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两份海南地方木豆资源的核型分析

程志号, 孙长君, 郭素霞, 曾学蔚, 严琳玲, 吴琼

程志号,孙长君,郭素霞,曾学蔚,严琳玲,吴琼. 两份海南地方木豆资源的核型分析. 草业科学, 2024, 41(7): 1645-1649. DOI: 10.11829/j.issn.1001-0629.2023-0238
引用本文: 程志号,孙长君,郭素霞,曾学蔚,严琳玲,吴琼. 两份海南地方木豆资源的核型分析. 草业科学, 2024, 41(7): 1645-1649. DOI: 10.11829/j.issn.1001-0629.2023-0238
CHENG Z H, SUN C J, GUO S X, ZENG X W, YAN L L, WU Q. Karyotype analysis of two local varieties of Cajanus cajan in Hainan, China. Pratacultural Science, 2024, 41(7): 1645-1649. DOI: 10.11829/j.issn.1001-0629.2023-0238
Citation: CHENG Z H, SUN C J, GUO S X, ZENG X W, YAN L L, WU Q. Karyotype analysis of two local varieties of Cajanus cajan in Hainan, China. Pratacultural Science, 2024, 41(7): 1645-1649. DOI: 10.11829/j.issn.1001-0629.2023-0238

两份海南地方木豆资源的核型分析

基金项目: 海南省重点研发项目(ZDYF2023XDNY042)
摘要:

木豆(Cajanus cajan)是我国热带亚热带地区重要的豆类作物,是一种集粮、饲料、药物为一体的多用途植物,同时,作为先锋植物,在水土保持、土壤改良等方面有重要功能。海南木豆种植时间长、资源多样性高,但细胞遗传学方面的报道目前较少。本研究以海南两个重要木豆产区‘保亭’和‘白沙’木豆地方资源为材料,通过核型分析发现,‘保亭’木豆核型公式为2n = 2x = 22 = 16m + 6sm,其中10号染色体有一对随体,相对长度组成为2n = 1L + 5M2 + 3M1 + 2s,为1A型;‘白沙’木豆核型公式为2n = 2x = 22 = 20m + 2sm,未发现随体,相对长度组成为2n = 1L + 4M2 + 5M1 + 1s,为2A型。本研究结果为木豆资源鉴定提供了新技术,也为种质创新和新品种选育提供参考。

 

English

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  • 图  1   ‘保亭’木豆根尖体细胞核型图(A)及核型模式图(B)

    Figure  1.   Karyogram (A) and idiogram (B) of Cajanus cajan root tip cells from ‘Baoting’

    图  2   ‘白沙’木豆根尖体细胞核型图(A)及核型模式图(B)

    Figure  2.   Karyogram (A) and idiogram (B) of Cajanus cajan root tip cells from ‘Baisha’

    表  1   ‘保亭’木豆根尖染色体相对长度、臂比和类型

    Table  1   Relative length, relative arm length, and type of Cajanus cajan root tip cells from ‘Baoting’

    染色体编号
    Chromosome
    number
    短臂 + 长臂 = 全长
    Short arm + long
    arm = full length/μm
    臂比
    Arm ratio
    分类
    Type
    随体
    Satellite
    1 4.64 + 7.55 = 12.19 1.63 m
    2 3.98 + 6.46 = 10.44 1.62 m
    3 3.98 + 5.80 = 9.78 1.46 m
    4 3.70 + 6.38 = 10.08 1.73 sm
    5 4.43 + 5.34 = 9.77 1.21 m
    6 3.79 + 5.25 = 9.04 1.39 m
    7 3.34 + 6.17 = 9.51 1.85 sm
    8 2.86 + 5.29 = 8.15 1.85 sm
    9 3.34 + 4.36 = 7.70 1.31 m
    10 2.62 + 4.06 = 6.68* 1.55 m 3.13
    11 2.90 + 3.76 = 6.66 1.30 m
     *:随体未计入染色体全长;m和sm:中部和近中部着丝粒染色体。表2同。
     The satellite length is not included in the chromosome length; m: median region; sm: submedian region. This is applicable for the Table 2 as well.
    下载: 导出CSV

    表  2   ‘白沙’木豆染色体相对长度、臂比和类型

    Table  2   Relative length, relative arm length, and type of Cajanus cajan from ‘Baisha’

    编号
    Chromosome
    number
    短臂 + 长臂 = 全长
    Short arm + long arm =
    full length/μm
    臂比
    Arm ratio
    分类
    Type
    1 4.73 + 7.01 = 11.74 1.48 m
    2 4.35 + 6.45 = 10.80 1.48 m
    3 4.07 + 6.51 = 10.58 1.60 m
    4 3.94 + 5.58 = 9.52 1.42 m
    5 4.35 + 4.84 = 9.19 1.11 m
    6 2.68 + 6.34 = 9.02 2.36 sm
    7 3.44 + 5.57 = 9.01 1.61 m
    8 3.42 + 5.23 = 8.65 1.53 m
    9 3.59 + 4.21 = 7.80 1.17 m
    10 2.78 + 4.16 = 6.94 1.49 m
    11 2.98 + 3.72 = 6.70 1.25 m
    下载: 导出CSV
  • [1] 郑桌杰. 中国食用豆类学. 北京: 中国农业出版社, 1997.

    ZHENG Z J. Chinese Edible Beans. Beijing: China Agricultural Press, 1997.

    [2] 蒋慧萍, 李杨瑞. 不同木豆品种的生物学和品质特性比较研究. 北方园艺, 2009(2): 1-4.

    ZHAN H P, LI Y R. Comparative studies on the growth and quality characters in different pigeonpea varieties. Northern Horticulture, 2009(2): 1-4.

    [3] 郭蓓, 金文林, 赵波, 濮绍京, 陈学珍. 木豆种质资源遗传多样性的分析. 中国农学通报, 2010, 26(19): 378-382.

    GUO B, JIN W L, ZHAO B, PU S J, CHEN X H. Analysis of genetic diversity in pigeonpea accessions. Chinese Agricultural Science Bulletin, 2010, 26(19): 378-382.

    [4] 罗瑞鸿, 魏源文, 李杨瑞. 木豆遗传资源及分子利用策略. 分子植物育种, 2003, 1(5): 747-750.

    LUO R H, WEI Y W, LI Y R. Genetic sources and molecular utilization strategy of pigeonpea. Molecular Plant Breeding, 2003, 1(5): 747-750.

    [5] 朱文斌, 吕若岚, 彭宇婧, 李育军, 刘圆圆, 植石灿, 彭淼曦. 木豆的栽培起源、生物学特征及生产应用. 长江蔬菜, 2021(14): 34-37.

    ZHU W B, LYU R L, PENG Y J, LI Y J, LIU Y Y, ZHI S C, PENG M X. The cultivation origin, biological characteristics, and production application of pigeon bean [Cajanus cajan (L.) Millspaugh]. Journal of Changjiang Vegetables, 2021(14): 34-37.

    [6] 李正红, 周朝鸿, 谷勇, 张建云. 中国木豆研究利用现状及开发前景. 林业科学研究, 2001, 14(6): 674-681.

    LI Z H, ZHOU C Y, GU Y, ZHANG J Y. The present status of study and utilization of pigeonpea in China and its prospects. Forest Research, 2001, 14(6): 674-681.

    [7] 陈玉德, 侯开卫, 吕福基, 袁杰, 张志钧. 云南三种木本豆类蛋白饲料资源的潜力及开发利用前景. 林业科学研究, 1993, 3(6): 346-350.

    CHEN Y D, HOU K W, LYU F J, YUAN J, ZHANG Z J. Potential and prospect of developing protein-feed resources of woody plants in Yunnan Province. Forest Research, 1993, 3(6): 346-350.

    [8]

    SAXENA K B, SINGH L, GUPTA M D. Variation for natural out-crossing in pigeonpea. Euphytica, 1990, 46: 143-148. doi: 10.1007/BF00022307

    [9] 蒋慧萍, 李杨瑞. 木豆随机扩增多态性DNA的反应体系研究. 安徽农业科学, 2008, 36(20): 8489-8491.

    JIANG H P, LI Y R. Study on the reaction system of randomly amplified polymorphic DNA in pigeonpea. Journal of Anhui Agricultural Sciences, 2008, 36(20): 8489-8491.

    [10] 闫龙, 关建平, 宗绪晓. 木豆种质资源AFLP标记遗传多样性分析. 作物学报, 2007, 33(5): 790-798.

    YAN L, GUAN J P, ZONG X X. Genetic diversity analysis of pigeonpea germplasm resources by AFLP. Acta Agronomica Sinica, 2007, 33(5): 790-798.

    [11] 闫龙. 木豆种质资源遗传多样性分析. 北京: 中国农业科学院硕士学位论文, 2005.

    YAN L. Assessment of genetic diversity of pigeonpea [Cajanus cajan (L.) Millspaugh] germplasm resources. Master Thesis. Beijing: Chinese Academy of Agricultural Sciences, 2005.

    [12] 陈志祥, 罗小燕, 李拴林, 吴如月, 王文强, 丁西朋. 基于SSR标记的木豆种质资源遗传多样性与群体结构分析. 草地学报, 2021, 29(5): 904-911.

    CHEN Z X, LUO X Y, LI S L, WU R Y, WANG W Q, DING X P. Genetic Diversity and population structure analysis of the pigeonpea (Cajanus cajan L.) germplasm resources based on SSR markers. Acta Agrestia Sinica, 2021, 29(5): 904-911.

    [13]

    VARSHNEY R K, CHEN W B, LI Y P, BHARTI A K, SAXENA R K, SCHLUETER J A, DONOGHUE M T A, SARWAR A, FAN G Y, WHALEY A M, FARMER A D, SHERIDAN J, IWATA A, REETU T, PENMETSA R V, WU W, UPADHYAYA H D, YANG S P, TRUSHAR S, SAXENA K B, MICHAEL T, MCCOMBIE W R, YANG BC, ZHANG G Y, YANG H M, WANG J, SPILLANE C, COOK D R, MAY G D, XU X, JACKSON S A. Draft genome sequence of pigeonpea (Cajanus cajan), an orphan legume crop of resource-poor farmers. Nature Biotechnology, 2012, 30(1): 83-89. doi: 10.1038/nbt.2022

    [14] 马宏, 李正红, 刘秀贤, 万友名, 谷勇. 木豆良种‘ICP7035’. 林业科学, 2013, 49(2): 146.

    MA H, LI Z H, LIU X X, WAN Y M, GU Y. An elite Cajanus cajan variety ‘ICP7035’. Scientia Silvae Sinicae, 2013, 49(2): 146.

    [15] 万友名, 李正红, 马宏, 刘秀贤, 谷勇, 李立, 梁宁. 木豆新品种‘CAF10’. 林业科学, 2012, 48(7): 192.

    WAN Y M, LI Z H, MA H, LIU X X, GU Y, LI L, LIANG N. A new Cajanus cajan cultivar ‘CAF10’. Scientia Silvae Sinicae, 2012, 48(7): 192.

    [16] 马宏, 李正红, 刘秀贤, 万友名, 谷勇, 李立, 梁宁. 木豆新品种‘CAF11’. 林业科学, 2012, 48(8): 166. doi: 10.11707/j.1001-7488.20120827

    MA H, LI Z H, LIU X X, WAN Y M, GU Y, LI L, LANG N. A new Cajanus cajan cultivar ‘CAF11’. Scientia Silvae Sinicae, 2012, 48(8): 166. doi: 10.11707/j.1001-7488.20120827

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  • 通讯作者: 吴琼
  • 收稿日期:  2023-04-29
  • 接受日期:  2023-07-29
  • 网络出版日期:  2024-04-29
  • 刊出日期:  2024-07-29

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