数字农科院2.0

Genetic relatedness among cultivated and wild mulberry (Moraceae : Morus) as revealed by inter-simple sequence repeat analysis in China

文献类型: 外文期刊

作者: Zhao Weiguo;Zhou Zhihua;Miao Xuexia;Wang Sibao;Zhang Lin;Pan Yile;Huang Yongping

作者机构:

关键词: Morus L.;genetic diversity;inter-simple sequence repeat;relatedness

期刊名称: CANADIAN JOURNAL OF PLANT SCIENCE

ISSN: 0008-4220

年卷期: 2006 年 86 卷 1 期

页码:

收录情况: SCI

摘要: The genetic diversity of 27 mulberry (Morus spp.) genotypes mainly from China was investigated using inter-simple sequence repeat (ISSR) markers to assist in addressing breeding objectives and conserving existing genetic resources. Of the 22 primers screened, 15 produced highly reproducible ISSR bands. Using these 15 primers, 138 discernible DNA fragments were generated with 126 (91.3%) being polymorphic, indicating considerable genetic variation among the mulberry genotypes studied. Genetic similarity ranged from 0.6014 between Yu 2 and Yu 711 to 0.9493 between Cuizhisang and Dejiang 10. The phenetic dendrogram based on ISSR data generated by the unweighed pair group method with arithmetical averages (UPGMA) method grouped the 27 accessions into two major clusters: cluster I, cultivated mulberry species (M. multicaulis Perr., M. alba Linn., M. atropurpurea oxb., M. bombycis Kiodz., M. australis Poir., M. rotundiloba Kiodz., M. alba var. pendula Dipp., M. alba var. macrophylla Loud., and M. alba var. venose Delile.); and cluster II, wild mulberry species (M. cathayana Hemsl., M. laevigata Wall., M. wittiorum Hand-Mazz., M. nigra Linn., and M. mongolica Schneid.). Our molecular analyses agree with the existing morphological classification of Morus and clarify the genetic relationships among mulberry species.

分类号:

  • 相关文献

[1]Genetic diversity among tea cultivars from China, Japan and Kenya revealed by ISSR markers and its implication for parental selection in tea breeding programmes. Yao, M. Z.,Chen, L.,Yao, M. Z.,Liang, Y. R.. 2008

[2]Accuracy of pastoralists' memory-based kinship assignment of Ankole cattle: a microsatellite DNA analysis. Kugonza, D. R.,Kiwuwa, G. H.,Mpairwe, D.,Nabasirye, M.,Kugonza, D. R.,Jianlin, H.,Okeyo, A. M.,Hanotte, O.,Jianlin, H.. 2012

[3]Genetic linkage map construction for kenaf using SRAP, ISSR and RAPD markers. Chen, Mei-xia,Wei, Cheng-lin,Qi, Jian-min,Tao, Ai-fen,Wu, Wei-ren,Chen, Xing-bo,Su, Jian-guang,Li, Ai-Qing. 2011

[4]Genomic Analyses Reveal Selection Footprints I.n Rice Landraces Grown U nder On-Farm Conservation Conditions During A Short-Term Period Of Domestication. Cui, Di,Qiao, Yongli,Li, Ruiqiang,Xu, Furong,Koh, Hee:Jong,Han, Longzhi,Dai, Luyuan,Lu, Hongfeng,Li, Jinmei,Zhang, Enlai,Wang, Yanjie,Tang, Cuifeng,Ma, Xiaoding,A, Xinxiang,Cao, Guilan,Tian, Shilin,Cui, Di,Yu, Tengqiong. 2019

[5]Analysis Of Genetic Diversity And P.opulation Structure In Upland C otton (Gossypium Hirsutum L.) Germplasm Using Simple Sequence Repeats. Seyoum, Mulugeta,Du, Xiong Ming,He, Shou Pu,Jia, Yin Hua,Pan, Zhaoe,Sun, Jun Ling,Seyoum, Mulugeta. 2018

[6]Development of 107 SSR markers from whole genome shotgun sequences of Chinese bayberry (Myrica rubra) and their application in seedling identification. Jia, Hui-min,Shen, Yu-tong,Jiao, Yun,Dong, Xiao,Jia, Hui-juan,Du, Fang,Gao, Zhong-shan,Wang, Guo-yun,Liang, Sen-miao,Zhou, Chao-chao,Mao, Wei-hua. 2014

[7]Genetic diversity associated with conservation of endangered Dongxiang wild rice (Oryza rufipogon). Xie, J.,Hu, B.,Xie, J.,Kong, D.,Hu, B.,Wan, Y.,Agrama, H. A.,Hu, B.,Zhuang, J.,Yan, W..

[8]Phylogenetic Analysis of Citrus tristeza virus Isolates of Wild Type Citrus in China. Yi Long,Zhou Chang-yong,Yi Long. 2014

[9]Geographical patterns of Toxoplasma gondii genetic diversity revealed by multilocus PCR-RFLP genotyping. Shwab, E. Keats,Majumdar, Debashree,Su, Chunlei,Zhu, Xing-Quan,Su, Chunlei,Pena, Hilda F. J.,Gennari, Solange M.,Dubey, Jitender P.. 2014

[10]Genetic diversity and differentiation of Acanthoscelides obtectus Say (Coleoptera: Bruchidae) populations in China. Duan, Canxing,Zhu, Zhendong,Wang, Xiaoming,Li, Wanchang,Bao, Shiying.

[11]Analysis of genetic diversity in Arrhenatherum elatius Germplasm using inter-simple sequence repeat (ISSR) markers. Meng, Lin,Yang, Hong Xin,Mao, Pei Chun,Sun, Fu Ding,Gao, Hong Wen. 2011

[12]Assessing genetic diversity of Chinese cultivated barley by STS markers. Chen, Xiwen,Guo, Shaoying,Chen, Defu,Liu, Pin,Jia, Xiangdong,Sun, Lijun. 2006

[13]On the use of SSR markers for the genetic characterization of the Agropyron cristatum (L.) Gaertn. in Northern China. Che, Y. H.,Li, H. J.,Yang, X. M.,Li, X. Q.,Li, L. H.,Che, Y. H.,Yang, Y. P.. 2008

[14]Study on molecular genetic diversity of native duck breeds in China. Li, H.,Yang, N.,Chen, K.,Chen, G.,Tang, Q.,Tu, Y.,Yu, Y.,Ma, Y.. 2006

[15]Development of SSR molecular markers for Allium mongolicum. Hu, Jing,Hu, Xiaoke,Zhang, Jinhu,Fan, Baoli,Yu, Qiushi,Zhang, Qian.

[16]Assessment of genetic diversity among selected groundnut germplasm. I: RAPD analysis. Dwivedi, SL,Gurtu, S,Chandra, S,Yuejin, W,Nigam, SN. 2001

[17]AFLP-Based Genetic Diversity among the Populations of Rosa laxa in Tianshan Mountains of Xinjiang, China. Yang, S. H.,Guo, N.,Ge, W. Y.,Ge, H.. 2013

[18]Cross-species applicability of chicken microsatellite markers for investigation of genetic diversity in Indian duck (Anas platyrhynchos) populations. Mukesh,Sathyakumar, S.,Mukesh,Javed, Ruheena,Javed, Ruheena,Gaur, Uma,Han Jianlin. 2011

[19]Genetic diversity and geographical peculiarity of Tibetan wild soybean (Glycine soja). Wang, Ke-Jing,Li, Xiang-Hua. 2012

[20]Molecular diversity and multilocus organization of the parental lines used in the International Rice Molecular Breeding Program. Yu, SB,Xu, WJ,Vijayakumar, CHM,Ali, J,Fu, BY,Xu, JL,Jiang, YZ,Marghirang, R,Domingo, J,Aquino, C,Virmani, SS,Li, ZK. 2003

作者其他论文 更多>>