1 |
贾慎修, 陈默君.中国饲用植物. 北京: 中国农业出版社, 2002.
|
2 |
蒋尤泉. 中国作物及其野生资源近缘植物·饲用及绿肥作物卷. 北京: 中国农业出版社, 2008.
|
3 |
刘国道, 杨虎彪.中国南方牧草志. 北京: 科学出版社, 2022.
|
4 |
赖志强. 广西饲用植物志. 南宁: 广西科学技术出版社, 2010.
|
5 |
应朝阳, 陈恩, 李春燕, 等. 福建饲用植物名录. 北京: 科学出版社, 2018.
|
6 |
贾存智, 王彦荣, 李欣勇. 施氮对无芒隐子草种子产量的影响. 草业科学, 2014, 31(9): 1746-1751.
|
7 |
Zhang J Y, Wu F, Yan Q, et al. The genome of Cleistogenes songorica provides a blueprint for functional dissection of dimorphic flower differentiation and drought adaptability. Plant Biotechnology Journal, 2021, 19(3): 532-547.
|
8 |
Wang Z Y, Brummer E C. Is genetic engineering ever going to take off in forage, turf and bioenergy crop breeding. Annals of Botany, 2012, 110(6): 1317-1325.
|
9 |
Barros J, Temple S, Dixon R A. Development and commercialization of reduced lignin alfalfa. Current Opinion in Biotechnology, 2019, 56: 48-54.
|
10 |
Johnson L J, Voisey C R, Faville M J, et al. Advances and perspectives in breeding for improved grass-endophyte associations//Huguein-Elie O, Studer B, Kölliker R, et al, eds. Improving sown grasslands through breeding and management. Proceedings of the Joint 20th Symposium of the European Grassland Federation and the 33rd Meeting of the EUCARPIA Section ‘Fodder Crops and Amenity Grasses’ Zürich, Switzerland. Wageningen: Wageningen Academic Publishers, 2019.
|
11 |
李锦华, 田福平, 马振宇.苜蓿新品种“中兰1号”的选育及其栽培要点. 中国草食动物, 2008, 8(1): 43-45.
|
12 |
李亚姝, 温雅洁, 赵晓东, 等.施钾对紫花苜蓿苗期光合特性及抗蓟马的影响. 草原与草坪, 2021, 41(4): 42-48, 55.
|
13 |
Duan Z, Zhang D, Zhang J, et al. Co-transforming bar and CsALDH genes enhanced resistance to herbicide and drought and salt stress in transgenic alfalfa (Medicago sativa L.). Frontiers in Plant Science, 2015, 6: DOI: 10.3389/fpls.2015.01115.
|
14 |
Zhang J, Duan Z, Zhang D, et al. Co-transforming bar and CsLEA enhanced tolerance to drought and salt stress in transgenic alfalfa (Medicago sativa L.). Biochemical and Biophysical Research Communications, 2016, 472(1): 75-82.
|
15 |
罗栋. 紫花苜蓿耐旱基因挖掘及MsNTF2L和MsDIUP1的耐旱功能解析. 兰州: 兰州大学, 2020.
|
16 |
Bao A K, Du B Q, Touil L, et al. Co-expression of tonoplast Cation/H+ antiporter and H+-pyrophosphatase from xerophyte Zygophyllum xanthoxylum improves alfalfa plant growth under salinity, drought and field conditions. Plant Biotechnology Journal, 2016, 14(3): 964-975.
|
17 |
罗雯. 转PeDREB2a和KcERF基因紫花苜蓿新材料的获得与抗性分析. 兰州: 兰州大学, 2018.
|
18 |
王可心, 刘燕蓉, 仇入梦, 等. 转QQS基因提高紫花苜蓿品质//中国草学会年会论文集. 广州: 中国草学会, 2017.
|
19 |
张婧. T2代共表达ZxNHX1-ZxVP1-1转基因紫花苜蓿抗旱耐盐性评价及ZxNHX1和PcCLCg对紫花苜蓿的聚合转化. 兰州: 兰州大学, 2019.
|
20 |
Wang K, Liu Y, Teng F, et al. Heterogeneous expression of Osa-MIR156bc increases abiotic stress resistance and forage quality of alfalfa. Crop Journal, 2021, 9(5): 1135-1144.
|
21 |
Guan C, Cui X, Liu H, et al. Proline biosynthesis enzyme genes confer salt tolerance to switch grass (Panicum virgatum L.) in cooperation with polyamines metabolism. Frontiers in Plant Science, 2020, 11: DOI: 10.3389/fpls.2020.00046.
|
22 |
张伟伟, 袁蓓, 张占路, 等. 禽流感血凝素HA超表达载体的构建及高表达百脉根的获得. 草业学报, 2014, 23(4): 138-145.
|
23 |
Zhou M L, Ma J T, Zhao Y M, et al. Improvement of drought and salt tolerance in Arabidopsis and Lotus corniculatus by overexpression of a novel DREB transcription factor from Populus euphratica. Gene, 2012, 506(1): 10-17.
|
24 |
Wang D, Luo W, Khurshid M, et al. Co-expression of PeDREB2a and KcERF improves drought and salt tolerance in transgenic Lotus corniculatus. Journal of Plant Growth Regulation, 2018, 37(2): 550-559.
|
25 |
杨宝萍, 郭欢, 施颖, 等. 紫花苜蓿叶酸合成关键酶GCHI和ADCS编码基因的克隆及分析. 植物生理学报, 2017, 53(7): 1234-1244.
|
26 |
Bao G, Zhuo C, Qian C, et al. Co-expression of NCED and ALO improves vitamin C level and tolerance to drought and chilling in transgenic tobacco and stylo plants. Plant Biotechnology Journal, 2016, 14: 206-214.
|
27 |
李春杰, 王正凤, 陈泰祥, 等. 利用禾草内生真菌创制大麦新种质. 科学通报, 2021, 66(20): 2608-2617.
|
28 |
Chen Z, Li C, Nan Z, et al. Segregation of Lolium perenne into a subpopulation with high infection by endophyte Epichloë festucae var. lolii results in improved agronomic performance. Plant and Soil, 2020, 446(1): 595-612.
|
29 |
王雪萌, 张涵, 宋瑞, 等. 中美牧草种子生产比较. 草地学报, 2021, 29(10): 2115-2125.
|
30 |
张蕊. 国外草坪种子生产现状. 2018. http://www.caoye.org/hangyezixun/186.html.
|
31 |
Fairey D T, Hampton J G. Forage seed production, Volume 1: Temperate species. Wallingford: CABI Publishing, 1997.
|
32 |
Loch D S, Ferguson J E. Forage seed production, Volume 2: Tropical and subtropical species. Wallingford: CABI Publishing, 1999.
|
33 |
南志标.进行野生牧草驯化、选育工作的几点体会. 草原科技资料, 1975, 4: 193-201.
|
34 |
全国畜牧总站. 中国草业统计(2019). 北京: 中国农业出版社, 2019.
|
35 |
毛培胜, 王明亚.种子生产的原理与技术//南志标, 侯向阳. 草地农业的原理与实践. 北京: 科学出版社, 2021.
|
36 |
Li X Y, Wang Y R, Wei X, et al. Planting density and irrigation timing affects Cleistengenes songorica seed yield sustainability. Agronomy Journal, 2014, 106: 1690-1696.
|
37 |
Tao Q, Bai M, Han Y, et al. Optimizing between-row and within-row spacing for Artemisia sphaerocephala (Asteraceae) seed production. Industrial Crops and Products, 2019, 139: DOI:10.1016/j.indcrop.2019.111490.
|
38 |
Tao Q, Bai M, Jia C, et al. Effects of irrigation and nitrogen fertilization on seed yield, yield components, and water use efficiency of Cleistogenes songorica. Agronomy, 2021, 11(3): DOI:10.3390/agronomy11030466.
|
39 |
Jia C L, Dong D K, Zhou Q, et al. Significant cell difference of pod ventral suture in shatter-resistant and shatter-susceptible common vetch accessions. Crop Science, 2021, 61: 1749-1759.
|
40 |
Zhao Y Q, Zhang J C, Zhang Z Y, et al. Elymus nutans genes for seed shattering and candidate gene-derived EST-SSR markers for germplasm evaluation. BMC Plant Biology, 2019, 19: 102.
|
41 |
Wang Y R, Yu L, Nan Z B, et al. Vigor tests used to rank seed lot quality and predict field emergence in four forage species. Crop Science, 2004, 44(2): 535-541.
|
42 |
王彦荣, 刘友良, 沈益新. 牧草种子活力检测技术述评. 草业学报, 2001, 10(1): 48-57.
|
43 |
周晶, 王彦荣.种子半透层研究进展. 西北植物学报, 2012, 32(9): 1928-1934.
|
44 |
Hu X, Yang L, Zhang Z, et al. Differentiation of alfalfa and sweet clover seeds via multispectral imaging. Seed Science and Technology, 2020, 48(1): 83-99.
|
45 |
孙建华.苜蓿与草木樨种子鉴别技术的研究. 草地学报, 1996, 4(2): 121-125, 133.
|
46 |
Wu Y, Liu J, Luo D, et al. A universal method for rapid identification of alfalfa and burr medic seeds with an emphasis on discriminating different forage species. Grass and Forage Science, 2021, 76(3): 353-362.
|
47 |
王彦荣, 胡小文. 种子质量控制的原理与技术//南志标, 侯向阳. 草地农业的原理与实践. 北京: 科学出版社, 2021.
|
48 |
Gepts P, Hancock J. The future of plant breeding. Crop Science, 2006, 46(4): 1630-1634.
|
49 |
刘志鹏, 周强, 刘文献, 等. 中国牧草育种中的若干科学问题. 草业学报, 2021, 30(12): 184-193.
|
50 |
Zhang T J, Wang X G, Han J G, et al. Effects of between-row and within-row spacing on alfalfa seed yields. Crop Science, 2008, 48(2): 794-803.
|
51 |
全国畜牧总站. 中国草业统计(2018). 北京: 中国农业出版社, 2018.
|
52 |
潘文杰. 基于价值链的甘肃省苜蓿企业发展现状研究. 兰州: 兰州大学, 2014.
|
53 |
南志标, 王锁民, 王彦荣, 等.我国北方草地6种乡土植物抗逆机理与应用. 科学通报, 2016, 61(2): 239-249.
|
54 |
南志标, 王彦荣, 傅华, 等.乡土草抗逆生物学. 北京: 科学出版社, 2021.
|
55 |
贺金生, 卜海燕, 胡小文, 等.退化高寒草地的近自然恢复:理论基础与技术途径. 科学通报, 2020, 65(34): 3898-3908.
|