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7 期                    张瑞菊等: 阔叶杨桐衍生胎座的发育特征 (五列木科)                                          9 0 7

   置发生而生长在花托顶端ꎬ从而形成第六轮衍生                                [J]. Plant Physiol Jꎬ 54(3): 355-362. [景丹龙ꎬ 郭启高ꎬ
                                                        陈薇薇ꎬ 等ꎬ 2018. 被子植物花器官发育的模型演变和分
   胎座ꎮ 由于心皮和胚珠发育受多种因素的影响ꎬ
   阔叶杨桐衍生胎座出现的机制需要今后通过分子                                子调控 [J]. 植物生理学报ꎬ 54(3): 355-362.]
                                                     LAM HJꎬ 1950. Stachyospory and phylospory as factors in the
   方面的研究来证实ꎮ
                                                        natural system of the cormophyta [ J]. Svensk Botanisk
                                                        Tidsriftꎬ 44 (4): 517-534.
   参考文献:                                             LI Mꎬ CHEN LBꎬ TIAN YPꎬ et al.ꎬ 2017. Digital gene
                                                        expression analysis of tea flowers without pistil at three
                                                        development stages [J]. J Tea Sciꎬ 37(1): 97-107. [李梅ꎬ
   APGꎬ 2009. An update of the Angiosperm Phylogeny Group
                                                        陈林波ꎬ 田易萍ꎬ 等ꎬ 2017. 雌蕊缺失茶树花 3 个发育期
     classification for the orders and families of flowering plants:
                                                        的数字基因表达谱分析 [ J]. 茶 叶 科 学ꎬ 37(1): 97
     APG III [J]. Bot J Linn Socꎬ 161: 105-121.
                                                        -107.]
   APGꎬ 2016. An update of the Angiosperm Phylogeny Group
                                                     LIN LGꎬ 1998. Floral Reipublicae Popularis Sinicae ( 50th
     classification for the orders and families of flowering plants:
                                                        volume 1st fascicule) [ M]. Beijing: Science Press: 1 -
     APG IV [J]. Bot J Linn Socꎬ 181: 1-20.
                                                        68. [林来官ꎬ 1998. 中国植物志 (50 卷 1 分册) [M]. 北
   CARIS Pꎬ DECRAENE LPRꎬ SMETS Eꎬ et al.ꎬ 2000. Floral
                                                        京: 科学出版社: 1-68.]
     development of three Maesa speciesꎬ with special emphasis
                                                     LIU XFꎬ 2009. Morphological study on the early floral develop ̄
     on the position of the genus within Primulales [J]. Ann Botꎬ
                                                        ment of 10 species in Caryophyllidae [D]. Xi’an: Shaanxi
     86: 87-97.
                                                        Normal University: 13 - 42. [ 刘 雪 飞ꎬ 2009. 石 竹 亚 纲
   CARLES CCꎬ LERTPIRIYAPONG Kꎬ REVILLE Kꎬ et al.ꎬ
                                                        (Caryophyllidae)10 种植物花发育形态学研究 [D]. 西
     2004.  The  ULTRAPETALAI  gene  functions  early
     inArabidopsis development to restrict shoot apical meristem  安: 陕西师范大学:13-42.]
                                                     MA OSWꎬ SAUNDERS RMKꎬ 2003. Comparative floral
     activity and acts through WUSCHEL to regulate floral
     meristem determinacy [J]. Geneticsꎬ 167(4): 1893-1903.  ontogeny of Maesa (Maesaceae)ꎬ Aegiceras (Myrsinaceae)
   CHEN Dꎬ WANG QFꎬ 2004. Pentamerous flowers in the genus  and Embelia ( Myrsinaceae): Taxonomic and phylogenetic
     Phytolacca have been derived from trimerous flowers—  implications [J]. Plant Sys Evolꎬ 243:39-58.
     New evidence from the floral organogenesis of Phytolacca do ̄  MA WLꎬ WANG YFꎬ LI HQꎬ 2009. Botany [ M]. Beijing:
     decandra [J]. Acta Phytotax Sinꎬ 42(4): 345-351. [陈丹ꎬ  Higher Education Press: 242. [马炜梁ꎬ 王幼芳ꎬ 李宏庆ꎬ
     王青锋ꎬ 2004. 商陆属中五基数花起源于三基数花的新证                      2009. 植物学 [M]. 北京: 高等教育出版社: 242.]
     据—非洲商陆的花器官发生 [J]. 植物分类学报ꎬ 42(4):                MENG YTꎬ HUANG XCꎬ HOU YTꎬ et al.ꎬ 2017. The floral
     345-351.]                                          morphology and the ABCDE model  of  floral  organ
                                                        development [J]. J Biolꎬ 34(6): 105-107. [孟雨婷ꎬ 黄晓
   CHENG ZPꎬ 2012. Function analysis of MS1522 gene involved
     in Arabidopsis carpel development and genetic mapping of  晨ꎬ 侯元同ꎬ 等ꎬ 2017. 花的形态与花发育的 ABCDE 模
     Arabidopsis male sterile mutant ems1227 [ D]. Shanghai:  型 [J]. 生物学杂志ꎬ 34(6): 105-107.]
     Shanghai Normal University. [成志鹏ꎬ 2012. 拟南芥心皮发  MULLER Rꎬ BLECKMANN Aꎬ SIMON Rꎬ 2008. The receptor
     育基因 MS1522 的功能分析及雄性不育突变体 ems1227                   kinase CORYNE  of  Arabidopsis  transmits  the  stem
     的基因定位 [D]. 上海: 上海师范大学.]                            cell ̄limiting signal CLAVATA3 independently of clavata1
   CONG Nꎬ CHENG ZJꎬ WAN JMꎬ 2007. The ABCDE model of   [J]. Plant Cellꎬ 20: 934-946.
     floral organ development [J]. Chin Agric Sci Bullꎬ 23(7):  PIETERLꎬ CARIS KPꎬ GEUTEN SBJꎬ et al.ꎬ 2006. Floral de ̄
     124-128. [丛楠ꎬ 程治军ꎬ 万建民ꎬ 2007. 控制花器官发育              velopment in three species of Impatiens ( Balsaminaceae)
     的 ABCDE 模型 [J]. 中国农学通报ꎬ 23(7): 124-128.]           [J]. Am J Botꎬ 93: 1-14.
   EAMES AJꎬ 1961. Morphology of the angiosperms [M]. New  PIETER LCꎬ ERIK FSꎬ 2004. Afloral ontogenetic study on the
     York: Mc Graw ̄Hill: 185-289.                       sister group relationship between the genus Samolus
   GRAINGER Jꎬ BECKER Pꎬ 2001. Sexual dimorphism and func ̄  (Primulaceae) and the Theophrastsceae [J]. Am J Botꎬ 91
     tional dioecy in Maesa perlarius and M. japonica (Maesaceae/  (5): 627-643.
     Myrsinaceae) [J]. Biotropicaꎬ 33(2): 368-374.   SCHONENBERGER Jꎬ GRENHAGEN Aꎬ 2005. Early floral
   JING DLꎬ GUO QGꎬ CHEN WWꎬ et al.ꎬ 2018. Model evolution  development and androecium organization in Fouquieriaceae
     and molecular mechanism of angiosperm flower development  (Ericales) [J]. Plant Syst Evolꎬ 254: 233-249.
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