浙江农业学报 ›› 2024, Vol. 36 ›› Issue (1): 103-114.DOI: 10.3969/j.issn.1004-1524.20230063
杨天文1(), 王静1, 李炯1, 徐彬其1, 程蛟文2, 洪宇1, 曹毅1, 崔竣杰1,*(
)
收稿日期:
2023-01-18
出版日期:
2024-01-25
发布日期:
2024-02-18
作者简介:
* 崔竣杰,E-mail:seedcui@sina.com通讯作者:
崔竣杰
基金资助:
YANG Tianwen1(), WANG Jing1, LI Jiong1, XU Binqi1, CHENG Jiaowen2, HONG Yu1, CAO Yi1, CUI Junjie1,*(
)
Received:
2023-01-18
Online:
2024-01-25
Published:
2024-02-18
Contact:
CUI Junjie
摘要:
为实现对大顶苦瓜种质的快速精准鉴定,以包含主栽品种在内的26份大顶苦瓜种质为材料,通过筛选高多态性简单重复序列(simple sequence repeat, SSR)核心标记,对其进行聚类分析和指纹图谱构建。结果表明:在苦瓜基因组6种SSR基序单元类型中,二核苷酸SSR标记的多态性最好,适用于进一步从中筛选苦瓜SSR核心标记。在遗传相似系数0.80处,40个SSR标记将26份大顶苦瓜种质分为3个类群,第一类群包含18份种质,果形以短圆锥形为主;第二类群包含5份种质,果形以长圆锥形为主;第三类群包含3份种质,其果形与大顶苦瓜相似,但含有非大顶苦瓜种质背景。利用MC05_69594、MC04_50530、MC06_87314和MC10_146038这4个SSR核心标记可对26份大顶苦瓜种质进行有效鉴定,并为每份大顶苦瓜种质建立独特的QR编码指纹图谱,其中,1号大顶和3号大顶疑为相似材料。构建的大顶苦瓜指纹图谱可以为大顶苦瓜种质鉴定与育种利用提供科学依据。
中图分类号:
杨天文, 王静, 李炯, 徐彬其, 程蛟文, 洪宇, 曹毅, 崔竣杰. 大顶苦瓜种质资源的遗传多样性分析与指纹图谱构建[J]. 浙江农业学报, 2024, 36(1): 103-114.
YANG Tianwen, WANG Jing, LI Jiong, XU Binqi, CHENG Jiaowen, HONG Yu, CAO Yi, CUI Junjie. Genetic diversity analysis and fingerprint construction of Dading bitter gourd germplasm resources[J]. Acta Agriculturae Zhejiangensis, 2024, 36(1): 103-114.
编号 Number | 材料名称 Material name | 种类 Species | 种质类型 Germplasm type | 来源 Origin | 果实部分特征 Some characteristics of fruit | ||||
---|---|---|---|---|---|---|---|---|---|
1 | 东来大顶 Donglai | M. charantia | 杂交种 Hybrid | 百蔬网 | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
2 | 1号大顶 NO.1 | M. charantia | 杂交种 Hybrid | 百蔬网 | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
3 | 3号大顶 NO.3 | M. charantia | 杂交种 Hybrid | 百蔬网 | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
4 | 翠绿三号 Cuilyu NO.3 | M. charantia | 杂交种 Hybrid | 广东科农蔬菜种业有限公司 Guangdong Kenong Vegetable Seed Company | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, yellow seed coat | ||||
5 | 清蔬2号 Qingshu NO.2 | M. charantia | 杂交种 Hybrid | 清远市清蔬种子有限公司 Qingyuan Qingshu Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
6 | 金利塔 Jinlita | M. charantia | 杂交种 Hybrid | 清远市清蔬种子有限公司 Qingyuan Qingshu Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
7 | 巨顶大顶 Juding | M. charantia | 杂交种 Hybrid | 广州市义农园艺有限公司 Guangzhou Yinong Horticulture Company | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
8 | 珍珠大顶 Zhenzhu | M. charantia | 杂交种 Hybrid | 台山市利农种子有限公司 Taishan Linong Seed Company | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, yellow seed coat | ||||
9 | 超绿大顶 Chaolyu | M. charantia | 杂交种 Hybrid | 香港惟勤 Hong Kong Weqin | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
10 | 科丰大顶 Kefeng | M. charantia | 杂交种 Hybrid | 广州科田种苗有限公司 Guangzhou Ketian Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
11 | 利农珍珠 LNzhenzhu | M. charantia | 杂交种 Hybrid | 广东和利农种业股份有限公司 Guangdong Helinong Seed Company | 长圆锥形,浅绿色果皮,黑籽 Long conical, light green peel, black seed coat | ||||
12 | 博优特804 BYT804 | M. charantia | 杂交种 Hybrid | 广州博优特农业科技有限公司 Guangzhou Boyoute Agricultural Technology Company | 长圆锥形,绿色果皮,黑籽 Long conical, green peel, black seed coat | ||||
13 | 翠绿厚肉 Cuilyu HR | M. charantia | 杂交种 Hybrid | 珠海市斗门区井岸兴隆蔬菜种子点 Zhuhai Doumen Jinganxinglong Vegetable Seed Store | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
14 | 金顶3号 Jinding NO.3 | M. charantia | 杂交种 Hybrid | 金韩种业 Jinhan Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
15 | 华鼎3号 Huading NO.3 | M. charantia | 杂交种 Hybrid | 华南农业大学华农大种业 South China Agricultural University Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
16 | 真功夫13号 Zhengongfu NO.13 | M. charantia | 杂交种 Hybrid | 广东和利农种业股份有限公司 Guangdong Helinong Seed Company | 长圆锥形,浅绿色果皮,黑籽 Long conical, light green peel, black seed coat | ||||
17 | 特大大顶 Teda | M. charantia | 杂交种 Hybrid | 金叶子园艺馆 Jinyezi Horticulture House | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
18 | 青蕾1号 Qinglei NO.1 | M. charantia | 杂交种 Hybrid | 广州乾农农业科技发展有限公司 Guangzhou Gannong Agricultural Technology Company | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
19 | 美鼎8号 Meiding NO.8 | M. charantia | 杂交种 Hybrid | 揭阳市农研种业有限公司 Jieyang Nongyan Seed Company | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
20 | 江门大顶 Jiangmen | M. charantia | 常规种 Conventional cultivar | 子丰种业 Zifeng Seed Company | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, yellow seed coat | ||||
21 | 鼎胜大顶 Dingsheng | M. charantia | 杂交种 Hybrid | 禾之硕农业 Hezhishuo Agriculture | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
22 | 谭边大顶 Tanbian | M. charantia | 地方种 Landrace | 收集于广东省佛山市南海区谭边村 Selected from Foshan Tanbian village | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
23 | 广良2号 Guangliang NO.2 | M. charantia | 杂交种 Hybrid | 子丰种业 Zifeng Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
24 | 江门F Jiangmen F | M. charantia | 自交系 Inbred line | 选自江门大顶苦瓜 Selected from Jiangmen Dading bitter gourd | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, black seed coat | ||||
25 | 惠州F Huizhou F | M. charantia | 自交系 Inbred line | 选自惠州大顶苦瓜 Selected from Huizhou Dading bitter gourd | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
26 | 苹果大顶 Pingguo | M. charantia | 常规种 Conventional cultivar | 山东寿光欣欣然园艺有限公司 Shouguang Xinxinran Horticulture Company | 短或长圆锥形,白色果皮,黄籽 Short or long conical, white peel, yellow seed coat | ||||
27 | 汾溪L Fenxi L | M. charantia | 地方种 Landrace | 收集于安徽省黄山市祁门县 Selected from Qimen County, Huangshan | 椭球形,绿色果皮,黄籽 Spheroid, green peel, yellow seed coat | ||||
28 | 南靖TR Nanjing TR | M. charantia ssp. macroloba | 野生亚种 Wild subspecies | 收集于福建省漳州市南靖县 Selected from Nanjing County, Zhangzhou | 纺锤形,绿色果皮,黑籽 Spindle-shaped, green peel, black seed coat |
表1 供试的28份苦瓜种质资源信息
Table 1 Information of 28 bitter gourd germplasm resources
编号 Number | 材料名称 Material name | 种类 Species | 种质类型 Germplasm type | 来源 Origin | 果实部分特征 Some characteristics of fruit | ||||
---|---|---|---|---|---|---|---|---|---|
1 | 东来大顶 Donglai | M. charantia | 杂交种 Hybrid | 百蔬网 | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
2 | 1号大顶 NO.1 | M. charantia | 杂交种 Hybrid | 百蔬网 | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
3 | 3号大顶 NO.3 | M. charantia | 杂交种 Hybrid | 百蔬网 | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
4 | 翠绿三号 Cuilyu NO.3 | M. charantia | 杂交种 Hybrid | 广东科农蔬菜种业有限公司 Guangdong Kenong Vegetable Seed Company | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, yellow seed coat | ||||
5 | 清蔬2号 Qingshu NO.2 | M. charantia | 杂交种 Hybrid | 清远市清蔬种子有限公司 Qingyuan Qingshu Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
6 | 金利塔 Jinlita | M. charantia | 杂交种 Hybrid | 清远市清蔬种子有限公司 Qingyuan Qingshu Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
7 | 巨顶大顶 Juding | M. charantia | 杂交种 Hybrid | 广州市义农园艺有限公司 Guangzhou Yinong Horticulture Company | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
8 | 珍珠大顶 Zhenzhu | M. charantia | 杂交种 Hybrid | 台山市利农种子有限公司 Taishan Linong Seed Company | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, yellow seed coat | ||||
9 | 超绿大顶 Chaolyu | M. charantia | 杂交种 Hybrid | 香港惟勤 Hong Kong Weqin | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
10 | 科丰大顶 Kefeng | M. charantia | 杂交种 Hybrid | 广州科田种苗有限公司 Guangzhou Ketian Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
11 | 利农珍珠 LNzhenzhu | M. charantia | 杂交种 Hybrid | 广东和利农种业股份有限公司 Guangdong Helinong Seed Company | 长圆锥形,浅绿色果皮,黑籽 Long conical, light green peel, black seed coat | ||||
12 | 博优特804 BYT804 | M. charantia | 杂交种 Hybrid | 广州博优特农业科技有限公司 Guangzhou Boyoute Agricultural Technology Company | 长圆锥形,绿色果皮,黑籽 Long conical, green peel, black seed coat | ||||
13 | 翠绿厚肉 Cuilyu HR | M. charantia | 杂交种 Hybrid | 珠海市斗门区井岸兴隆蔬菜种子点 Zhuhai Doumen Jinganxinglong Vegetable Seed Store | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
14 | 金顶3号 Jinding NO.3 | M. charantia | 杂交种 Hybrid | 金韩种业 Jinhan Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
15 | 华鼎3号 Huading NO.3 | M. charantia | 杂交种 Hybrid | 华南农业大学华农大种业 South China Agricultural University Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
16 | 真功夫13号 Zhengongfu NO.13 | M. charantia | 杂交种 Hybrid | 广东和利农种业股份有限公司 Guangdong Helinong Seed Company | 长圆锥形,浅绿色果皮,黑籽 Long conical, light green peel, black seed coat | ||||
17 | 特大大顶 Teda | M. charantia | 杂交种 Hybrid | 金叶子园艺馆 Jinyezi Horticulture House | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
18 | 青蕾1号 Qinglei NO.1 | M. charantia | 杂交种 Hybrid | 广州乾农农业科技发展有限公司 Guangzhou Gannong Agricultural Technology Company | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
19 | 美鼎8号 Meiding NO.8 | M. charantia | 杂交种 Hybrid | 揭阳市农研种业有限公司 Jieyang Nongyan Seed Company | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
20 | 江门大顶 Jiangmen | M. charantia | 常规种 Conventional cultivar | 子丰种业 Zifeng Seed Company | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, yellow seed coat | ||||
21 | 鼎胜大顶 Dingsheng | M. charantia | 杂交种 Hybrid | 禾之硕农业 Hezhishuo Agriculture | 短圆锥形,绿色果皮,黄籽 Short conical, green peel, yellow seed coat | ||||
22 | 谭边大顶 Tanbian | M. charantia | 地方种 Landrace | 收集于广东省佛山市南海区谭边村 Selected from Foshan Tanbian village | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
23 | 广良2号 Guangliang NO.2 | M. charantia | 杂交种 Hybrid | 子丰种业 Zifeng Seed Company | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
24 | 江门F Jiangmen F | M. charantia | 自交系 Inbred line | 选自江门大顶苦瓜 Selected from Jiangmen Dading bitter gourd | 长圆锥形,绿色果皮,黄籽 Long conical, green peel, black seed coat | ||||
25 | 惠州F Huizhou F | M. charantia | 自交系 Inbred line | 选自惠州大顶苦瓜 Selected from Huizhou Dading bitter gourd | 短圆锥形,绿色果皮,黑籽 Short conical, green peel, black seed coat | ||||
26 | 苹果大顶 Pingguo | M. charantia | 常规种 Conventional cultivar | 山东寿光欣欣然园艺有限公司 Shouguang Xinxinran Horticulture Company | 短或长圆锥形,白色果皮,黄籽 Short or long conical, white peel, yellow seed coat | ||||
27 | 汾溪L Fenxi L | M. charantia | 地方种 Landrace | 收集于安徽省黄山市祁门县 Selected from Qimen County, Huangshan | 椭球形,绿色果皮,黄籽 Spheroid, green peel, yellow seed coat | ||||
28 | 南靖TR Nanjing TR | M. charantia ssp. macroloba | 野生亚种 Wild subspecies | 收集于福建省漳州市南靖县 Selected from Nanjing County, Zhangzhou | 纺锤形,绿色果皮,黑籽 Spindle-shaped, green peel, black seed coat |
SSR类型 SSR type | 数量 Number | 扩增引物数量 Number of amplified marker | 扩增率 Amplification rate/% | 多态性标记数 Number of polymorphic marker | 多态率 Polymorphic rate/% |
---|---|---|---|---|---|
单核苷酸Mononucleotide | 30 | 29 | 96.67 | 1 | 3.45 |
二核苷酸Dinucleotide | 30 | 28 | 93.33 | 8 | 28.57 |
三核苷酸Trinucleotide | 30 | 28 | 93.33 | 6 | 21.43 |
四核苷酸Tetranucleotide | 30 | 29 | 96.67 | 4 | 13.79 |
五核苷酸Tetranucleotide | 30 | 29 | 96.67 | 7 | 24.14 |
六核苷酸Hexanucleotide | 30 | 26 | 86.67 | 6 | 23.08 |
总计Total | 180 | 169 | 93.89 | 32 | 18.93 |
表2 苦瓜不同基序单元类型SSR标记的多态性情况
Table 2 Polymorphism of SSR markers with different motif units in M. charantia
SSR类型 SSR type | 数量 Number | 扩增引物数量 Number of amplified marker | 扩增率 Amplification rate/% | 多态性标记数 Number of polymorphic marker | 多态率 Polymorphic rate/% |
---|---|---|---|---|---|
单核苷酸Mononucleotide | 30 | 29 | 96.67 | 1 | 3.45 |
二核苷酸Dinucleotide | 30 | 28 | 93.33 | 8 | 28.57 |
三核苷酸Trinucleotide | 30 | 28 | 93.33 | 6 | 21.43 |
四核苷酸Tetranucleotide | 30 | 29 | 96.67 | 4 | 13.79 |
五核苷酸Tetranucleotide | 30 | 29 | 96.67 | 7 | 24.14 |
六核苷酸Hexanucleotide | 30 | 26 | 86.67 | 6 | 23.08 |
总计Total | 180 | 169 | 93.89 | 32 | 18.93 |
序号 Number | 标记名称 Marker name | SSR基序单元 核苷酸数量 Nucleotide number of SSR motif unit | 正向引物 Forward primer(5'→3') | 反向引物 Reverse primer(5'→3') | 多态性信息含量 Polymorphism information content |
---|---|---|---|---|---|
1 | MC03_38098 | 5 | TTGACCCATAAATTTTGCCC | AGTCGTCGGAACACTGGTTT | 0.42 |
2 | MC05_59428 | 5 | CAGTGCATTTCGCTCTTCAA | TTGTGCGAGTCAATTCTTGC | 0.07 |
3 | MC05_60613 | 5 | ATCTGCCACGTTTAGGTTGG | TCATCAACACCCAGTGGAAA | 0.25 |
4 | MC06_91895 | 5 | TTCTCTTTCTCACCTCCCGA | GTAGAAGGAGGGAGTTGGGG | 0.37 |
5 | MC06_91975 | 5 | CACATTCACAACGCACCTTC | CCAATTTTCCTTCTGGGTTG | 0.37 |
6 | MC10_145502 | 5 | GTGGATGCATGGAGATGATG | TCCAACATTGGGCTACTTGA | 0.13 |
7 | MC01_10177 | 2 | TCTTCATTGCTTTTGGCCTT | TTATGTGCAGCCAAATTCCA | 0.57 |
8 | MC01_10442 | 2 | AATGCAACCAGCTCAAATCC | GGTTAGCTTGTCGGTGGTGT | 0.55 |
9 | MC01_10775 | 2 | GGAAATTGGGATTCGTCTGA | GCGTTCAGTTCTCGGAAAAA | 0.47 |
10 | MC03_33224 | 2 | GGCAGAATGGGACATGAACT | AACCGAGTCAAGTACAGGGG | 0.07 |
11 | MC03_36734 | 2 | ACCAGTTGCCCTAACTGTGG | GGCAATGATTTTGAATGCG | 0.60 |
12 | MC04_41838 | 2 | GGTCCCCACTGTTTCCTGTA | TCAGCTGCCATATTCAGTGC | 0.60 |
13 | MC04_50530 | 2 | TGCAATACTCTACCCCACACA | CGCCCCACCACACTAGAATA | 0.70 |
14 | MC04_52709 | 2 | GGATTCTCCCACAGTAGGCA | CAAGGACACAGTCTCCCTCC | 0.19 |
15 | MC04_56695 | 2 | ATTGGTGGCCTTTTGTTGTC | TGAGAAGTCAAAGTTGGGGG | 0.37 |
16 | MC05_66719 | 2 | AACCCCTGCAAAATTCCATT | TTTCCTTGAGACGGTGATCC | 0.62 |
17 | MC05_66898 | 2 | GCTTAATTTTCTTTTGGTCCCC | TCAAATTTGTAGGCCCTTGG | 0.30 |
18 | MC05_69589 | 2 | AGAGACGCAAGGAAGATCCA | ATTGTGGGAGGAGCTCAATG | 0.42 |
19 | MC05_69594 | 2 | TGTGTAGTGATGGGACAAGACTTT | TGGATAGCTTCATACCGTGTCA | 0.75 |
20 | MC06_73082 | 2 | GCAGGCGAACATCCTACATT | CAAAACCACCTCCCTGAAGA | 0.27 |
21 | MC06_74604 | 2 | TGGCAACCTAACCTATACTTGC | ACCAAGAGGTTATGCGTTCG | 0.07 |
22 | MC06_76026 | 2 | CTCCTCCATCCCAATTCTCA | TCTCTTCCACACCAAATCCTC | 0.07 |
23 | MC06_82550 | 2 | TGCTTGGTCAATTTTGTCAC | CTTTTTCACGGCGAGTCTTC | 0.12 |
24 | MC06_82800 | 2 | TGATTGTTATGGCTGCTCCA | GCACCAGTCAATGGCTACAG | 0.13 |
25 | MC06_85886 | 2 | TTTTCCTGTAATGCGACCGT | TCGAGTTGGTGATTGGTTGA | 0.37 |
26 | MC06_87314 | 2 | CCAAGAAGGAAGCCAACAGA | AGGAGAAATCCCACGAAACT | 0.70 |
27 | MC06_88695 | 2 | GGGGTGGTATTCCTGAAACA | CATTCAACCTTCAACAGGGT | 0.07 |
28 | MC06_88956 | 2 | CCTCAATCAACAAGGGGAAA | ATGAGCACTGTCTCCAGCCT | 0.47 |
29 | MC06_89197 | 2 | CGGTCGAAAAATCAAACCAC | TATGCCGCATGTATCGTTGT | 0.13 |
30 | MC06_91328 | 2 | TGATCCACCTCCTTCTACGTG | GGCATGTCGTTGATCGTACC | 0.52 |
31 | MC07_98759 | 2 | TTCACAACTGTTGCTGTGGAG | CCAAAACATTAGAGAGACCGAA | 0.43 |
32 | MC08_118245 | 2 | TGCTTGCTCGAGGTTTCTCT | TGTTCAAATCTCCTCCCCAA | 0.42 |
33 | MC08_125161 | 2 | GGGTTGCTCAGTTGGAGAAG | CTGCAAAACCCCATGAAAAT | 0.40 |
34 | MC09_128186 | 2 | TTGGACAAAGCCACATGCTA | TATTTCTCGCCGACGTTAGG | 0.51 |
35 | MC10_142490 | 2 | CCACATAACACATGGGACGA | AAATCTGAGGTCGGAGTCCA | 0.35 |
36 | MC10_145501 | 2 | AAATCCAACTGTGCTTTGCC | CATCATCTCCATGCATCCAC | 0.40 |
37 | MC10_146038 | 2 | GGCCTGCGACAAATAAAAGA | TCTTCACCCATCTCAAAGGG | 0.55 |
38 | MC11_155754 | 2 | ATAGGATCACGGCGAATCAG | TCGCACTTGTTCAATTCTGC | 0.13 |
39 | MC11_156296 | 2 | TGCAAGTTTCATTGCACCTA | CGTCTTTGTCTGGTTGCTCA | 0.13 |
40 | MC11_159185 | 2 | CCGAATTTTTGTGGATTTCG | GGATCCATTTTGATGCCTTG | 0.16 |
平均Mean | 0.36 |
表3 苦瓜40个多态性SSR标记信息
Table 3 Information of 40 polymorphic SSR markers in M. charantia
序号 Number | 标记名称 Marker name | SSR基序单元 核苷酸数量 Nucleotide number of SSR motif unit | 正向引物 Forward primer(5'→3') | 反向引物 Reverse primer(5'→3') | 多态性信息含量 Polymorphism information content |
---|---|---|---|---|---|
1 | MC03_38098 | 5 | TTGACCCATAAATTTTGCCC | AGTCGTCGGAACACTGGTTT | 0.42 |
2 | MC05_59428 | 5 | CAGTGCATTTCGCTCTTCAA | TTGTGCGAGTCAATTCTTGC | 0.07 |
3 | MC05_60613 | 5 | ATCTGCCACGTTTAGGTTGG | TCATCAACACCCAGTGGAAA | 0.25 |
4 | MC06_91895 | 5 | TTCTCTTTCTCACCTCCCGA | GTAGAAGGAGGGAGTTGGGG | 0.37 |
5 | MC06_91975 | 5 | CACATTCACAACGCACCTTC | CCAATTTTCCTTCTGGGTTG | 0.37 |
6 | MC10_145502 | 5 | GTGGATGCATGGAGATGATG | TCCAACATTGGGCTACTTGA | 0.13 |
7 | MC01_10177 | 2 | TCTTCATTGCTTTTGGCCTT | TTATGTGCAGCCAAATTCCA | 0.57 |
8 | MC01_10442 | 2 | AATGCAACCAGCTCAAATCC | GGTTAGCTTGTCGGTGGTGT | 0.55 |
9 | MC01_10775 | 2 | GGAAATTGGGATTCGTCTGA | GCGTTCAGTTCTCGGAAAAA | 0.47 |
10 | MC03_33224 | 2 | GGCAGAATGGGACATGAACT | AACCGAGTCAAGTACAGGGG | 0.07 |
11 | MC03_36734 | 2 | ACCAGTTGCCCTAACTGTGG | GGCAATGATTTTGAATGCG | 0.60 |
12 | MC04_41838 | 2 | GGTCCCCACTGTTTCCTGTA | TCAGCTGCCATATTCAGTGC | 0.60 |
13 | MC04_50530 | 2 | TGCAATACTCTACCCCACACA | CGCCCCACCACACTAGAATA | 0.70 |
14 | MC04_52709 | 2 | GGATTCTCCCACAGTAGGCA | CAAGGACACAGTCTCCCTCC | 0.19 |
15 | MC04_56695 | 2 | ATTGGTGGCCTTTTGTTGTC | TGAGAAGTCAAAGTTGGGGG | 0.37 |
16 | MC05_66719 | 2 | AACCCCTGCAAAATTCCATT | TTTCCTTGAGACGGTGATCC | 0.62 |
17 | MC05_66898 | 2 | GCTTAATTTTCTTTTGGTCCCC | TCAAATTTGTAGGCCCTTGG | 0.30 |
18 | MC05_69589 | 2 | AGAGACGCAAGGAAGATCCA | ATTGTGGGAGGAGCTCAATG | 0.42 |
19 | MC05_69594 | 2 | TGTGTAGTGATGGGACAAGACTTT | TGGATAGCTTCATACCGTGTCA | 0.75 |
20 | MC06_73082 | 2 | GCAGGCGAACATCCTACATT | CAAAACCACCTCCCTGAAGA | 0.27 |
21 | MC06_74604 | 2 | TGGCAACCTAACCTATACTTGC | ACCAAGAGGTTATGCGTTCG | 0.07 |
22 | MC06_76026 | 2 | CTCCTCCATCCCAATTCTCA | TCTCTTCCACACCAAATCCTC | 0.07 |
23 | MC06_82550 | 2 | TGCTTGGTCAATTTTGTCAC | CTTTTTCACGGCGAGTCTTC | 0.12 |
24 | MC06_82800 | 2 | TGATTGTTATGGCTGCTCCA | GCACCAGTCAATGGCTACAG | 0.13 |
25 | MC06_85886 | 2 | TTTTCCTGTAATGCGACCGT | TCGAGTTGGTGATTGGTTGA | 0.37 |
26 | MC06_87314 | 2 | CCAAGAAGGAAGCCAACAGA | AGGAGAAATCCCACGAAACT | 0.70 |
27 | MC06_88695 | 2 | GGGGTGGTATTCCTGAAACA | CATTCAACCTTCAACAGGGT | 0.07 |
28 | MC06_88956 | 2 | CCTCAATCAACAAGGGGAAA | ATGAGCACTGTCTCCAGCCT | 0.47 |
29 | MC06_89197 | 2 | CGGTCGAAAAATCAAACCAC | TATGCCGCATGTATCGTTGT | 0.13 |
30 | MC06_91328 | 2 | TGATCCACCTCCTTCTACGTG | GGCATGTCGTTGATCGTACC | 0.52 |
31 | MC07_98759 | 2 | TTCACAACTGTTGCTGTGGAG | CCAAAACATTAGAGAGACCGAA | 0.43 |
32 | MC08_118245 | 2 | TGCTTGCTCGAGGTTTCTCT | TGTTCAAATCTCCTCCCCAA | 0.42 |
33 | MC08_125161 | 2 | GGGTTGCTCAGTTGGAGAAG | CTGCAAAACCCCATGAAAAT | 0.40 |
34 | MC09_128186 | 2 | TTGGACAAAGCCACATGCTA | TATTTCTCGCCGACGTTAGG | 0.51 |
35 | MC10_142490 | 2 | CCACATAACACATGGGACGA | AAATCTGAGGTCGGAGTCCA | 0.35 |
36 | MC10_145501 | 2 | AAATCCAACTGTGCTTTGCC | CATCATCTCCATGCATCCAC | 0.40 |
37 | MC10_146038 | 2 | GGCCTGCGACAAATAAAAGA | TCTTCACCCATCTCAAAGGG | 0.55 |
38 | MC11_155754 | 2 | ATAGGATCACGGCGAATCAG | TCGCACTTGTTCAATTCTGC | 0.13 |
39 | MC11_156296 | 2 | TGCAAGTTTCATTGCACCTA | CGTCTTTGTCTGGTTGCTCA | 0.13 |
40 | MC11_159185 | 2 | CCGAATTTTTGTGGATTTCG | GGATCCATTTTGATGCCTTG | 0.16 |
平均Mean | 0.36 |
图2 二十八份苦瓜种质资源的SSR聚类图 蓝色的线条表示类群Ⅰ,红色的线条表示类群Ⅱ,黄色的线条表示类群Ⅲ,黑色的线条表示外类群,线条右侧为该类群中果形具有代表性的果实。
Fig.2 SSR cluster of 28 bitter gourd germplasm resources The blue lines represent group Ⅰ, the red lines represent group Ⅱ, the yellow lines represent group Ⅲ, and the black lines represent the out group, the fruits with typical fruit shape are on the right side of the lines.
标记组合 Marker combination | 区分材料编号 Number of distinguished materials | 区分开的材料 累计数量 Cumulative number of distinguished materials |
---|---|---|
MC05_69594 | 19+24+26 | 3 |
MC05_69594+MC04_50530 | 1+7+9+10+11+12+14+15+16+17+22+23 | 15 |
MC05_69594+MC04_50530+MC06_87314 | 5+6+18+25 | 19 |
MC05_69594+MC04_50530+MC06_87314+MC10_146038 | 4+8+13+20+21 | 24 |
MC05_69594+MC04_50530+MC06_87314+MC10_146038+… | 2+3? | 26 |
表4 逐个增加SSR标记对大顶苦瓜种质资源的区分结果
Table 4 The identification of Dading bitter gourd germplasm resources through gradually adding SSR markers
标记组合 Marker combination | 区分材料编号 Number of distinguished materials | 区分开的材料 累计数量 Cumulative number of distinguished materials |
---|---|---|
MC05_69594 | 19+24+26 | 3 |
MC05_69594+MC04_50530 | 1+7+9+10+11+12+14+15+16+17+22+23 | 15 |
MC05_69594+MC04_50530+MC06_87314 | 5+6+18+25 | 19 |
MC05_69594+MC04_50530+MC06_87314+MC10_146038 | 4+8+13+20+21 | 24 |
MC05_69594+MC04_50530+MC06_87314+MC10_146038+… | 2+3? | 26 |
图3 苦瓜4个核心SSR标记在28份种质资源中的PCR扩增带型图谱 N表示无扩增。
Fig.3 PCR amplification band patterns of 4 core SSR markers in 28 bitter gourd germplasm resources N indicates no amplification.
编号 Number | 材料名称 Material name | 标记代码1) Marker code |
---|---|---|
1 | 东来大顶Donglai | 1-1-1-1 |
2 | 1号大顶NO.1 | 2-2-2-2 |
3 | 3号大顶NO.3 | 2-2-2-2 |
4 | 翠绿三号Cuilyu NO.3 | 3-3-3-3 |
5 | 清蔬2号Qingshu NO.2 | 2-1-1-4 |
6 | 金利塔Jinlita | 2-1-2-2 |
7 | 巨顶大顶Juding | 4-4-3-4 |
8 | 珍珠大顶Zhenzhu | 5-3-4-2 |
9 | 超绿大顶Chaolyu | 2-4-3-2 |
10 | 科丰大顶Kefeng | 2-1-3-2 |
11 | 利农珍珠LNzhenzhu | 2-5-3-2 |
12 | 博优特804 BYT 804 | 4-3-1-2 |
13 | 翠绿厚肉Cuilyu HR | 5-3-4-3 |
14 | 金顶3号Jinding NO.3 | 6-1-3-3 |
15 | 华鼎3号Huading NO.3 | 2-3-2-2 |
16 | 真功夫13号Zhengongfu NO.13 | 7-5-3-2 |
17 | 特大大顶Teda | 1-3-3-2 |
18 | 青蕾1号Qinglei NO.1 | 7-1-3-2 |
19 | 美鼎8号Meiding NO.8 | 8-1-5-2 |
20 | 江门大顶Jiangmen | 3-3-3-2 |
21 | 鼎胜大顶Dingsheng | 5-3-4-5 |
22 | 谭边大顶Tanbian | 7-3-2-2 |
23 | 广良2号Guangliang NO.2 | 3-1-1-4 |
24 | 江门F Jiangmen F | 9-3-2-2 |
25 | 惠州F Huizhou F | 7-1-6-6 |
26 | 苹果大顶Pingguo | 10-3-7-2 |
表5 大顶苦瓜种质资源的SSR带型指纹图谱代码
Table 5 The SSR fingerprinting codes of Dading bitter gourd germplasm resources
编号 Number | 材料名称 Material name | 标记代码1) Marker code |
---|---|---|
1 | 东来大顶Donglai | 1-1-1-1 |
2 | 1号大顶NO.1 | 2-2-2-2 |
3 | 3号大顶NO.3 | 2-2-2-2 |
4 | 翠绿三号Cuilyu NO.3 | 3-3-3-3 |
5 | 清蔬2号Qingshu NO.2 | 2-1-1-4 |
6 | 金利塔Jinlita | 2-1-2-2 |
7 | 巨顶大顶Juding | 4-4-3-4 |
8 | 珍珠大顶Zhenzhu | 5-3-4-2 |
9 | 超绿大顶Chaolyu | 2-4-3-2 |
10 | 科丰大顶Kefeng | 2-1-3-2 |
11 | 利农珍珠LNzhenzhu | 2-5-3-2 |
12 | 博优特804 BYT 804 | 4-3-1-2 |
13 | 翠绿厚肉Cuilyu HR | 5-3-4-3 |
14 | 金顶3号Jinding NO.3 | 6-1-3-3 |
15 | 华鼎3号Huading NO.3 | 2-3-2-2 |
16 | 真功夫13号Zhengongfu NO.13 | 7-5-3-2 |
17 | 特大大顶Teda | 1-3-3-2 |
18 | 青蕾1号Qinglei NO.1 | 7-1-3-2 |
19 | 美鼎8号Meiding NO.8 | 8-1-5-2 |
20 | 江门大顶Jiangmen | 3-3-3-2 |
21 | 鼎胜大顶Dingsheng | 5-3-4-5 |
22 | 谭边大顶Tanbian | 7-3-2-2 |
23 | 广良2号Guangliang NO.2 | 3-1-1-4 |
24 | 江门F Jiangmen F | 9-3-2-2 |
25 | 惠州F Huizhou F | 7-1-6-6 |
26 | 苹果大顶Pingguo | 10-3-7-2 |
[2] | CUI J J, YANG Y, LUO S B, et al. Whole-genome sequencing provides insights into the genetic diversity and domestication of bitter gourd (Momordica spp.)[J]. Horticulture Research, 2020, 7: 85. |
[3] | ELLEGREN H. Microsatellites: simple sequences with complex evolution[J]. Nature Reviews Genetics, 2004, 5(6): 435-445. |
[4] | 苗晗, 张圣平, 顾兴芳, 等. 中国黄瓜主栽品种SSR遗传多样性分析及指纹图谱构建[J]. 植物遗传资源学报, 2014, 15(2): 333-341. |
MIAO H, ZHANG S P, GU X F, et al. Genetic diversity analysis and fingerprinting construction of Chinese cucumber main cultivars by simple sequence repeat polymorphisms[J]. Journal of Plant Genetic Resources, 2014, 15(2): 333-341. (in Chinese with English abstract) | |
[5] | 王蕾, 王福全, 尹惠萍, 等. 基于SSR标记的黄瓜栽培品种遗传多样性分析及指纹图谱构建[J]. 分子植物育种, 2021, 19(8): 2668-2677. |
WANG L, WANG F Q, YIN H P, et al. Genetic diversity analysis and construction of DNA fingerprint with SSR markers for cucumber cultivars[J]. Molecular Plant Breeding, 2021, 19(8): 2668-2677. (in Chinese with English abstract) | |
[6] | 李超, 杨英, 陈伟, 等. 西州密系列甜瓜SSR指纹图谱构建及聚类分析[J]. 园艺学报, 2022, 49(3): 622-632. |
LI C, YANG Y, CHEN W, et al. Construction of DNA fingerprinting and clustering analysis with SSR markers for the muskmelon of xizhoumi series[J]. Acta Horticulturae Sinica, 2022, 49(3): 622-632. (in Chinese with English abstract) | |
[7] | 徐彦刚, 姚协丰, 李良俊, 等. 西瓜核心种质遗传多样性分析及指纹图谱构建[J]. 分子植物育种, 2021, 19(1): 305-317. |
XU Y G, YAO X F, LI L J, et al. Analysis of genetic diversity and construction of DNA fingerprints for watermelon core germplasms[J]. Molecular Plant Breeding, 2021, 19(1): 305-317. (in Chinese with English abstract) | |
[8] | CUI J J, CHENG J W, NONG D G, et al. Genome-wide analysis of simple sequence repeats in bitter gourd (Momordica charantia)[J]. Frontiers in Plant Science, 2017, 8: 1103. |
[9] | 周银慧, 洪宇, 曹毅, 等. 基于苦瓜转录组序列的SSR分子标记开发[J]. 分子植物育种, 2021, 19(6): 1933-1939. |
[1] | CUI J J, ZHOU Y H, ZHONG J, et al. Genetic diversity among a collection of bitter gourd (Momordica charantia L.) cultivars[J]. Genetic Resources and Crop Evolution, 2022, 69(2): 729-735. |
[9] | ZHOU Y H, HONG Y, CAO Y, et al. Development of SSR molecular markers for Momordica charantia based on transcriptome sequences[J]. Molecular Plant Breeding, 2021, 19(6): 1933-1939. (in Chinese with English abstract) |
[10] | SAXENA S, SINGH A, ARCHAK S, et al. Development of novel simple sequence repeat markers in bitter gourd (Momordica charantia L.) through enriched genomic libraries and their utilization in analysis of genetic diversity and cross-species transferability[J]. Applied Biochemistry and Biotechnology, 2015, 175(1): 93-118. |
[11] | DHILLON N P S, SANGUANSIL S, SCHAFLEITNER R, et al. Diversity among a wide Asian collection of bitter gourd landraces and their genetic relationships with commercial hybrid cultivars[J]. Journal of the American Society for Horticultural Science, 2016, 141(5): 475-484. |
[12] | 崔竣杰, 程蛟文, 曹毅, 等. 基于SSR标记和表型性状构建苦瓜核心种质的研究[J]. 中国蔬菜, 2022(2): 25-32. |
CUI J J, CHENG J W, CAO Y, et al. Studies on construction of bitter gourd core collection based on SSR markers and phenotypic traits[J]. China Vegetables, 2022(2): 25-32. (in Chinese with English abstract) | |
[13] | 李光光, 郑岩松, 李向阳, 等. 利用SSR分子标记研究苦瓜资源的遗传多样性[J]. 南方农业学报, 2013, 44(1): 6-11. |
LI G G, ZHENG Y S, LI X Y, et al. Genetic diversity analysis in bitter gourd germplasm resources based on SSR molecular markers[J]. Journal of Southern Agriculture, 2013, 44(1): 6-11. (in Chinese with English abstract) | |
[14] | 李光光, 郑岩松, 李向阳, 等. 苦瓜种质资源SSR遗传多样性分析[J]. 分子植物育种, 2016, 14(7): 1914-1922. |
LI G G, ZHENG Y S, LI X Y, et al. Genetic diversity of bitter gourd germplasm resources revealed by SSR analysis[J]. Molecular Plant Breeding, 2016, 14(7): 1914-1922. (in Chinese with English abstract) | |
[15] | 姚春鹏, 张晓爱, 吴廷全, 等. 用于长绿2号苦瓜种子纯度鉴定的SSR分子标记的开发[J]. 分子植物育种, 2019, 17(11): 3660-3664. |
YAO C P, ZHANG X A, WU T Q, et al. Development of SSR molecular markers for seed purity identification of bitter gourd hybrid changlü No.2[J]. Molecular Plant Breeding, 2019, 17(11): 3660-3664. (in Chinese with English abstract) | |
[16] | 刘子记, 詹园凤, 杨衍. 利用SSR标记鉴定热研二号油绿苦瓜杂交种纯度[J]. 生物技术通报, 2014(2): 75-78. |
LIU Z J, ZHAN Y F, YANG Y. Hybrid purity identification of reyan No. 2 using SSR markers[J]. Biotechnology Bulletin, 2014(2): 75-78. (in Chinese with English abstract) | |
[17] | 刘子记, 牛玉, 杨衍. 热研一号油绿苦瓜种子纯度的SSR鉴定[J]. 热带作物学报, 2013, 34(11): 2179-2182. |
LIU Z J, NIU Y, YANG Y. Identification of bitter gourd ‘Reyan No.1’ seed purity by SSR markers[J]. Chinese Journal of Tropical Crops, 2013, 34(11): 2179-2182. (in Chinese with English abstract) | |
[18] | LIU K J, MUSE S V. PowerMarker: an integrated analysis environment for genetic marker analysis[J]. Bioinformatics, 2005, 21(9): 2128-2129. |
[19] | BOTSTEIN D, WHITE R L, SKOLNICK M, et al. Construction of a genetic linkage map in man using restriction fragment length polymorphisms[J]. American Journal of Human Genetics, 1980, 32(3): 314-331. |
[20] | 陈亮, 郑宇宏, 范旭红, 等. 吉林省新育成大豆品种SSR指纹图谱身份证的构建[J]. 大豆科学, 2016, 35(6): 896-901. |
CHEN L, ZHENG Y H, FAN X H, et al. Establishment of SSR fingerprint ID for new soybean varieties in Jilin[J]. Soybean Science, 2016, 35(6): 896-901. (in Chinese with English abstract) | |
[21] | AJINATH L S, MATHEW D. Genome-wide mining of potentially-hypervariable microsatellites and validation of markers in Momordica charantia L[J]. Genetica, 2022, 150(1): 77-85. |
[22] | URASAKI N, TAKAGI H, NATSUME S, et al. Draft genome sequence of bitter gourd (Momordica charantia), a vegetable and medicinal plant in tropical and subtropical regions[J]. DNA Research, 2017, 24(1): 51-58. |
[23] | MATSUMURA H, HSIAO M C, LIN Y P, et al. Long-read bitter gourd (Momordica charantia) genome and the genomic architecture of nonclassic domestication[J]. Proceedings of the National Academy of Sciences of the United States of America, 2020, 117(25): 14543-14551. |
[24] | 徐云碧, 王冰冰, 张健, 等. 应用分子标记技术改进作物品种保护和监管[J]. 作物学报, 2022, 48(8): 1853-1870. |
XU Y B, WANG B B, ZHANG J, et al. Enhancement of plant variety protection and regulation using molecular marker technology[J]. Acta Agronomica Sinica, 2022, 48(8): 1853-1870. (in Chinese with English abstract) | |
[25] | 冯鹏龙, 韩睿, 王亚艺, 等. 基于SSR标记辣椒品种DNA指纹图谱的构建[J]. 西北农业学报, 2022, 31(3): 320-327. |
FENG P L, HAN R, WANG Y Y, et al. Construction of DNA fingerprints of pepper (Capsicum annuum L.) varieties based on SSR markers[J]. Acta Agriculturae Boreali-Occidentalis Sinica, 2022, 31(3): 320-327. (in Chinese with English abstract) | |
[26] | 任重, 白倩, 苏淑钗. 基于SSR分子标记的中国黄连木遗传多样性分析[J]. 西北植物学报, 2022, 42(9): 1530-1539. |
REN Z, BAI Q, SU S C. Genetic diversity analysis of Pistacia chinensis bunge based on SSR markers[J]. Acta Botanica Boreali-Occidentalia Sinica, 2022, 42(9): 1530-1539. (in Chinese with English abstract) | |
[27] | 管俊娇, 杨龙, 木万福, 等. 利用SSR标记构建青花菜的分子身份证[J]. 中国蔬菜, 2021(12): 39-45. |
GUAN J J, YANG L, MU W F, et al. Molecular identity card establishment for broccoli (Brassica oleracea L. var. italica Plenck) accessions using SSR markers[J]. China Vegetables, 2021(12): 39-45. (in Chinese with English abstract) | |
[28] | 魏传正, 王朦, 张鹏, 等. 基于二代测序技术的MNP标记鉴别刺芹侧耳菌株[J]. 食用菌学报, 2023, 30(1): 1-9. |
WEI C Z, WANG M, ZHANG P, et al. Identification of Pleurotus eryngii strains by MNP makers based on next-generation sequencing[J]. Acta Edulis Fungi, 2023, 30(1): 1-9. (in Chinese with English abstract) |
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