Page 139 - 《广西植物》2025年第12期
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12 期           汪弋碧等: 不同土壤条件对帕米尔报春花色多态的影响以及转录组学分析                                          2 2 8 1

            et al.ꎬ 2020)ꎻ在拟南芥中ꎬAtHY5 与 AtMYBD 启动              CHEN Cꎬ CHEN Hꎬ NI Mꎬ et al.ꎬ 2021. A study on petal
            子结合ꎬ可抑制 AtMYBL2 的表达ꎬ促进花青素积累                          morphological and physiological characteristics of Styrax
            (Liu et al.ꎬ 2021)ꎮ 综上表明ꎬ转录因子家族在花                    japonicus during the flowering period [ J ]. Agronomyꎬ
                                                                 11(8): 1498-1510.
            色形成和分化中发挥着重要作用ꎮ
                                                               DEMURTAS OCꎬ SULLI Mꎬ FERRANTE Pꎬ et al.ꎬ 2023.
            4  结论                                                Production  of  saffron  apocarotenoids  in  Nicotiana
                                                                 benthamiana plants genome ̄edited to accumulate zeaxanthin
                                                                 precursor [J]. Metabolitesꎬ 13(6): 729-741.
                 本研究整合土壤环境因子与转录组学数据ꎬ
                                                               ERICKSON MFꎬ PESSOA DMAꎬ 2022. Determining factors of
            初步揭示了帕米尔报春花色多态性的形成机制及                                flower  coloration  [ J ].  Acta  Botanica  Brasilicaꎬ
            其环境适应性策略ꎮ 土壤水分与矿物质元素是驱                               36: e2021abb0299.
            动花色分化的关键环境因素ꎬ高水分、低矿物质元                             GARDINER CECꎬ GLENNON KLꎬ 2019. Examining the
            素条件促使白色 / 浅白色表型形成ꎬ而低水分、高                             polymorphic nature of flower color in a drakensberg near ̄
            矿物质元素的干旱环境有助于促进紫色 / 浅紫色                              endemic speciesꎬ Rhodohypoxis baurii ( Baker) Nel. var.
            表型表达ꎻ苯丙烷代谢途径和类胡萝卜素合成通                                confecta Hilliard & Burtt [J]. International Journal of Plant
                                                                 Sciencesꎬ 180(9): 965-973.
            路的协同调控可能是花色差异的核心分子机制ꎻ
                                                               HOU ZHꎬ WANG SPꎬ WEI SDꎬ et al.ꎬ 2017. Anthocyanin
            类胡萝卜素途径可能在白色和浅白色花形成中具
                                                                 biosynthesis and regulation in plants[J]. Guihaiaꎬ 37(12):
            有关键作用ꎻ而苯丙素途径可能在紫色和浅紫色
                                                                 1603-1613. [侯泽豪ꎬ 王书平ꎬ 魏淑东ꎬ 等ꎬ 2017. 植物花
            花的形成过程中具有重要作用ꎮ MYB ̄bHLH 转录
                                                                 青素 生 物 合 成 与 调 控 的 研 究 进 展 [ J]. 广 西 植 物ꎬ
            因子复合体可能通过激活花青素合成晚期的基因                                37(12): 1603-1613.]
            显著影响紫色表型形成ꎻ WRKY 与 ZIP 家族基因                        ITO Kꎬ SUZUKI MFꎬ MOCHIZUKI Kꎬ 2021. Evolution of
            在紫色和白色花花冠对比中的表达缺失可能通过                                honest reward signal in flowers [J]. Proceedings of the Royal
            抑制金属离子转运参与花色调控ꎬ以上结果还需                                Society Bꎬ 288(1943): 2848-2857.
                                                               JAYAKUMAR Sꎬ ABHANGRAO AKꎬ SARJE RAꎬ et al.ꎬ
            在今后研究中进一步验证ꎮ
                                                                 2024. Critical analysis on effect of micronutrients on
                                                                 flowering plants: A review [ J]. International Journal of
            参考文献:                                                Plant & Soil Scienceꎬ 36(6): 776-782.
                                                               JIA LDꎬ WANG JSꎬ WANG Rꎬ et al.ꎬ 2021. Comparative
            ABDULSALAMU Aꎬ ZHANG Kꎬ SULEIMAN Mꎬ 2024.            transcriptomic and metabolomic analyses of carotenoid
               Illustrated guide to higher plants of the Pamir Plateau in  biosynthesis reveal the basis of white petal color in Brassica
               China [ M ]. Beijing: China Agricultural Science and  napus [J]. Plantaꎬ 253: 8.
               Technology Press: 263. [艾沙江阿不都沙拉木ꎬ 张凯ꎬ        JIANG WBꎬ XU LLꎬ WENG MLꎬ et al.ꎬ 2009. Effects of
               买买提明苏来曼ꎬ 2024. 中国帕米尔高原高等植物图鉴                    environmental factors and exogenous chemicals on plant
               [M]. 北京: 中国农业科学技术出版社: 263.]                       anthocyanins [J]. Ecology and Environmental Sciencesꎬ 18
            AI Yꎬ ZHENG QDꎬ WANG MJꎬ et al.ꎬ 2023. Molecular     (4): 1546 - 1552. [ 姜 卫 兵ꎬ 徐 莉 莉ꎬ 翁 忙 玲ꎬ 等ꎬ
               mechanism of different flower color formation of Cymbidium  2009. 环境因子及外源化学物质对植物花色素苷的影响
               ensifolium [ J ]. Plant Molecular Biologyꎬ 113(4/ 5):  [J]. 生态环境学报ꎬ 18(4): 1546-1552.]
               193-204.                                        LI Cꎬ SUN Yꎬ ZHAO Dꎬ et al.ꎬ 2015. Relationship between
            CARLSON JEꎬ HOLSINGER KEꎬ 2013. Direct and indirect  major mineral nutrient elements contents and flower colors of
               selection on floral pigmentation by pollinators and seed  Herbaceous peony (Paeonia lactiflora Pall.) [ J]. Advance
               predators in a color polymorphic South African shrub  Journal of Food Science and Technologyꎬ 7(5): 374-382.
               [J]. Oecologiaꎬ 171(4): 905-919.                LI HQꎬ DU Cꎬ WANG Jꎬ et al.ꎬ 2025. Molecular mechanism of
            CUI XLꎬ QIN Xꎬ LIU YBꎬ et al.ꎬ 2022. Analysis of flavonoid  the colour spot formation in Paeonia delavayi [J]. Guihaiaꎬ
               metabolism during the process of petal discoloration in three  45(4): 628-640. [李海清ꎬ 杜春ꎬ 王娟ꎬ 等ꎬ 2025. 滇牡
               Malus crabapple cultivars [J]. Advanced Materialsꎬ 7(42):  丹花瓣色斑形成的分子机制研究 [J]. 广西植物ꎬ 45(4):
               37304-37314.                                      628-640.]
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