首页 分享 干燥温度对豆科牧草种子脱水速率和发芽率的影响

干燥温度对豆科牧草种子脱水速率和发芽率的影响

来源:花匠小妙招 时间:2025-07-19 08:28
[1]Chen S, Liu Q, Liu L. China Forage Plant Resources[M].

Shenyang:

Liaoning Nationalities Publishing House, 1994.[本文引用:1][2]Chen Z H, Wang Z G, Yun X J, et al. Viability monitoring and regeneration of seeds in the forage genebank of China. Grassland and Turf, 2007, (3): 72-75.[本文引用:1][3]Yan X B, Wang C Z, Guo Y X. Storage, utilization and conservation of forage germplasm in China. Pratacultural Science, 2008, 25(12): 85-92.[本文引用:1][4]Zhu P, Kong L Q, Li G, et al. Effect of moisture content on physiological characteristics of Elymus sibiricus seed under different storage temperature conditions. Acta Prataculturae Sinica, 2011, 20(6): 101-108.[本文引用:1][5]Bass J N. Seed viability during long-term storage. Horticultural Reviews, 1980, (2): 117-141.[本文引用:1][6]Hong T D, Ellis R H, Astley D, et al. Survival and vigour of ultra-dry seeds after ten years of hermetic storage. Seed Science and Technology, 2005, 33(2): 449-460.[本文引用:1][7]Cheng H Y. Research background and progress of seed ultradry storage technology. Acta Botanica Yunnanica, 2005, 27(2): 113-124.[本文引用:2][8]Pérez-García F, Gómez-Campo C, Ellis R H. Successful long-term ultra dry storage of seed of 15 species of Brassicaceae in a genebank: variation in ability to germinate over 40 years and dormancy. Seed Science and Technology, 2009, 37(3): 640-649.[本文引用:1][9]Vertucci C W, Roos E E. Theoretical basis of protocols for seed storage II. The influence of temperature on optimal moisture levels. Seed Science Research, 1993, (3): 201-213.[本文引用:2][10]Chen Z H, Gu J C, Li X F, et al. Effect of ultra-dry treatment on seed storage of Hedysarum leave. Acta Prataculturae Sinica, 2011, 20(1): 148-154.[本文引用:1][11]FAO/IPGRI. Genebank Stand ards[S]. Rome: FAO/IPGRI, 1994.[本文引用:1][12]Wu J X, Lu J H, Fu J R. Effect of ultradry on seed vigor and seed water thermodynamic characters. Acta Biophysica Sinica, 2001, 17(3): 579-586.[本文引用:3][13]GB/T 2930. 1-2930. 11-2001, Rules For Forage Seed Testing[S]. Beijing: State Quality Supervision Bureau, 2001.[本文引用:2][14]Lu X X, Zhang Y N. Establishment and use of seed drying technology in the national crop genebank of China. Journal of Plant Genetic Resources, 2003, 4(4): 365-368.[本文引用:2][15]Zheng G H. Seed Physiology Research[M].

Beijing:

Science Press, 2004: 119-122.[本文引用:1][16]Mira S, Estrelles E, González-Benito M E. Effect of water content and temperature on seed longevity of seven Brassicaceae species after 5 years of storage. Plant Biology, 2015, 17(1): 152-153.[本文引用:1][17]Li Y, An L. The effect of different ultradry methods and seed water content on viability of Ammopiptanthus mongolicus seed. Electronic Journal of Biology, 2006, 2(2): 24-26.[本文引用:1][18]Ellis R H, Hong T D, Roberts E H. The low-moisture-content limit to the negative logarithmic relation between seed longevity and moisture content in three subspecies of rice. Annals of Botany, 1992, 69: 53-58.[本文引用:1][19]Ellis R H, Hong T D, Martin M C, et al. The long term storage of seeds of seventeen crucifers at very low moisture contents. Plant Varieties and Seeds, 1993, 6: 75-81.[本文引用:1][20]Hou L Y. Study on Ultra-Dry Storage of Four Forest Seeds From Arid and Semiarid Areas of Northwest China[D]. Taian: Shand ong Agricultural University, 2008.[本文引用:1][21]Zhang S J, Chen R Z, Li Z J, et al. Research of ultra-dry storage balsam pear and kidney bean. Seed, 1997, (2): 3-5.[本文引用:1][22]Ellis R H, Hong T D, Roberts E H. Logarithmic relationship between moisture content and longevity in sesame seeds. Annals of Botany, 1986, 57(4): 499-503.[本文引用:1][23]Vertucci C W, Roos E E. Theoretical basis of protocols for seed storage. Plant Physiology, 1990, 94: 1019-1023.[本文引用:1][24]Buitink J, Walters C, Hoekstra F A, et al. Storage behavior of Typha latifolia pollen at low water contents: interpretation on the basis of water activity and glass concepts. Physiologia Plantarum, 1998, 103(2): 145-153.[本文引用:1][25]Du K B, Xu L, Tu B K, et al. Effect of storage temperature, water content and drying method on the storage capacity of sect. aigeiros poplar seeds. Seed, 2009, 28(4): 1-7.[本文引用:1][26]Huang X F, Fu J R, Song S Q. Effects of different methods of desiccation on seeds vigour of Momordica charantia L. Supplement to the Journal of Sun Yatsen University, 1995, (1): 34-38.[本文引用:1][27]Lu M X, Meng W L. Construction and utilization of crop germplasm bank in Liaoning province. Horticulture and Seed, 2013, (4): 57-58, 65.[本文引用:1][28]Cheng H Y, Sun S Q, Zhu C, et al. Cytological, physiological and biochemical basis of storability of ultradry seeds. Acta Botanica Yunnanica, 2005, 27(1): 11-18.[本文引用:1][29]Zhang Y B, Chen X, Cheng Y, et al. Effects of pod pre-treatments on the germination traits of Hedysarum polybotrys seeds. Acta Prataculturae Sinica, 2015, 24(6): 159-167.[本文引用:1][30]Chen S F, Yu F Y, Gan X H. Dehydration influence on the germination percentage and the ultrastructure of radicle cells of Aesculus chinensis seeds. Journal of Nanjing Forestry University (Natural Sciences Edition), 2008, 32(8): 57-60.[本文引用:1][31]Chen J S, Chen R Z, Fu J R. Desiccation-sensitivity and membrane lipid peroxidation of loquat (Eriobotrya Japonica L. ) seed. Acta Phytophysiologica Sinica, 1999, 25: 369-374.[本文引用:1][32]Wang X F, Fu J R. Studies on desiccation storage of mango seeds. Acta Botanica Sinica, 1991, 33(2): 118-123.[本文引用:1][33]Sun N. Effects of Drying Temperature on Vigor Activity and Physiological and Biochemical Characteristics of Liaodan 565[D]. Beijing: Chinese Academy of Agricultural Sciences, 2012.[本文引用:1][1]陈山, 刘起, 刘亮. 中国草地饲用植物资源[M].

沈阳:

辽宁民族出版社, 1994.[本文引用:1][2]陈志宏, 王志刚, 贠旭疆, 等. 我国牧草种质库生活力监测和更新繁殖标准的探讨. 草原与草坪, 2007, (3): 72-75.[本文引用:1][3]严学兵, 王成章, 郭玉霞. 我国牧草种质资源保存、利用与保护. 草业科学, 2008, 25(12): 85-92.[本文引用:1][4]朱萍, 孔令琪, 李高, 等. 贮藏温度对不同含水量老芒麦种子生理特性的影响. 草业学报, 2011, 20(6): 101-108.[本文引用:1][7]程红焱. 种子超干贮藏技术研究的背景和现状. 云南植物研究, 2005, 27(2): 113-124.[本文引用:2][10]陈志宏, 谷继承, 李晓芳, 等. 贮藏条件和超干燥对塔落岩黄芪种子生理生化特性的影响. 草业学报, 2011, 20(1): 148-154.[本文引用:1][12]伍贤进, 吕金海, 傅家瑞. 超干对种子活力及水分热力学特性的影响. 生物物理学报, 2001, 17(3): 579-586.[本文引用:3][13]GB/T 2930. 1-2930. 11-2001, 牧草种子检验规程[S]. 北京: 国家质量技术监督局, 2001.[本文引用:2][14]卢新雄, 张云兰. 国家种质库种子干燥处理技术的建立与应用. 植物遗传资源学报, 2003, 4(4): 365-368.[本文引用:2][15]郑光华. 种子生理研究[M].

北京:

科学出版社, 2004: 119-122.[本文引用:1][20]侯龙鱼. 西北干旱半干旱地区四种林木种子超干保存研究[D]. 泰安: 山东农业大学, 2008.[本文引用:1][21]张施君, 陈润政, 李卓杰, 等. 苦瓜和菜豆种子的超干贮藏研究. 种子, 1997, (2): 3-5.[本文引用:1][25]杜克兵, 许林, 涂炳坤, 等. 贮藏温度、含水量及干燥方法对黑杨派杨树种子耐贮性的影响. 种子, 2009, 28(4): 1-7.[本文引用:1][26]黄祥富, 傅家瑞, 宋松泉. 不同脱水方法对苦瓜种子活力影响的研究. 中山大学学报论丛, 1995, (1): 34-38.[本文引用:1][27]路明祥, 孟未来. 辽宁省农作物种质资源库的建成与利用. 园艺与种苗, 2013, (4): 57-58, 65.[本文引用:1][28]程红焱, 宋松泉, 朱诚, 等. 超干种子耐贮藏性的细胞学及生理生化基础. 云南植物研究, 2005, 27(1): 11-18.[本文引用:1][29]张云波, 陈翔, 陈垣, 等. 种荚预处理对红芪种子发芽特性的影响. 草业学报, 2015, 24(6): 159-167.[本文引用:1][30]陈淑芬, 喻方圆, 甘习华. 脱水前后七叶树种子发芽率及胚根细胞超微结构的变化. 南京林业大学学报(自然科学版), 2008, 32(8): 57-60.[本文引用:1][31]陈俊松, 陈润政, 傅家瑞. 枇杷种子的脱水敏感性与膜脂过氧化作用. 植物生理学报, 1999, 25: 369-374.[本文引用:1][32]王晓峰, 傅家瑞. 芒果种子的脱水与贮藏研究. 植物学报, 1991, 33(2): 118-123.[本文引用:1][33]孙楠. 烘干温度对辽单565种子活力及生理生化特性的影响[D]. 北京: 中国农业科学院, 2012.[本文引用:1]

相关知识

巴基斯坦热带豆科和禾本科牧草营养价值评价
温度胁迫对柱花草叶绿素荧光参数和光合速率的影响
中国野生禾本科牧草资源的研究现状
枣庄牧草种子经销处多少钱一斤
北方地区牧草种子
关于喂羊牧草种子发芽率
豆科牧草木本植物有哪些 哪种营养好
不同刈割期和干燥方法对牧草营养成分含量的影响[1]
牧草种植要点.doc
种植牧草首选沙打旺三叶草多花木兰紫花苜蓿等豆科牧草

网址: 干燥温度对豆科牧草种子脱水速率和发芽率的影响 https://www.huajiangbk.com/newsview2175645.html

所属分类:花卉
上一篇: 第五章 干草产品加工调制.ppt
下一篇: 牧草干燥的方法有哪些?几种常见的

推荐分享