Page 157 - 《广西植物》2025年第4期
P. 157

4 期             刘夔等: 基于 EST ̄SSR 的钟花樱与近缘种的聚类分析及嫁接亲和性研究                                       7 7 1

               Resources and Crop Evolutionꎬ 52(7): 903-909.     resources  based  on  transcriptome  sequences  [ J ].
            CHEN Zꎬ 2007. Several factors affecting the graft survival rate  Horticulturaeꎬ 10(2): 121.
               of Cerasus campanulata [J]. Journal of Fujian Agriculture  LIU LLꎬ LIU RMꎬ LIU Yꎬ et al.ꎬ 2024. Genetic relationship
               and Forestry University (Natural Science Edition)ꎬ 36(6):  analysis of 12 Cerasus spp. germplasms based on ISSR
               581-584. [陈璋ꎬ 2007. 影响福建山樱花嫁接成活率的若                marker [ J]. Molecular Plant Breedingꎬ 22 (10): 3247 -
               干因素 [J]. 福建农林大学学报(自然科学版)ꎬ 36(6):                  3252. [刘丽丽ꎬ 刘汝明ꎬ 刘燕ꎬ 等ꎬ 2024. 基于 ISSR 标记
               581-584.]                                         的 12 份樱花种质亲缘关系分析 [J]. 分子植物育种ꎬ
            CONG Rꎬ ZHANG KWꎬ YI XGꎬ et al.ꎬ 2020. Construction of  22(10): 3247-3252.]
               DNA fingerprinting with SSR markers for 201 Kangding  LOU YFꎬ GAN Rꎬ ZHU CLꎬ et al.ꎬ 2022. Development and
               cherry ( Cerasus tatsienensis ) accessions [ J]. Molecular  application of EST ̄SSR markers based on transcriptome of
               Plant Breedingꎬ 18(20): 6776-6784. [从睿ꎬ 张开文ꎬ 伊    Phyllostachys vivax McClure f. aureocaulis N. X. Ma [ J].
               贤贵ꎬ 等ꎬ 2020. 基于 SSR 标记的 201 份康定樱桃种质资              Plant Science Journalꎬ 40(3): 355-364. [娄永峰ꎬ 甘然ꎬ
               源 DNA 指纹图谱构建 [J]. 分子植物育种ꎬ 18(20):                 朱成磊ꎬ 等ꎬ 2022. 黄秆乌哺鸡竹转录组 EST ̄SSR 分子标
               6776 ̄6784.]                                       记开发与应用 [J]. 植物科学学报ꎬ 40(3): 355-364.]
            HE HLꎬ CAI YLꎬ GAO TXꎬ et al.ꎬ 2015. SSR evaluation of  LU RHꎬ XU LXꎬ ZHOU XXꎬ et al.ꎬ 2022. Effects of flooding
               genetic diversity of seven wild Prunus tomentosa populations  stress on the growth and photosynthetic characteristics of
               in Shaanxi [ J]. Journal of Northwest A & F University  cherry blossom seedlings in Fujian Province [J]. Journal of
               (Natural Science Edition)ꎬ 43(6): 193-198. [何恒流ꎬ 蔡  Jiangxi Agricultural Universityꎬ 44(4): 871-881. [陆日惠ꎬ
               宇良ꎬ 高天翔ꎬ 等ꎬ 2015. 陕西 7 个毛樱桃自然居群遗传                 徐力兴ꎬ 周晓星ꎬ 等ꎬ 2022. 淹水胁迫对福建山樱花幼苗
               多样性的 SSR 评价 [J]. 西北农林科技大学学报 (自然                   生长 和 光 合 特 性 的 影 响 [ J]. 江 西 农 业 大 学 学 报ꎬ
               科学版)ꎬ 43(6): 193-198.]                            44(4): 871-881.]
            HUANG BJꎬ LI XYꎬ ZENG ZJꎬ et al.ꎬ 2023. Study on seed  LÜ WTꎬ LOU WRꎬ LOU XMꎬ et al.ꎬ 2024. Identification of
               germination of Cerasus campanulata [ J ]. Forestry and  Hippeastrum rutilum germplasm resources based on EST ̄SSR
               Environmental Scienceꎬ 39(3): 106-111. [黄碧金ꎬ 黎新   markers [J]. Molecular Plant Breedingꎬ 22(10): 1123 -
               宇ꎬ 曾昭佳ꎬ 等ꎬ 2023. 钟花樱种子发芽研究 [J]. 林业与               1132. [吕文涛ꎬ 娄文睿ꎬ 娄晓鸣ꎬ 等ꎬ 2024. 基于 EST ̄
               环境科学ꎬ 39(3): 106-111.]                            SSR 标记的朱顶红种质资源鉴定 [J]. 分子植物育种ꎬ
            HUANG YPꎬ DING Yꎬ PAN HZꎬ et al.ꎬ 2022. Genetic      22(10): 1123-1132.]
               variation of growth trait and superior clone selection of  MARTINEZ LEꎬ CAVAGNARO PFꎬ MASUELLI RWꎬ et al.ꎬ
               Cerasus campanulata [J]. Journal of Fujian Forestry Science  2006. SSR ̄based assessment of genetic diversity in South
               and Technologyꎬ 49(2): 7-10. [黄云鹏ꎬ 丁珌ꎬ 潘惠忠ꎬ       American Vitis vinifera varieties [J]. Plant Scienceꎬ 170:
               等ꎬ 2022. 福建山樱花无性系生长性状遗传变异分析及                      1036-1044.

               选择 [J]. 福建林业科技ꎬ 49(2): 7-10.]                   SAHA MCꎬ MIAN MAꎬ EUJAYL Iꎬ et al.ꎬ 2004. Tall fescue
            LA RMꎬ KANTETY Rꎬ YU JKꎬ et al.ꎬ 2005. Nonrandom     EST ̄SSR marker with transferability across several grass
               distribution and frequencies of genomic and EST ̄derived  species [J]. Theoretical and Applied Geneticsꎬ 109 (4):
               microsatellite markers in riceꎬ wheatꎬ and barley [J]. BMC  783-791.
               Genomicsꎬ 6(1): 23.                             SHAHI ̄GHARAHLAR Aꎬ ZAMANI Zꎬ FATAHI Rꎬ et al.ꎬ
            LI CLꎬ BRUCE Bꎬ 2003. Flora of China: Vol. 9 [M]. Beijing:  2011. Estimation of genetic diversity in some Iranian wild
               Science Pressꎻ St. Louis: Missouri Botanical Garden Press:  Prunus subgenus Cerasus accessions using inter ̄simple
               404-420.                                          sequence repeat ( ISSR ) markers [ J ].  Biochemical
            LI SGꎬ GUAN Yꎬ LI XFꎬ et al.ꎬ 2022. Development and  Systematics and Ecologyꎬ 39(4/ 5/ 6): 826 ̄833.
               characterization of genome ̄SSR markers in flowering cherries  SINGH HCꎬ TIWARI Vꎬ TIWARI Aꎬ et al.ꎬ 2023.
               [J]. Molecular Plant Breedingꎬ 20(24): 8160-8169. [李  Development of EST ̄SSR markers in Bergenia ciliata using
               水根ꎬ 关媛ꎬ 李秀芬ꎬ 等ꎬ 2022. 观赏樱属植物基因组                   de novo transcriptome sequencing [ J]. Genomeꎬ 67(4):
               SSR 分子标记开发及鉴定 [J]. 分子植物育种ꎬ 20(24):                119-124.
               8160-8169.]                                     SUN ZSꎬ JIANG DYꎬ LIU XHꎬ et al.ꎬ 2023. Cluster analysis
            LIU Dꎬ YAN Fꎬ LIU Cꎬ et al.ꎬ 2024. Developing EST ̄SSR  and construction of DNA fingerprinting of 42 oriental
               markers for identifying and evaluating Asparagus germplasm  cultivars of flowering cherry based on SSR markers [J]. Acta
   152   153   154   155   156   157   158   159   160   161   162