我国果树种质资源研究进展与展望
Progress and Prospect of Fruit Crop Germplasm Research in China
果树在农业生产中占有举足轻重的地位,是践行大食物观的重要组成部分,而种质资源是果树育种的物质基础、农业生产的源头,也是发展现代农业、保障国家粮食安全的根本;在国家实施“种业振兴行动”的大背景下,系统梳理果树种质资源研究现状并前瞻未来发展方向,对实现种业科技自立自强、种源自主可控具有重要意义。本文总结了我国在果树种质资源收集、保存、评价及利用等方面取得的重要进展,分析了存在的主要问题并展望了发展方向。研究发现,近年来,我国果树种质资源研究取得长足进展,但与发达国家相比,在种质资源收集、资源创新利用、信息平台建设、资源共享、资源脱毒等方面仍有较大差距。为此建议,加强国内外种质资源收集工作,重视种质资源精准鉴定、优异基因发掘及种质创新等系统性工作,建设国家种质资源信息平台、完善种质资源共享机制,加快无病毒种质资源库建设并重视保存和共享,更好支撑果树产业高质量发展。
The fruit crop industry plays an important role in agricultural production and rural development in China. Germplasm is the basis both for the industry and for breeding. In the context of seed industry revitalization, it is of great significance to systematically assess the current progress in fruit crop germplasm and look forward to its future development, thus to help realize the goal of self-reliance and self-control of seed sources in the seed industry. This study summarizes the significant progress made in fruit crop germplasm research in China from the aspects of collection, preservation, evaluation, and utilization, analyzes the main problems, and looks forward to future development directions. A great progress has been achieved, but compared with developed countries, there still exists a considerable gap in the areas of collection, innovative utilization, information database construction, germplasm sharing, and virus-free germplasm preservation. In this regard, it is recommended to strengthen the collection of fruit crop germplasm both domestically and internationally; prioritize systematic efforts in precise germplasm identification, discovery of superior genes, and germplasm innovation; build a national information platform for germplasm; improve the mechanism of germplasm sharing; accelerate the development of virus-free germplasm resource centers; and prioritize their preservation and sharing. These measures will better support the high-quality development of China’s fruit crop industry.
fruit crop / germplasm / collection / preservation / evaluation / utilization
| [1] |
崔致学. 中国猕猴桃 [M]. 济南: 山东科学技术出版社, 1993. |
| [2] |
Cui Z X. Actinidia in China [M]. Jinan: Shandong Science and Technology Press, 1993. |
| [3] |
曲泽洲, 王永蕙. 中国果树志: 枣卷 [M]. 北京: 中国林业出版社, 1993. |
| [4] |
Qu Z Z, Wang Y H. Chinese fruit trees record: Chinese jujube [M]. Beijing: China Forestry Publishing House, 1993. |
| [5] |
邓秀新, 彭抒昂. 柑橘学 [M]. 北京: 中国农业出版社, 2013. |
| [6] |
Deng X X, Peng S A. Citrus science [M]. Beijing: China Agriculture Press, 2013. |
| [7] |
国家统计局. 中国统计年鉴2024 [M]. 北京: 中国统计出版社, 2024. |
| [8] |
National Bureau of Statistics. China statistical yearbook 2024 [M]. Beijing: China Statistics Press, 2024. |
| [9] |
王宇霖. 四十年来我国果树科技的回顾与展望 [J]. 果树科学, 1989, 6(3): 129‒136. |
| [10] |
Wang Y L. The retrospect of Chinese fruit science and technique of the past forty years and its prospect [J]. Journal of Fruit Science, 1989, 6(3): 129‒136. |
| [11] |
石荫坪, 王强生. 中国落叶果树育种五十年 [J]. 落叶果树, 1999, 31(4): 1‒5. |
| [12] |
Shi Y P, Wang Q S. Fifty years of deciduous fruit tree breeding in China [J]. Deciduous Fruits, 1999, 31(4): 1‒5. |
| [13] |
刘旭, 李立会, 黎裕, 作物种质资源研究回顾与发展趋势 [J]. 农学学报, 2018, 8(1): 1‒6. |
| [14] |
Liu X, Li L H, Li Y, et al. Crop germplasm resources: Advances and trends [J]. Journal of Agriculture, 2018, 8(1): 1‒6. |
| [15] |
孙好勤. 基于品种创新的中国种业强国目标的实施 [J]. 农学学报, 2019, 9(3): 11‒15. |
| [16] |
Sun H Q. Innovation strengthens seed industry in China [J]. Journal of Agriculture, 2019, 9(3): 11‒15. |
| [17] |
黄金松, 许秀淡, 郑少泉. 特早熟大果型枇杷新品种——早钟6号 [J]. 中国果树, 1993 (4): 4‒6. |
| [18] |
Huang J S, Xu X D, Zheng S Q. Zaozhong 6, a new loquat variety with super early maturity and big fruit [J]. China Fruits, 1993 (4): 4‒6. |
| [19] |
樊秀彩, 刘崇怀, 孙海生, 葡萄品种莎巴珍珠及其衍生品种的演化和遗传多样性分析 [J]. 植物遗传资源学报, 2010, 11(5): 625‒628. |
| [20] |
Fan X C, Liu C H, Sun H S, et al. The evolution and genetic diversity analysis of pearl of csaba and its derived varieties [J]. Journal of Plant Genetic Resources, 2010, 11(5): 625‒628. |
| [21] |
俞明亮. 中国桃新品种选育研究进展 [J]. 落叶果树, 2024, 56(3): 1‒5. |
| [22] |
Yu M L. Progress of peach breeding in China [J]. Deciduous Fruits, 2024, 56(3): 1‒5. |
| [23] |
黎盛臣, 文丽珠, 张凤琴, 抗寒抗病葡萄新品种——北醇 [J]. 植物学通报, 1983, 18(2): 28‒30. |
| [24] |
Li S C, Wen L Z, Zhang F Q, et al. A new grape variety with cold resistance and disease resistance—Beichun [J]. Chinese Bulletin of Botany, 1983, 18(2): 28‒30. |
| [25] |
王汝谦, 董启凤, 潘建裕. 我国果树品种资源科研工作的进展与成就 [J]. 中国果树, 1989 (2): 1‒5. |
| [26] |
Wang R Q, Dong Q F, Pan J Y. Progress and achievements of scientific research on fruit tree variety resources in China [J]. China Fruits, 1989 (2): 1‒5. |
| [27] |
中国农业科学院郑州果树研究所. 国家园艺种质资源库 [EB/OL]. (2019-08-30)[2025-06-10]. https://www.zzgss.cn/tjpt/gjjzwzzkp/203291.htm. |
| [28] |
Zhengzhou Fruit Research Institute, Chinese Academy of Agricultural Sciences. National horticulture germplasm resources center [EB/OL]. (2019-08-30)[2025-06-10]. https://www.zzgss.cn/tjpt/gjjzwzzkp/203291.htm. |
| [29] |
姜建福, 李川, 战非, 葡萄种质资源数据库系统的构建 [J]. 山东农业科学, 2015, 47(1): 119‒123. |
| [30] |
Jiang J F, Li C, Zhan F, et al. Construction of grape germplasm resources database system [J]. Shandong Agricultural Sciences, 2015, 47(1): 119‒123. |
| [31] |
郑晓明, 陈宝雄, 宋玥, 作物野生近缘种的原生境保护 [J]. 植物遗传资源学报, 2019, 20(5): 1103‒1109. |
| [32] |
Zheng X M, Chen B X, Song Y, et al. In-situ conservation of wild relatives of crops [J]. Journal of Plant Genetic Resources, 2019, 20(5): 1103‒1109. |
| [33] |
邓秀新. 中国柑橘育种60年回顾与展望 [J]. 园艺学报, 2022, 49(10): 2063‒2074. |
| [34] |
Deng X X. A review and perspective for citrus breeding in China during the last six decades [J]. Acta Horticulturae Sinica, 2022, 49(10): 2063‒2074. |
| [35] |
白晓雪, 秦红艳, 韩先焱, 软枣猕猴桃休眠芽超低温保存技术研究 [J]. 果树学报, 2020, 37(8): 1247‒1255. |
| [36] |
Bai X X, Qin H Y, Han X Y, et al. Study on the cryopreservation of dormant buds by vitrification in Actinidia arguta 'Kuilü' [J]. Journal of Fruit Science, 2020, 37(8): 1247‒1255. |
| [37] |
关秋竹, 孙清荣, 孙洪雁, 苹果砧木离体茎尖小滴玻璃化超低温保存体系的优化 [J]. 植物生理学报, 2024, 60(5): 895‒903. |
| [38] |
Guan Q Z, Sun Q R, Sun H Y, et al. Droplet-vitrification cryopreservation of in vitro-cultured shoot tips of apple rootstock [J]. Plant Physiology Journal, 2024, 60(5): 895‒903. |
| [39] |
王力荣, 吴金龙. 中国果树种质资源研究与新品种选育70年 [J]. 园艺学报, 2021, 48(4): 749‒758. |
| [40] |
Wang L R, Wu J L. Review for the research of fruit tree germplasm and breeding of new varieties in the past seven decades in China [J]. Acta Horticulturae Sinica, 2021, 48(4): 749‒758. |
| [41] |
齐秀娟, 王然, 张敏, 猕猴桃育种研究进展 [J]. 果树学报, 2024, 41(11): 2160‒2172. |
| [42] |
Qi X J, Wang R, Zhang M, et al. Research progress in kiwifruit breeding [J]. Journal of Fruit Science, 2024, 41(11): 2160‒2172. |
| [43] |
李伟, 黄兵军, 肖泽君, 蓝靛果忍冬培育技术研究进展 [J]. 北方园艺, 2019 (12): 146‒151. |
| [44] |
Li W, Huang B J, Xiao Z J, et al. Research progress on cultivation technology of lonicera caerulea [J]. Northern Horticulture, 2019 (12): 146‒151. |
| [45] |
邵郅胜, 张薇, 孙聪, 欧李种质资源果实酚类物质分析及种质评价 [J]. 西北植物学报, 2023, 43(8): 1405‒1414. |
| [46] |
Shao Z S, Zhang W, Sun C, et al. Fruit phenolic content analysis and germplasm evaluation of cerasus humilis germplasm resources [J]. Acta Botanica Boreali-Occidentalia Sinica, 2023, 43(8): 1405‒1414. |
| [47] |
Huang Y, He J X, Xu Y T, et al. Pangenome analysis provides insight into the evolution of the orange subfamily and a key gene for citric acid accumulation in citrus fruits [J]. Nature Genetics, 2023, 55(11): 1964‒1975. |
| [48] |
Dong Y, Duan S C, Xia Q J, et al. Dual domestications and origin of traits in grapevine evolution [J]. Science, 2023, 379(6635): 892‒901. |
| [49] |
Ma B Q, Liao L, Peng Q, et al. Reduced representation genome sequencing reveals patterns of genetic diversity and selection in apple [J]. Journal of Integrative Plant Biology, 2017, 59(3): 190‒204. |
| [50] |
Jin X, Du H Y, Zhu C M, et al. Haplotype-resolved genomes of wild octoploid progenitors illuminate genomic diversifications from wild relatives to cultivated strawberry [J]. Nature Plants, 2023, 9(8): 1252‒1266. |
| [51] |
Zheng Z H, Wu M, Chen L, et al. A robust and efficient citrus counting approach for large-scale unstructured orchards [J]. Agricultural Systems, 2024, 215: 103867. |
| [52] |
Zhang J, Li D L, Shi X P, et al. DCTnet: A double-channel transformer network for peach disease detection using UAVs [J]. Complex & Intelligent Systems, 2024, 11(1): 111. |
| [53] |
Mao W L, Murengami B, Jiang H H, et al. UAV-based high-throughput phenotyping to segment individual apple tree row based on geometrical features of poles and colored point cloud [J]. Journal of the ASABE, 2024, 67(5): 1231‒1240. |
| [54] |
Lin Q, Chen J, Liu X, et al. A metabolic perspective of selection for fruit quality related to apple domestication and improvement [J]. Genome Biology, 2023, 24(1): 95. |
| [55] |
Yuan Z Y, Li G, Zhang H X, et al. Four novel Cit7GlcTs functional in flavonoid 7-O-glucoside biosynthesis are vital to flavonoid biosynthesis shunting in citrus [J]. Horticulture Research, 2024, 11(6): uhae098. |
| [56] |
Zhou M C, Sun Y L, Mao Q Y, et al. Comparative metabolomics profiling reveals the unique bioactive compounds and astringent taste formation of rosehips [J]. Food Chemistry, 2024, 452: 139584. |
| [57] |
Wang Y, Wang X H, Fang J H, et al. VqWRKY56 interacts with VqbZIPC22 in grapevine to promote proanthocyanidin biosynthesis and increase resistance to powdery mildew [J]. New Phytologist, 2023, 237(5): 1856‒1875. |
| [58] |
Zhao T, Huang C B, Li N, et al. Ubiquitin ligase VvPUB26 in grapevine promotes proanthocyanidin synthesis and resistance to powdery mildew [J]. Plant Physiology, 2024, 195(4): 2891‒2910. |
| [59] |
Xiao P, Qu J, Wang Y, et al. Transcriptome and metabolome atlas reveals contributions of sphingosine and chlorogenic acid to cold tolerance in Citrus [J]. Plant Physiology, 2024, 196(1): 634‒650. |
| [60] |
Xu H P, Zhang S Y, Liang C L, et al. Melatonin enhances resistance to Botryosphaeria dothidea in pear by promoting jasmonic acid and phlorizin biosynthesis [J]. BMC Plant Biology, 2024, 24(1): 470. |
| [61] |
郭文武, 叶俊丽, 邓秀新. 新中国果树科学研究70年——柑橘 [J]. 果树学报, 2019, 36(10): 1264‒1272. |
| [62] |
Guo W W, Ye J L, Deng X X. Fruit scientific research in New China in the past 70 years: Citrus [J]. Journal of Fruit Science, 2019, 36(10): 1264‒1272. |
| [63] |
陈学森, 李秀根, 毛志泉, 新种质创造支撑果品产业升级——红肉苹果和'库尔勒香梨'种质资源利用以及'红富士'芽变选种案例分析 [J]. 果树学报, 2021, 38(1): 128‒141. |
| [64] |
Chen X S, Li X G, Mao Z Q, et al. Fruit industry upgrading supported by new germplasm creation: Case study on the utilization of germplasm resources of red-fleshed apple and 'Kuerlexiangli' pear and the sports selection of 'Red Fuji' [J]. Journal of Fruit Science, 2021, 38(1): 128‒141. |
| [65] |
孙玉刚, 张承安, 史传铎, 优质石榴新品种'泰山大红' [J]. 园艺学报, 2004, 31(2): 278. |
| [66] |
Sun Y G, Zhang C A, Shi C D, et al. 'Taishan dahong'—An excellent new megranate variety [J]. Acta Horticulturae Sinica, 2004, 31(2): 278. |
| [67] |
郑少泉, 许家辉, 蒋际谋, 晚熟龙眼新品种'冬宝9号' [J]. 园艺学报, 2006, 33(5): 1166. |
| [68] |
Zheng S Q, Xu J H, Jiang J M, et al. A new hybrid Longan variety 'Dongbao 9' [J]. Acta Horticulturae Sinica, 2006, 33(5): 1166. |
| [69] |
田路明, 曹玉芬, 董星光, 我国梨品种改良研究进展 [J]. 中国果树, 2019 (2): 14‒19. |
| [70] |
Tian L M, Cao Y F, Dong X G, et al. Research progress on creation of Pyrus germplasm in China [J]. China Fruits, 2019 (2): 14‒19. |
| [71] |
马之胜, 贾云云, 王越辉, 早生黄金桃在我国黄肉桃育种中的应用研究进展 [J]. 江西农业学报, 2012, 24(5): 68‒70. |
| [72] |
Ma Z S, Jia Y Y, Wang Y H, et al. Research progress in application of Zaoshenghuangjin peach in yellow-flesh peach breeding in China [J]. Acta Agriculturae Jiangxi, 2012, 24(5): 68‒70. |
| [73] |
姜林, 张翠玲, 邵永春, 桃树砧木的研究进展 [J]. 北方园艺, 2011 (8): 204‒208. |
| [74] |
Jiang L, Zhang C L, Shao Y C, et al. Research progress on the peach rootstocks [J]. Northern Horticulture, 2011 (8): 204‒208. |
| [75] |
杜学梅, 杨廷桢, 高敬东, 中国野生山定子的自然分布及利用研究现状 [J]. 中国农学通报, 2017, 33(5): 24‒28. |
| [76] |
Du X M, Yang T Z, Gao J D, et al. Wild Malus baccata(L.) borkh. in China: Natural distribution, utilization and study status [J]. Chinese Agricultural Science Bulletin, 2017, 33(5): 24‒28. |
| [77] |
熊兴耀, 王仁才, 孙武积, 葡萄新品种'紫秋' [J]. 园艺学报, 2006, 33(5): 1165, 1174. |
| [78] |
Xiong X Y, Wang R C, Sun W J, et al. A new cultivar of vitis davidii 'ziqiu' [J]. Acta Horticulturae Sinica, 2006, 33(5): 1165, 1174. |
| [79] |
贾克礼, 王斌, 吴燕民, 杏种质资源研究及开发利用 [J]. 落叶果树, 1990, 22(3): 26‒28. |
| [80] |
Jia K L, Wang B, Wu Y M, et al. Research and development of apricot germplasm resources [J]. Deciduous Fruits, 1990, 22(3): 26‒28. |
| [81] |
李润唐, 李映志, 汪永保, 中药"化橘红"原料植物化州柚种质资源初步研究 [J]. 中国南方果树, 2012, 41(4): 53‒55. |
| [82] |
Li R T, Li Y Z, Wang Y B, et al. Preliminary study on germplasm resources of Huazhou pomelo, a raw material plant of traditional Chinese medicine "Exocarpium Citri Grandis" [J]. South China Fruits, 2012, 41(4): 53‒55. |
| [83] |
张小英, 周林, 黄庆华, 茶枝柑皮多糖对PC12细胞氧化损伤的保护作用 [J]. 食品工业科技, 2013, 34(18): 99‒101, 105. |
| [84] |
Zhang X Y, Zhou L, Huang Q H, et al. Study on antioxidant effect of polysaccharide from Citrus reticulata 'Chachi' Peel [J]. Science and Technology of Food Industry, 2013, 34(18): 99‒101, 105. |
| [85] |
Zhu C Q, Zheng X J, Huang Y, et al. Genome sequencing and CRISPR/Cas9 gene editing of an early flowering Mini-Citrus (Fortunella hindsii) [J]. Plant Biotechnology Journal, 2019, 17(11): 2199‒2210. |
| [86] |
Wang H X, Ren J, Zhou S Y, et al. Molecular regulation of oil gland development and biosynthesis of essential oils in Citrus spp. [J]. Science, 2024, 383(6683): 659‒666. |
| [87] |
Velasco R, Zharkikh A, Affourtit J, et al. The genome of the domesticated apple (Malus × domestica Borkh.) [J]. Nature Genetics, 2010, 42(10): 833‒839. |
| [88] |
Shulaev V, Sargent D J, Crowhurst R N, et al. The genome of woodland strawberry (Fragaria vesca) [J]. Nature Genetics, 2011, 43(2): 109‒116. |
| [89] |
D'Hont A, Denoeud F, Aury J M, et al. The banana (Musa acuminata) genome and the evolution of monocotyledonous plants [J]. Nature, 2012, 488(7410): 213‒217. |
| [90] |
Xu Q, Chen L L, Ruan X A, et al. The draft genome of sweet orange (Citrus sinensis) [J]. Nature Genetics, 2013, 45(1): 59‒66. |
| [91] |
Wu J, Wang Z W, Shi Z B, et al. The genome of the pear (Pyrus bretschneideri Rehd.) [J]. Genome Research, 2013, 23(2): 396‒408. |
| [92] |
Verde I, Abbott A G, Scalabrin S, et al. The high-quality draft genome of peach (Prunus persica) identifies unique patterns of genetic diversity, domestication and genome evolution [J]. Nature Genetics, 2013, 45(5): 487‒494. |
| [93] |
Huang S X, Ding J, Deng D J, et al. Draft genome of the kiwifruit Actinidia chinensis [J]. Nature Communications, 2013, 4: 2640. |
| [94] |
Wang L, He F, Huang Y, et al. Genome of wild mandarin and domestication history of mandarin [J]. Molecular Plant, 2018, 11(8): 1024‒1037. |
| [95] |
Shang J Z, Tian J P, Cheng H H, et al. The chromosome-level wintersweet (Chimonanthus praecox) genome provides insights into floral scent biosynthesis and flowering in winter [J]. Genome Biology, 2020, 21(1): 200. |
| [96] |
Jaillon O, Aury J M, Noel B, et al. The grapevine genome sequence suggests ancestral hexaploidization in major angiosperm phyla [J]. Nature, 2007, 449(7161): 463‒467. |
| [97] |
Huang Y, Xu Y T, Jiang X L, et al. Genome of a citrus rootstock and global DNA demethylation caused by heterografting [J]. Horticulture Research, 2021, 8: 69. |
| [98] |
Liu H M Z, Wang X, Liu S J, et al. Citrus Pan-genome to Breeding Database (CPBD): A comprehensive genome database for citrus breeding [J]. Molecular Plant, 2022, 15(10): 1503‒1505. |
| [99] |
Wu Q Q, Moniruzzaman M, Yan H X, et al. The CsNPR1 gene expression modulation in citrus and understanding the defense mechanism against Huanglongbing by screening CsNPR1-interacting proteins [J]. Scientia Horticulturae, 2021, 288: 110375. |
| [100] |
Wang L, Xie X Q, Yao W K, et al. RING-H2-type E3 gene VpRH2 from Vitis pseudoreticulata improves resistance to powdery mildew by interacting with VpGRP2A [J]. Journal of Experimental Botany, 2017, 68(7): 1669‒1687. |
| [101] |
Niu C D, Jiang L J, Cao F G, et al. Methylation of a MITE insertion in the MdRFNR1-1 promoter is positively associated with its allelic expression in apple in response to drought stress [J]. The Plant Cell, 2022, 34(10): 3983‒4006. |
| [102] |
Mei C, Yang J, Mei Q L, et al. MdNAC104 positively regulates apple cold tolerance via CBF-dependent and CBF-independent pathways [J]. Plant Biotechnology Journal, 2023, 21(10): 2057‒2073. |
| [103] |
Gong J L, Zeng Y L, Meng Q N, et al. Red light-induced kumquat fruit coloration is attributable to increased carotenoid metabolism regulated by FcrNAC22 [J]. Journal of Experimental Botany, 2021, 72(18): 6274‒6290. |
| [104] |
Jiu S T, Guan L, Leng X P, et al. The role of VvMYBA2r and VvMYBA2w alleles of the MYBA2 locus in the regulation of anthocyanin biosynthesis for molecular breeding of grape (Vitis spp.) skin coloration [J]. Plant Biotechnology Journal, 2021, 19(6): 1216‒1239. |
| [105] |
Gao M, Yang N X, Shao Y L, et al. An insertion in the promoter of a malate dehydrogenase gene regulates malic acid content in apple fruit [J]. Plant Physiology, 2024, 196(1): 432‒445. |
| [106] |
Gao M, Zhao H Y, Zheng L T, et al. Overexpression of apple Ma12, a mitochondrial pyrophosphatase pump gene, leads to malic acid accumulation and the upregulation of malate dehydrogenase in tomato and apple calli [J]. Horticulture Research, 2022, 9: uhab053. |
| [107] |
Zhang M Y, Xue C, Hu H J, et al. Genome-wide association studies provide insights into the genetic determination of fruit traits of pear [J]. Nature Communications, 2021, 12: 1144. |
| [108] |
Min T, Wang M M, Wang H X, et al. Isolation and expression of NAC genes during persimmon fruit postharvest astringency removal [J]. International Journal of Molecular Sciences, 2015, 16(1): 1894‒1906. |
| [109] |
Cao Z H, Song D, Hu Y, et al. An S-locus F-box protein as pollen S determinant targets non-self S-RNase underlying self-incompatibility in Citrus [J]. Journal of Experimental Botany, 2024, 75(13): 3891‒3902. |
| [110] |
Wang R, Fang Y N, Wu X M, et al. The miR399-CsUBC24 module regulates reproductive development and male fertility in Citrus [J]. Plant Physiology, 2020, 183(4): 1681‒1695. |
| [111] |
邓秀新, 王力荣, 李绍华, 果树育种40年回顾与展望 [J]. 果树学报, 2019, 36(4): 514‒520. |
| [112] |
Deng X X, Wang L R, Li S H, et al. Retrospection and prospect of fruit breeding for last four decades in China [J]. Journal of Fruit Science, 2019, 36(4): 514‒520. |
| [113] |
解凯东, 方燕妮, 伍小萌, 无核柚新品种'华柚2号' [J]. 园艺学报, 2020, 47(S2): 2946‒2947. |
| [114] |
Xie K D, Fang Y N, Wu X M, et al. A new seedless pomelo variety 'Huayou No.2' [J]. Acta Horticulturae Sinica, 2020, 47(S2): 2946‒2947. |
| [115] |
解凯东, 伍小萌, 方燕妮, 无核柚新品种'华柚3号' [J]. 园艺学报, 2021, 48(S2): 2815‒2816. |
| [116] |
Xie K D, Wu X M, Fang Y N, et al. A new seedless pomelo variety 'Huayou No.3' [J]. Acta Horticulturae Sinica, 2021, 48(S2): 2815‒2816. |
| [117] |
张泉, 刘婧汇, 姜建福, 国内无核葡萄育种成果及特性分析 [J]. 中外葡萄与葡萄酒, 2023 (2): 73‒79, 88. |
| [118] |
Zhang Q, Liu J H, Jiang J F, et al. Research progress of domestic seedless grape breeding [J]. Sino-Overseas Grapevine & Wine, 2023 (2): 73‒79, 88. |
| [119] |
朱凯杰, 张哲惠, 曹立新, 棕色晚熟脐橙新品种'宗橙' [J]. 园艺学报, 2022, 49(S1): 41‒42. |
| [120] |
Zhu K J, Zhang Z H, Cao L X, et al. A new brown late-maturing navel orange variety 'Zongcheng' [J]. Acta Horticulturae Sinica, 2022, 49(S1): 41‒42. |
| [121] |
庄恩及, 吴钰良, 徐祝英, 黄桃新品种——锦绣 [J]. 中国果树, 1985 (3): 29‒30. |
| [122] |
Zhuang E J, Wu Y L, Xu Z Y, et al. A new yellow peach variety—Jinxiu [J]. China Fruits, 1985 (3): 29‒30. |
| [123] |
林伯年, 沈德绪. 梨新品种"黄花"的适应性调查研究 [J]. 浙江农业大学学报, 1984, 10(4): 391‒396. |
| [124] |
Lin B N, Shen D X. Investigation and study on the adaptability of new pear variety "Huang Hua" [J]. Journal of Zhejiang Agricultural University, 1984, 10(4): 391‒396. |
| [125] |
董丽梅. 早熟、优质梨新品种介绍 [J]. 农业科技通讯, 2004 (5): 35. |
| [126] |
Dong L M. Introduction of new pear varieties with early maturity and high quality [J]. Bulletin of Agricultural Science and Technology, 2004 (5): 35. |
| [127] |
施泽彬, 过鑫刚. 早熟砂梨新品种翠冠的选育及其应用 [J]. 浙江农业学报, 1999, 11(4): 212‒214. |
| [128] |
Shi Z B, Guo X G. The breeding of early ripening pear variety Cuiguan and its application: [J]. Acta Agriculturae Zhejiangensis, 1999, 11(4): 212‒214. |
| [129] |
卢炎标. 早熟龙眼新品种——"古山二号" [J]. 中国南方果树, 2001, 30(1): 29. |
| [130] |
Lu Y B. A early ripening Longan variety—"Gushan 2" [J]. South China Fruits, 2001, 30(1): 29. |
| [131] |
谭春露, 徐炯志. 特早熟龙眼新品种——桂丰早 [J]. 中国果业信息, 2024, 41(4): 84‒85. |
| [132] |
Tan C L, Xu J Z. Guifengzao, a new Longan variety with extra early maturity [J]. China Fruit News, 2024, 41(4): 84‒85. |
| [133] |
朱东姿, 王甲威, 洪坡, 甜樱桃新品种鲁樱6号的选育及栽培技术要点 [J]. 落叶果树, 2022, 54(4): 61‒63. |
| [134] |
Zhu D Z, Wang J W, Hong P, et al. Breeding and cultivation techniques of a new late maturing sweet cherry cultivar Luying No.6 [J]. Deciduous Fruits, 2022, 54(4): 61‒63. |
| [135] |
张福兴, 张序, 孙庆田, 早熟甜樱桃新品种'福玲' [J]. 园艺学报, 2018, 45(S2): 2719‒2720. |
| [136] |
Zhang F X, Zhang X, Sun Q T, et al. A new early-maturing sweet cherry variety 'Fuling' [J]. Acta Horticulturae Sinica, 2018, 45(S2): 2719‒2720. |
| [137] |
吴巨勋, 张雅菁, 伊华林, 无核柑橘新品种华柑4号的选育 [J]. 果树学报, 2022, 39(3): 495‒498. |
| [138] |
Wu J X, Zhang Y J, Yi H L, et al. Breeding report of a new seedless ponkan cultivar Huagan No.4 [J]. Journal of Fruit Science, 2022, 39(3): 495‒498. |
| [139] |
范培格, 杨美容, 张映祝, 早熟优质无核葡萄新品种'京早晶' [J]. 园艺学报, 2004, 31(3): 415. |
| [140] |
Fan P G, Yang M R, Zhang Y Z, et al. Early-ripening seedless Grape 'Jingzaojing' [J]. Acta Horticulturae Sinica, 2004, 31(3): 415. |
| [141] |
宋银花, 李永洲, 贺亮亮, 葡萄无核晚熟新品种中葡萄18号的选育 [J]. 果树学报, 2024, 41(6): 1243‒1246. |
| [142] |
Song Y H, Li Y Z, He L L, et al. A new seedless late-maturing table grape cultivar Zhongputao No.18 [J]. Journal of Fruit Science, 2024, 41(6): 1243‒1246. |
| [143] |
陈学森, 王楠, 彭福田, 中国重要落叶果树果实品质和熟期育种研究进展 [J]. 园艺学报, 2024, 51(1): 8‒26. |
| [144] |
Chen X S, Wang N, Peng F T, et al. Advances in quality and maturity breeding of important deciduous fruit trees in China [J]. Acta Horticulturae Sinica, 2024, 51(1): 8‒26. |
| [145] |
韩晓蕾, 张彩霞, 刘锴, 中熟苹果新品种'中苹优蕾' [J]. 园艺学报, 2022, 49(S2): 1‒2. |
| [146] |
Han X L, Zhang C X, Liu K, et al. A new mid-ripening apple variety 'zhongping youlei' [J]. Acta Horticulturae Sinica, 2022, 49(S2): 1‒2. |
| [147] |
钟彩虹, 韩飞, 李大卫, 红心猕猴桃新品种'东红'的选育 [J]. 果树学报, 2016, 33(12): 1596‒1599. |
| [148] |
Zhong C H, Han F, Li D W, et al. Breeding of red-fleshed kiwifruit cultivar 'Donghong' [J]. Journal of Fruit Science, 2016, 33(12): 1596‒1599. |
| [149] |
农业农村部. 农业农村部负责人解读《国务院办公厅关于加强农业种质资源保护与利用的意见》 [EB/OL]. (2020-02-11)[2025-06-08]. http://www.gov.cn/zhengce/2020-02/11/content_5477449.htm. |
| [150] |
Ministry of Agriculture and Rural Affairs of the People's Republic of China. The head of the Ministry of Agriculture and Rural Affairs explains the opinions of the General Office of the State Council on strengthening the protection and utilization of agricultural germplasm resources [EB/OL]. (2020-02-11)[2025-06-08]. http://www.gov.cn/zhengce/2020-02/11/content_5477449.htm. |
中国工程院咨询项目“种质资源安全战略研究”(2023-JB-02)
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