꎬ 2021. Advances in the regulation
               transcription factor gene in wheatꎬ confers drought stress  of plant development and stress response by miR167
               tolerance  in  transgenic  tobacco  [ J ].  Plant  Cell  [J]. Frontiers in Bioscience (Landmark Edition)ꎬ 26(9):
               Environmentꎬ 36(8): 1449-1464.                    655-665.
            HUANG JJꎬ LIU WWꎬ GUO YRꎬ et al.ꎬ 2019. Research   MA YLꎬ ZHU Hꎬ WANG Pꎬ 2016. Effects of water stress on the
               progress of  microRNA in plant  development  [ J ].  electrical conductivity and relative water content of leaves of
               Biotechnology Bulletinꎬ 35(11): 141-149. [黄俊骏ꎬ 刘文  3 jujube varieties [J]. Forestry Science & Technologyꎬ 41
               文ꎬ 郭亚如ꎬ 等ꎬ 2019. microRNA 在植物生长发育中的                (6): 15-17. [马艳丽ꎬ 朱虹ꎬ 王鹏ꎬ 2016. 水分胁迫对 3
               研究进展 [J]. 生物技术通报ꎬ 35(11): 141-149.]                个枣品种电导率和叶片相对含水量的影响 [J]. 林业科
            JIA HLꎬ WAMG XMꎬ GAO Tꎬ et al.ꎬ 2020. Characterization of  技ꎬ 41(6): 15-17.]
               the salt tolerance of transgenic Arabidopsis thaliana  MENG JGꎬ ZHANG XDꎬ TAN SKꎬ et al.ꎬ 2017. Genome ̄wide
               overexpression of MsLEA4 ̄4 from Medicago sativa [J]. Acta  identification of Cd ̄responsive NRAMP transporter genes
               Agrestia Sinicaꎬ 28(3): 597-605. [贾会丽ꎬ 王学敏ꎬ 高      and analyzing expression of NRAMP 1 mediated by miR167
   41   42   43   44   45   46   47   48   49   50   51