李海燕,王小敏,李维林 ,吴文龙(2011). 黑莓品种‘Triple Crown’快繁技术体系建立和叶片植株再生.林业科技开发 25,102 - 105.
李维林,吴文龙,张春红,闾连飞,王小敏,束怀瑞(2012). 世界黑莓产业发展和研究现状及前景.植物资源与环境学报,21,105 - 115.
刘晓微(2018). 黑莓‘Arapaho’组织培养快繁技术体系建立及叶片原生质体制备.硕士论文.成都:四川农业大学. pp. 1–74.
王丽金,苏上 (2023).一种二轮增殖式黑莓组培快繁的方法. 中国专利,CN202311056330.8,2023 - 12 - 08.
王丽玲(2004).树莓、黑莓引种驯化及组培快繁技术的研究.硕士论文.杨凌:西北农林科技大学.pp. 1-64.
王小敏,胡淑英,吴文龙等.一种黑莓组培苗叶片高效循环再生的方法.中国专利,CN201210363956.9,2014 - 04 - 16.
薛陈心(2013). 欧洲黑莓 ' 冬福瑞 ' 组织培养及染色体观察.硕士论文.保定:河北农业大学. pp. 1-30.
杨媛(2024). 氮肥水平对不同树龄黑莓生长发育及果实品质的影响.硕士学位论文.南京:南京林业大学. pp. 1-119.
赵雨佳,郜影卓(2022).南林大培育良种黑莓助力百姓致富.林业科技通讯,09,55.
Aguilera - Arango, G. A., Gómez - López, E. D.,González - Mejia, A. (2019). Callogénesisen cultivares híbridos de Cocos nucifera L. mediante cultivo in vitro de inflorescencias in maduras. Biotecnología Vegetal, 19, 277 - 284.
Baghdady, G. A. (2021). In Vitro Propagation of Blackberries (Rubus sp) Prime - Ark 45 Cultivar. Annals of Agricultural Science, Moshtohor, 59, 287 - 294.
Bray, M., Rom, C. C.,Clark, J. R. (2003). Propagation of thornless Arkansas blackberries by hardwood cuttings.Discovery, The Student Journal of Dale Bumpers College of Agricultural, Food and Life Sciences,4, 9-13.
Clark, John R. Blackberry plant named ‘APF-190T’. U.S. Patent, US PP28,598 P3, 2017-11-07.
Clapa, D., H?R?A, M.,CORDEA, M. I. (2024). Propagation of blackberry cultivars in three in vitro culture systems and evaluation of genetic uniformity. Journal of Central European Agriculture, 25, 1076 - 1087.
Debner, A. R., Hatterman-Valenti, H., Takeda, F. (2019). Blackberry propagation limitations when using floricane cuttingsHortTechnology,29, 276-282.
D?nmez, B. A., Polat, ?., Hamakhan, A. M.,Kafkas, N. E. (2024). Methods of Blackberry Propagation in vitro Condition. In BIO Web of Conferences. 85,01009
Donnelly, D. J., Skelton, F. E.,Daubeny, H. A. (1986). External leaf features of tissue-cultured ‘Silvan’blackberryHortScience,?21, 306-308.
Fathy, H. M., Abou El - Leel, O. F.,Amin, M. A. (2018). Micropropagation and biomass production of Rubus fruticosus L. (blackberry) plant. Middle East J. Appl. Sci, 8, 1215 - 1228.
Gichaba, S. N. (2019). Optimizing micropropagation protocols for wild blackberry.Doctoral dissertation,Kenya: Egerton University. pp. 1–86.
Kefayeti, S., Kafkas, E.,Ercisli, S. (2019). Micropropagation of ‘Chester thornless’ blackberry cultivar using axillary bud explants. Notulae Botanicae Horti Agrobotanici Cluj - Napoca, 47, 162 - 168.
Lapiz - Culqui, Y. K., Meléndez - Mori, J. B., Tejada - Alvarado, J. J., Cortez, D., Huaman, E., Zarantes, V. M. N.,Oliva, M. (2024). Study of the physicochemical characteristics, antimicrobial activity, and in vitro multiplication of wild blackberry species from the Peruvian highlands. Scientific Reports, 14, 3863.
Ro?ca, I., Gli, A., Ciorchin?, N., Tab?ra, M., CUTCOVSCHI - MU?TUC, A., Ralea, T.,M?rza, A. (2022). The quantification of some bioactive compounds in the fruits of four blackberry (Rubus fruticosus L.) cultivars, propagated by tissue culture. Journal of Plant Development, 29,55 - 68.
Thompson, E., Clark, J. R.,Rom, C. C. (2004). Propagation of thornless blackberries utilizing adventitious shoots from root cuttings.Discovery, The Student Journal of Dale Bumpers College of Agricultural, Food and Life Sciences,5, 93-97.
Top?u, H. (2022). Optimal propagation and rooting mediums in rubus spp. by in vitro micropropagation. Uluslararas? tar?m ara?t?rmalar?nda yenilik?i yakla??mlar dergisi .6, 205-217.
Xu, T. (2023). Flavor and Quality Characteristics of Two Primocane-bearing Blackberry Cultivars as Impacted by Foliar and Shade Application. Doctoral dissertation, virginia:Virginia Tech. pp. 1–76. |