Page 110 - 《广西植物》2025年第1期
P. 110

1 0 6                                  广  西  植  物                                         45 卷
            JIANG Qꎬ 2019. Genomic analysis and response factors under  ROZEN Sꎬ SKALETSKY Hꎬ 2000. Primer3 on the WWW for
               abiotic stress in Oenanthe javanica [D]. Nanjing: Nanjing  general users  and  for  biologist  programmers  [ J ].
               Agricultral University. [蒋倩ꎬ 2019. 水芹基因组研究及非      Bioinformatics Methods and Protocolsꎬ 132: 365-86.
               生物胁迫下的响应因子分析 [D]. 南京: 南京农业大学.]                  SAPETA Hꎬ YOKONO Mꎬ TAKABAYASHI Aꎬ et al.ꎬ
            LI Hꎬ FENG YHꎬ TANG SSꎬ et al.ꎬ 2023. Development and  2023. Reversible down ̄regulation of photosystems I and II
               validity evaluation of Liquidambar formosana EST ̄SSR  leads to fast photosynthesis recovery after long ̄term drought
               primers based on transcriptome sequencing [J]. Guihaiaꎬ 43  in Jatropha curcas [ J]. Journal of Experimental Botonyꎬ
               (2): 327-335. [李辉ꎬ 冯源恒ꎬ 唐生森ꎬ 等ꎬ 2023. 基于          74(1): 336-351.
               转录组测序的枫香 EST ̄SSR 引物开发及有效性评价                     SHEN Nꎬ WANG TFꎬ GAN Qꎬ et al.ꎬ 2022. Plant flavonoids:
               [J]. 广西植物ꎬ 43(2): 327-335.]                       Classificationꎬ distributionꎬ biosynthesisꎬ and antioxidant
            LIU Qꎬ 2014. Research on genetic diversity of Anemone  activity [J]. Food Chemistryꎬ 383: 132531.
               shikokiana [ D]. Jinan: Shandong Normal University. [ 刘  SUN HNꎬ LIU DYꎬ LI MYꎬ et al.ꎬ 2024. Transcriptome data
               琼ꎬ 2014. 山东银莲花的遗传多样性研究 [D]. 济南: 山                 analysis of Coreopsis tinctoria based on high ̄throughput
               东师范大学.]                                           sequencing [J]. Molecular Plant Breedingꎬ 22(20): 6683-
            LOU YFꎬ GAN Rꎬ ZHU CLꎬ et al.ꎬ 2022. Development and  6697. [孙浩男ꎬ 刘冬云ꎬ 李明阳ꎬ 等ꎬ 2024. 基于高通量
               application of EST ̄SSR markers based on transcriptome of  测序的两色金鸡菊转录组数据分析 [J]. 分子植物育种ꎬ
               Phyllostachys vivax McClure f. aureocaulis N. X. Ma  22(20): 6683-6697.]
               [J]. Plant Science Journalꎬ 40(3): 355-364. [娄永峰ꎬ 甘  TEMNYKH Sꎬ DECLERCK Gꎬ LUKASHOVA Aꎬ 2001.
               然ꎬ 朱成磊ꎬ 等ꎬ 2022. 黄秆乌哺鸡竹转录组 EST ̄SSR 分              Computational and experimental analysis of microsatellites in
               子标 记 开 发 与 应 用 [ J]. 植 物 科 学 学 报ꎬ 40(3):          rice ( Oryza sativa L.): Frequencyꎬ length variationꎬ
              355-364.]                                          transposon associationsꎬ and genetic marker potential
            LU YHꎬ YU FBꎬ GUO JHꎬ et al.ꎬ 2021. Analysis of      [J]. Genome Researchꎬ 11(8): 1441-1452.
               transcriptomic differences between winged and wingless bird  TIAN HZꎬ GUO Hꎬ TIAN Hꎬ et al.ꎬ 2023. Transcriptome
               cherry ̄oat aphid Rhopalosiphum padi on wheat [J]. Journal of  characteristics analysis and EST ̄SSR marker development of
               Plant Protectionꎬ 48(6): 1303-1309. [鲁艳辉ꎬ 虞飞博ꎬ 郭  capsicum annuum under waterlogging stress [J]. Guihaiaꎬ 43
               嘉雯ꎬ 等ꎬ 2021. 有翅型和无翅型小麦禾谷缢管蚜转录组差                   (11): 2052-2064. [田怀志ꎬ 郭豪ꎬ 田浩ꎬ 等ꎬ 2023. 水涝
               异分析 [J]. 植物保护学报ꎬ 48(6): 1303-1309.]               胁迫 下 辣 椒 转 录 组 特 征 分 析 及 EST ̄SSR 标 记 开 发
            LUCINSK Rꎬ JACKOWSKI Gꎬ 2006. The structureꎬ functions  [J]. 广西植物ꎬ 43(11): 2052-2064.]
               and degradation of pigment ̄binding proteins of Photosystem II  WANG YFꎬ ZHU RJꎬ CHENG XPꎬ 2023. Research on
               [J]. Acta Biochimica Polonicaꎬ 53 (4): 693-708.   phenotypic plasticity of different diameter class Bombax ceiba
            LU TTꎬ LU GJꎬ FAN DLꎬ et al.ꎬ 2010. Function annotation of  in heterogeneous habitats [J]. Ecological Scienceꎬ 42(3):
               the rice transcriptome at single ̄nucleotide resolution by  61-66. [王妍方ꎬ 朱润军ꎬ 程希平ꎬ 2023. 异质生境下不
               RNA ̄Seq [J]. Genome Researchꎬ 20(9): 1238-1249.   同径级木棉的表型可塑性研究 [J]. 生态科学ꎬ 42(3):
            MANFRED Gꎬ BRIAN Jꎬ MORAN Yꎬ et al.ꎬ 2011. Trinity:  61-66.]
               reconstructing a full ̄length transcriptome without a genome  WANG YHꎬ 2020. Identification and expression profiling of Lhc
               from  RNA ̄Seq  data  [ J ].  Nature  Biotechnologyꎬ  genes in Ramie [ D ]. Wuhan: Huazhong Agricultural
              29(7): 644.                                        University. [王云鹤ꎬ 2020. 苎麻 Lhc 基因的鉴定和表达模
            MOZZO Mꎬ MANTELLI Mꎬ PASSARINI Fꎬ et al.ꎬ 2010.      式研究 [D]. 武汉: 华中农业大学.]
               Functional  analysis  of  Photosystem  I  light ̄harvesting  WANG Zꎬ PANG YJꎬ LIU CLꎬ et al.ꎬ 2014. Distribution
               complexes ( Lhca )  gene products of Chlamydomonas  pattern and analysis of influencing factors of rare plant
               reinhardtii [ J ]. Biochimic Biophysica Actaꎬ 1797(2):  Anemone shikokiana ( Makino) Makino [ J]. Bulletin of
              212-221.                                           Botanical Researchꎬ 34(4): 440-445. [王鸷ꎬ 逄玉娟ꎬ 刘
            PANG YJꎬ LI LXꎬ BIAN FHꎬ 2020. Photosynthetic and    传 林ꎬ 等ꎬ 2014. 稀 有 植 物 山 东 银 莲 花 ( Anemone
               ultrastructural adaptability of Anemone shikokiana leaves to  shikokiana (Makino) Makino)的分布格局及影响因子分析
               heterogeneous habitats [J]. Brazilian Journal of Botanyꎬ 43:  [J]. 植物研究ꎬ 34(4): 440-445.]
              979-988.                                         WEI CBꎬ GU Wꎬ TIAN Rꎬ et al.ꎬ 2022. Transcriptomic data
            PANG YJꎬ SUN Wꎬ WANG XSꎬ et al.ꎬ 2022. Influence of soil  analysis of Alisma orientale tubers grew in different ecological
               heterogeneity on root structure of Anemone shikokiana  environments by high ̄throughput sequencing [ J]. Modern
               [J]. Journal of Yantai Universityꎬ 35(1): 28-34. [逄玉娟ꎬ  Chinese Medicineꎬ 24(12): 2342-2349. [韦陈彬ꎬ 谷巍ꎬ
               孙维ꎬ 王行松ꎬ 等ꎬ 2022. 土壤异质性对山东银莲花根结                   田荣ꎬ 等ꎬ 2022. 基于高通量测序的不同生态环境东方泽
               构的影响 [J]. 烟台大学学报ꎬ 35(1): 28-34.]                  泻块 茎 转 录 组 分 析 [ J]. 中 国 现 代 中 药ꎬ 24(12):
   105   106   107   108   109   110   111   112   113   114   115