Acta Agrestia Sinica ›› 2021, Vol. 29 ›› Issue (12): 2637-2644.DOI: 10.11733/j.issn.1007-0435.2021.12.001
AN Ming-zhu, HAN Bo, JIANG Hua, DUAN Xin-hui, WEN Yi-fu, ZHOU Kai
Received:
2021-05-25
Revised:
2021-06-29
Online:
2021-12-15
Published:
2022-01-06
Contact:
周凯,E-mail:zhoukai1988@126.com
安明珠, 韩博, 姜华, 段新慧, 文亦芾, 周凯
作者简介:
安明珠(1996-),女,汉族,内蒙古通辽人,硕士研究生,主要从事牧草种质资源与利用研究,E-mail:2847568741@qq.com
基金资助:
CLC Number:
AN Ming-zhu, HAN Bo, JIANG Hua, DUAN Xin-hui, WEN Yi-fu, ZHOU Kai. Research Progress of Dactylis Species Origin and Phylogeny Analysis[J]. Acta Agrestia Sinica, 2021, 29(12): 2637-2644.
安明珠, 韩博, 姜华, 段新慧, 文亦芾, 周凯. 鸭茅物种起源与系统发育分析研究进展[J]. 草地学报, 2021, 29(12): 2637-2644.
[1] MICHAEL B J,JOHN F,TREVOR R H. Morphological and physiological traits for higher biomass production in perennial rhizomatous grasses grown on marginal land[J]. Global Change Biology Bioenergy,2015,7(2):375-385 [2] LEWANDOWSKI I,SCURLOCK J,LINDVALL E,et al. The development and current status of perennial rhizomatous grasses as energy crops in the US and Europe[J]. Biomass&Bioenergy,2003,25(4):335-361 [3] 唐露,张新全,黄琳凯,等.鸭茅的分子育种[J].草业科学,2018,35(9):2230-2240 [4] 段青松,赵燚柯,杨松,等.不同草本植物根系提高无侧限受压土体的抗剪强度[J].土壤学报,2019,56(3):650-660 [5] STEBBINS G L. Cytogenetics and Evolution of the Grass Family[J]. American journal of botany,1956,43(10):890-905 [6] 陈冬明,刘长清,朱连发,等.基于SSR分子标记的鸭茅指纹图谱构建及遗传多样性分析[J].草学,2020(3):33-38 [7] 万刚,张新全,刘伟,等.鸭茅栽培品种与野生材料遗传多样性比较的SSR分析[J].草业学报,2010,19(6):187-196 [8] ROSELYNE L,MARTIN B. sCytology,genetics,and evolution in the genus dactylis[J]. Critical Reviews in Plant Sciences,1988,7(1):55-91 [9] STEWART A V,ELLISON N. Dactylis[J]. Wild Crop Relatives:Genomic and Breeding Resources,2011:73-87 [10] AMIROUCHE N,MISSET M T. Morphological variation and distribution of cytotype in the diploid-tetraploid complex of the genus Dactylis L.(Poaceae) from Algeria[J]. Plant Systematics&Evolution,2007,264(3-4):157-174 [11] SPERANZA M,CRISTOFOLINI G. The genus Dactylis in Italy.2[J]. The diploid entities. Webbia,1987,41(2):213-224 [12] STEWART A V,ELLISON N W. Breeding strategies for sustainable forage and turf grass improvement[M].Berlin:Springer,2013:225-229 [13] 曾兵,罗登,谢文刚,等.鸭茅物种的起源、分布及其遗传多样性研究进展[J].草地学报,2014,22(3):448-454 [14] MARTIN B. The patterns of morphological variation in diploid and tetraploid Dactylis[J]. Botanical Journal of the Linnean Society,2010(368):441-452 [15] BORRILL M. Chromosomal status,gene exchange and evolution in Dactylis-1.Gene exchange in diploids and tetraploids[J]. Genetica,1962,32(3):94-117 [16] 何玮,徐远东,冉启凡,等.国内外鸭茅种质资源穗部形态多样性研究[J].草学,2018(6):17-25,31 [17] 蒋林峰,黄琳凯,李发玉,等.鸭茅重要种质DUS测试及农艺性状评价筛选[J].草地学报,2017,25(2):351-360 [18] 蒋林峰,姚超,谢文刚,等.鸭茅品种(系)表型分析及隶属函数综合评价[J].草地学报,2016,24(4):859-867 [19] 钟声,杜逸,郑德成,等.二倍体鸭茅农艺性状的初步研究[J].草地学报,1997(1):54-61 [20] SATO T,MACEIRA N,LUMARET R,et al. Flowering characteristics and fertility of interploidy progeny from normal and 2n gametes in Dactylis glomerata L.[J]. New Phytologlist,1993(124):309-319 [21] FUJIMOTO F. Genetic resources of orchardgrass (Dactylis glomerata L.) and related subspecies from warmer regions[J]. Japan Agricultural Research Quarterly,1993(27):106-111 [22] GUIGNARD G,FUJIMOTO F,YAMAGUCHI H. Studies on genetic resources of genus Dactylis I Characteristics of several subspecies and CHIAS chromosome image analysis of subsp.Himalayesis Domin[J]. Bulletin of National Grassland Research Institute,1991(45):11-23 [23] CRISTOFOLINI G,SPERANZA M. The genus Dactylis L.in Italy.2.The tetraploid entities[J]. Webbia,1986(39):379-396 [24] 黄梅芬,薛世明,高月娥,等.喜马拉雅鸭茅野生二倍体与同源四倍体农艺性状的对比研究[J].草业学报,2016,25(1):207-216 [25] RAFAEL T M,José-María M M,INMACULADA S P,et al. Flower production and phenology in Dactylis glomerata[J]. Aerobiologia,2015,31(4):469-479 [26] 毕玉芬,陈本建.新疆北部(北疆)几种苜蓿属植物遗传结构的研究[J].草业学报,1999(1):27-30 [27] 麻冬梅,张喜斌,黄婷,等.利用SSR标记对不同耐盐紫花苜蓿遗传多样性分析[J].草地学报,2019,27(6):1477-1485 [28] TAO H,LI H,LI D,et al. Assessing genetic diversity of perennial ryegrass (Lolium perenne L.) from four continents by inter-simple sequence repeat (ISSR) markers[J]. African Journal of Biotechnology,2011,10(83):19365-19374 [29] 禹靓倩,吴毅,彭继庆,等.基于ISSR分子标记的27种栎属树种亲缘关系研究[J].湖南林业科技,2020,47(5):7-13 [30] SAMMOUR R H,KARAM M A,MORSI Y S,et al. Population structure and phylogenetic relationships in Brassica rapa L.subspecies by using isozyme markers[J]. Brazilian Journal of Biology,2021,81(3):601-610 [31] 帅素容,张新全,白史且.不同倍性鸭茅同功酶比较研究[J].草业科学,1998(6):12-16 [32] LUMARET R. Protein variation in diploid and tetraploid orchard grass (Dactylis glomerata L.):Formal genetics and population polymorphism of peroxidases and malate dehydrogenases[J]. Genetica,1982,57(3):207-215 [33] 帅素容,张新全,杜逸.二倍体和四倍体野生鸭茅遗传特性比较研究[J].草地学报,1997(4):261-268 [34] ROSA N M,AGNOLETTI F,LOLLAI S,et al. Comparison of PCR-RFLP,API 20 Strep and MALDI-TOF MS for identification of Streptococcus spp. collected from sheep and goat milk samples[J]. Small Ruminant Research,2019(180):35-40 [35] TUNA M,KHADKA D K,SHRESTHA M K,et al. Characterization of natural orchardgrass (Dactylis glomerata L.) populations of the Thrace Region of Turkey based on ploidy and DNA polymorphisms[J]. Euphytica,2004,135(1):39-46 [36] 陈伟,陈瑞祥,钟理,等.贵州23份野生鸭茅种质资源的RAPD分析[J].贵州农业科学,2011,39(8):24-27 [37] 蒋明,应梦豪,徐丽娜,等.珍稀植物日本荚蒾遗传多样性的ISSR分析[J].浙江大学学报(理学版),2021,48(1):100-106 [38] 范彦,曾兵,张新全,等.中国野生鸭茅遗传多样性的ISSR研究[J].草业学报,2006(5):105-110 [39] 曾兵.鸭茅种质资源遗传多样性的分子标记及优异种质评价[D].雅安:四川农业大学,2007:60-68 [40] YANG J,DENG D,BRANDT B W,et al. Diversity of SpaP in genetic and salivary agglutinin mediated adherence among Streptococcus mutans strains[J]. Scientific Reports,2019,9(1):19943 [41] ZENG B,ZHANG X Q,LAN Y,et al. Evaluation of genetic diversity and relationshipsin orchardgrass (Dactylis glomerata L.) germplasm based on SRAP markers[J]. Canadian Journal of Plantence,2008,88(1):53-60 [42] FAN X R,WANG W C,CHEN L,et al. Genetic relationship among 12 Trapa species/varietas from Yangtze River Basin revealed by AFLP markers[J]. Aquatic Botany,2021(168):103320 [43] GAIL R,DENNIS F,STUART D M,et al. Genome Size is Negatively Correlated with Altitude in Natural Populations of Dactylis glomerata[J]. Annals of Botany,1998(82):99-105 [44] 张成林,杨晓鹏,赵文达,等.鸭茅野生种质遗传多样性的AFLP分析[J].西北植物学报,2017,37(9):1711-1719 [45] YAN P,ZHANG X,DENG Y,et al. Evaluation of genetic diversity in wild orchardgrass (Dactylis glomerata L.) based on AFLP markers[J]. Hereditas,2008,145(4):174-181 [46] 卢杰,吕媛媛,李杰勤,等.高丹草SSR引物设计及分子遗传框架图谱构建[J].中国草地学报,2009,31(2):28-33 [47] 武云鹏,李肯,张若纬,等.利用SSR分子标记技术快速鉴定津甜100甜瓜种子纯度[J].中国瓜菜,2021,34(3):27-30 [48] 陈志祥,罗小燕,李拴林,等.基于SSR标记的木豆种质资源遗传多样性与群体结构分析[J].草地学报,2021,29(5):904-911 [49] 万刚.二倍体与四倍体鸭茅的遗传多样性及其F1代杂种鉴定[D].雅安:四川农业大学,2011:20-45 [50] JIANG L F,ZHANG X Q,MA X,et al. Identification of orchardgrass (Dactylis glomerata L.) cultivars by using simple sequence repeat markers[J]. Genetics and Molecular Research,2013,12(4):5111-5123 [51] MADESIS P,ABRAHAM E M,KALIVAS A,et al. Genetic diversity and structure of natural Dactylis glomerata L. populations revealed by morphological and microsatellite-based (SSR/ISSR) markers[J]. Genetics and Molecular Research,2014,13(2):4226-4240 [52] LAST L,WIDMER F,FJELLSTAD W,et al. Genetic diversity of natural orchardgrass (Dactylis glomerata L.) populations in three regions in Europe[J]. BMC genetics,2013,14(1):1-14 [53] 杨翠.基于SCoT标记分析甘蔗种质资源遗传多样性[D].福州:福建农林大学,2010:9-49 [54] 陈大霞,张雪,王钰,等.应用SCoT标记分析玄参种质资源的遗传多样性[J].中国中药杂志,2012,37(16):2368-2372 [55] 蒋林峰,张新全,黄琳凯,等.鸭茅品种的SCoT遗传变异分析[J].草业学报,2014,23(1):229-238 [56] STEWART A V,BLLISON N W. Molecular breeding of forage and turf[M]. New York:Springer,2015:165-171 [57] HUANG L K,FENG G Y,YAN H D,et al. Genome assembly provides insights into the genome evolution and flowering regulation of orchardgrass[J]. Plant Biotechnology Journal,2020,18(2):373-388 [58] ABDURRAGIM Y,VAHDETTIN C. Genetic relationships and diversity analysis in Turkish laurel (Laurus nobilis L.) germplasm using ISSR and SCoT markers[J]. Molecular Biology Reports,2021(prepublish):1-11 [59] RAHELEHH T,MARYAM K. Interspecific Molecular Variation of Lolium L. Based on ISSR,SCoT and ITS[J]. Iranian Journal of Science and Technology,Transactions A:Science,2021(prepublish):1-10 [60] STEWART A V,JOACHIMIAK A,ELLISON N,et al. Genomic and Geographic Origins of Timothy (Phleum sp.) Based on ITS and Chloroplast Sequences[J]. Molecular Breeding of Forage and Turf,2010(6):71-82 [61] XIE W,ZHANG X,CAI H,et al. Genetic maps of SSR and SRAG markers indiploid orchardgrass (Dactylis glomerata L.) using the pseudo-testcross strategy[J]. Genome,2011,54(3):212-221 [62] SONG Y H,LIU F X,ZHU Z F,et al. Construction of a simple sequence repeat marker-based genetic linkage map in the autotetraploid forage grass Dactylis glomerata L.[J]. Grassland Science,2011,57(3):158-167 [63] XIE W G,ROBINS J G,BUSHMAN B S. A genetic linkage map of tetraploid orchardgrass (Dactylis glomerata L.) and QTL for heading date[J]. Genome,2012,55(5):360-369 [64] ZHAO X,HUANG L,ZHANG X,et al. Construction of high-density genetic linkage map and identification of flowering-time QTLs in orchardgrass using SSRs and SLAF-seq[J]. Scientific Reports,2016,6(1):29345 [65] HAMSTRA T. Nucleotide diversity and genetic relationships of orchardgrass (Dactylis glomerata L.) inferred from two regions of the chloroplast[D]. Halifax:Nova Scotia. Saint Mary's University,2016:20-45 [66] FIASSON J L,ARDOUIN P,JAY M. A phylogenetic groundplan of the specific complex Dactylis glomerata L.[J]. Biochemical Systematics and Ecology,1986,15(2):225-229 [67] BRAMWELL D. Biogeography and Ecology in the Canary Islands[M]. Dordrecht:Springer,1976:207-240 [68] HEWITT G M. Post glacial recolonisation of European biota[J]. Botanical Journal of the Linnean Society,1999,68(2):87-112 [69] SAHUQUILLO E,LUMARET R. Chloroplast DNA variation in Dactylis glomerata L. taxa endemic to the Macaronesian islands[J]. Molecular Ecology,1999(8):1797-1803 |
[1] | MA Cong-yu, HAN Chong-yang, MA Sai-nan, LI Xu-xu, CAI Jia-bang, WANG Yang, ZHANG Xin-quan, NIE Gang. The Fingerprints of 13 White Clover (Trifolium repens L.) Cultivars Based on SSR Markers [J]. Acta Agrestia Sinica, 2021, 29(9): 1892-1899. |
[2] | LUO Ming-xin, LIU Feng-min, CHEN Ji-yan, CUI Jun-tao, ZHANG Wei-li. Agronomic Traits and Genetic Diversity Analysis of M3 Generation of Stylosanthes spp. Irradiated by 60Coγ [J]. Acta Agrestia Sinica, 2021, 29(9): 1992-2000. |
[3] | LIANG Xiao-yu, JI Yang, HU Yuan-bin, YI Jun, BAI Shi-qie, ZHANG Jing, ZHANG Xin-quan. Exploitation and Universal Analysis of EST-SSR Molecular Markers in Cichorium intybus [J]. Acta Agrestia Sinica, 2021, 29(9): 2081-2090. |
[4] | LIU Ling-yun, FAN Xi-feng, TENG Ke, YUE Yue-sen, CHANG Zhi-hui, WU Ju-ying. Advances in Development of Genetic Diversity of Carex L. [J]. Acta Agrestia Sinica, 2021, 29(6): 1148-1157. |
[5] | CHEN Zhi-xiang, LUO Xiao-yan, LI Shuan-lin, WU Ru-yue, WANG Wen-qiang, DING Xi-peng. Genetic Diversity and Population Structure Analysis of the Pigeonpea (Cajanus cajanL.) Germplasm Resources Based on SSR Markers [J]. Acta Agrestia Sinica, 2021, 29(5): 904-911. |
[6] | LIANG Guo-ling, LIU Wen-hui, MA Xiang. Phenotypic Diversity of the Panicle Among 590 Covered Oats Germplasm Resources in Apline of Qinghai-Tibet Plateau [J]. Acta Agrestia Sinica, 2021, 29(3): 495-503. |
[7] | ZHANG Qi, WEI Zhen-wu, YAN Tian-fang, GENG Xiao-li. Identification and Evaluation of Genetic Diversity of Agronomic Traits in Oat Germplasm Resources [J]. Acta Agrestia Sinica, 2021, 29(2): 309-316. |
[8] | WANG Jian-li, LIU Jie-lin, ZHU Rui-fen, ZHONG Peng, YOU Jia, DI Gui-li, HAN Wei-bo, SHEN Zhong-bao. Genetic Diversity Analysis of Major Agronomic Traits in 28 Amaranthus hypochondriacus Germplasm Resources [J]. Acta Agrestia Sinica, 2020, 28(4): 1050-1059. |
[9] | YANG Yan-ting, SHI Feng-ling, XU Bo, ZHANG Yu-tong, YAN Wei. Identification and Genetic Diversity of Alfalfa Varieties [J]. Acta Agrestia Sinica, 2020, 28(4): 1060-1067. |
[10] | MA Dong-mei, ZHANG Xi-bin, HUANG Ting, WANG Weng-jing, ZHAO Li-juan, MA Qiao-li. Genetic Diversity Analysis of 10 Salt Tolerant Alfalfa [J]. Acta Agrestia Sinica, 2019, 27(6): 1477-1485. |
[11] | LIU Ya-ling, GENG Ya-ping, XIE Xiao-dong, WANG Fang, ZHANG Peng-fei. Genetic Diversity and Genetic Structure Analysis of Astragalus Based on SSR Molecular Marker [J]. Acta Agrestia Sinica, 2019, 27(5): 1154-1162. |
[12] | DENG Zhen-Shan, LI Mai-ping, HAO Lei, CHEN Kai-kai, LI Jing, LIU Yu-zhen, ZHANG Bao-bao, QI Xiang-ying. Diversity and Plant Growth Promoting Activities of the Culturable Endophytic Bacteria Associated with Pennisetum sp. [J]. Acta Agrestia Sinica, 2019, 27(5): 1213-1221. |
[13] | XU Zhen-peng, WAN Tao, CAI Ping, ZHANG Xiao-ming, YI Wei-dong, WAN Yi-chao. Study on the Relevance between Genetic Diversity of Gymnocarpos przewalskii Populations and Geographic Climatic Factors [J]. Acta Agrestia Sinica, 2018, 26(1): 70-76. |
[14] | NAN Ming, ZHAO Gui-Qin, CHAI Ji-Kuan. Phenotypic Diversity and Comprehensive Evaluations of Avena sativa L. Germplasm in Semi-arid Area of the Loess Plateau [J]. Acta Agrestia Sinica, 2017, 25(6): 1197-1205. |
[15] | LI Xiao-yan, LIAO Li-ping, GAO Yong, DANG Xiao-hong, YUCHI Wen-si, CHENG Bo, ZHANG Cen. Research Progress on Ammopiptauthus [J]. Acta Agrestia Sinica, 2017, 25(5): 921-926. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||