[1] 宫珂,靳瑰丽,隋晓青,等. 我国无芒雀麦种质资源分布、育种及利用现状分析[J]. 黑龙江畜牧兽医,2019(21):9-32,36 [2] 郭孝,郭良兴,刘党标. 无芒雀麦在单播及混播下牧草产量和品质的分析[J]. 中国草食动物科学,2018(5):62-65 [3] Saeidnia F,Majidi M M,Mirlohi A, et al. Inheritance and combining ability of persistence and drought recovery in smooth bromegrass (Bromus inermis L.)[J]. Euphytica,2019,215(10):177 [4] 当周吉. 高寒牧区无芒雀麦优质高产栽培技术[J]. 青海草业,2010,19(02):45-47 [5] 赵云鹏,齐宝林,高国臣,等. 水土保持优良牧草-无芒雀麦[J]. 吉林林业科技,2005(06):5-7,12 [6] 杨曌,李红,杨伟光,等. ‘龙江’无芒雀麦新品种选育报告[J]. 草地学报,2017(03):157-162 [7] Hirschhorn J N,Daly M J. Genome-wide association studies for common diseases and complex traits[J]. Nature Reviews Genetics,2005,6(2):95-108 [8] HansenM,Kraft T,Ganestam S,et al. Linkage disequilibrium mapping of the bolting gene in sea beet using AFLP markers[J]. Genetical Research,2001,77(1):61-66 [9] 侯莉娟,齐晓,齐冬梅,等. 用于羊草基因分型的SNP分子标记技术研究[J]. 草业学报,2016,25(02):105-113 [10] Li X,Acharya A,Farmer A D, et al. Prevalence of single nucleotide polymorphism among 27 diverse alfalfa genotypes as assessed by transcriptome sequencing[J]. BMC Genomics,2012,13(1):568 [11] 刘红占,王俊生,胡利宗,等. 全基因组关联分析在油菜遗传育种中的应用和研究进展[J]. 分子植物育种,2018,16(08):2563-2570 [12] Huang X,Han B. Natural Variations and Genome-Wide Association Studies in Crop Plants[J]. Annual Review of Plant Biology,2014,65(1):531-551 [13] Hall D,Tegström C,Ingvarsson P K. Using association mapping to dissect the genetic basis of complex traits in plants[J]. Briefings in FunctionalGenomics,2010,9(2):157-165 [14] Mora F,Castillo D,Lado B,et al. Genome-wide association mapping of agronomic traits and carbon isotope discrimination in a worldwide germplasm collection of spring wheat using SNP markers[J]. Molecular Breeding,2015,35(2):69 [15] 徐柱. 中国牧草手册[M]. 北京:化学工业出版社,2004:204 [16] 李志勇,师文贵. 无芒雀麦种质资源描述规范和数据标准[S]. 中国农业出版社,2007:1 [17] Roullier C,Kambouo R,Paofa J,et al. On the origin of sweet potato (Ipomoea batatas (L.) Lam.) genetic diversity in New Guinea,a secondary centre of diversity[J]. Heredity,2013,110(6):594-604 [18] Davey J W,Cezard T,Fuentes-Utrilla P,et al. Special features of RAD Sequencing data:implications for genotyping[J]. Molecular Ecology,2013,22(11):3151-3164 [19] Olivier J. Hardy,Xavier Vekemans. SPAGeDI:A versatile computer program to analyze spatial genetic structure at the individual or population levels[J]. Molecular Ecology Notes,2002(4):618-620 [20] Jose Alberto Ramírez-Valiente,David Sánchez-Gómez,Aranda I. Phenotypic plasticity and local adaptation in leaf eco-physiological traits of 13 contrasting cork oak populations under different water availabilities[J]. Tree Physiology,2010,30(5):618-627 [21] 宫珂,靳瑰丽,李陈建,等. 天山北坡野生无芒雀麦的表型性状[J]. 生态学杂志,2019,38(9):2615-2621 [22] Harris B P,Stokesbury K D E. The spatial structure of local surficial sediment characteristics on Georges Bank,USA[J]. Continental Shelf Research,2010,30(17):1840-1853 [23] 武玉国,吴承来,秦保平,等. 黄淮冬麦区175个小麦品种的遗传多样性及SSR标记与株高和产量相关性状的关联分析[J]. 作物学报,2012,8(06):1018-1028 [24] Jiang D,Ye Q L,Wang F S,Li C A. The mining of citrus EST-SNP and its application in cultivar discrimination[J]. Agricultural Sciences in China,2010,9(2):179-190 [25] 田青松,韩冰,杨劼,等. 96份雀麦属材料遗传多样性的ISSR分析[J]. 中国草地学报,2010(01):20-27 [26] 张雪,刘青松,师文贵,等. 25份无芒雀麦种质资源遗传多样性的ISSR分析[J]. 中国草地学报,2014,36(03):104-107,120 [27] 周琳,段玉,文博,等. SNP分子标记及其在木本植物遗传育种的应用[J]. 亚热带植物科学,2018,139(02):89-95 [28] 张彦军,苟作旺,王兴荣,等. 西北地区和尚头小麦遗传多样性及农艺性状的关联分析[J]. 草业学报,2019,28(02):145-158 [29] 苏艳,胡建斌,黄松,等. 甜瓜地方品种6个产量相关性状与SSR标记的关联分析[J]. 农业生物技术学报,2013,21(11):1337-1344 [30] Zhao X,Huang L,Zhang X,et al. Construction of high-density genetic linkage map and identification of flowering-time QTLs in orchard grass using SSRs and SLAF-seq[J]. Scientific Reports,2016,6:29345 [31] 赵丹阳,朱婷,王卫东,等. 黄淮麦区部分小麦品种(系)重要产量性状全基因组关联分析[J]. 麦类作物学报,2018,38(11):62-71 |