Chinese Agricultural Science Bulletin ›› 2024, Vol. 40 ›› Issue (13): 55-59.doi: 10.11924/j.issn.1000-6850.casb2022-0950
Previous Articles Next Articles
XU Yongjie1(), XU Yawen1, WANG Daiquan2, WANG Qizhu2, FU Yanan2, FANG Lijun3, HUANG Faxin1(
)
Received:
2022-11-18
Revised:
2023-12-15
Online:
2024-04-28
Published:
2024-04-28
XU Yongjie, XU Yawen, WANG Daiquan, WANG Qizhu, FU Yanan, FANG Lijun, HUANG Faxin. Effect of Top Grafting on Physiological Characteristics of Walnut Branches and Roots[J]. Chinese Agricultural Science Bulletin, 2024, 40(13): 55-59.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb2022-0950
处理 | 长度/cm | 横截面半径/mm | 周皮厚度/μm | 皮层厚度/μm | 韧皮部厚度/μm | 木质部厚度/μm | 形成层厚度/μm | 髓部半径/μm |
---|---|---|---|---|---|---|---|---|
高接 | 39.85±4.89a | 3.33±0.32b | 62.27±14.09a | 254.30±31.24a | 287.33±12.82b | 654.50±38.70b | 36.26±2.91a | 468.85±306.73a |
更新 | 8.80±1.01b | 4.17±0.07a | 67.55±26.07a | 316.79±89.53a | 389.11±10.17a | 1325.63±234.20a | 13.22±3.22b | 478.41±177.01a |
处理 | 长度/cm | 横截面半径/mm | 周皮厚度/μm | 皮层厚度/μm | 韧皮部厚度/μm | 木质部厚度/μm | 形成层厚度/μm | 髓部半径/μm |
---|---|---|---|---|---|---|---|---|
高接 | 39.85±4.89a | 3.33±0.32b | 62.27±14.09a | 254.30±31.24a | 287.33±12.82b | 654.50±38.70b | 36.26±2.91a | 468.85±306.73a |
更新 | 8.80±1.01b | 4.17±0.07a | 67.55±26.07a | 316.79±89.53a | 389.11±10.17a | 1325.63±234.20a | 13.22±3.22b | 478.41±177.01a |
处理 | 导管直径/μm | 导管密度/(N/mm2) | 木质部厚度/枝条半径 | 韧皮部厚度/枝条半径 | 木质部厚度/韧皮部厚度 |
---|---|---|---|---|---|
高接 | 57.31±1.57a | 76.82±13.91a | 0.10±0.02b | 0.09±0.01a | 1.34±0.06b |
更新 | 55.85±1.13a | 16.60±3.39b | 0.16±0.03a | 0.09±0.01a | 1.70±0.27a |
处理 | 导管直径/μm | 导管密度/(N/mm2) | 木质部厚度/枝条半径 | 韧皮部厚度/枝条半径 | 木质部厚度/韧皮部厚度 |
---|---|---|---|---|---|
高接 | 57.31±1.57a | 76.82±13.91a | 0.10±0.02b | 0.09±0.01a | 1.34±0.06b |
更新 | 55.85±1.13a | 16.60±3.39b | 0.16±0.03a | 0.09±0.01a | 1.70±0.27a |
处理 | 土层深度/cm | 根系长度/cm | 根系直径/mm | 周皮厚度/μm | 韧皮部厚度/μm | 木质部厚度/μm | 形成层厚度/μm |
---|---|---|---|---|---|---|---|
高接 | 0~20 | 10.64±0.62a | 2.36±0.66a | 70.09±9.75a | 436.97±31.38a | 1034.76±57.81a | 30.91±6.08c |
20~40 | 8.95±0.99b | 0.79±0.33c | 54.17±8.29bc | 259.69±36.20c | 1050.65±66.27a | 76.42±2.54a | |
更新 | 0~20 | 9.52±0.94ab | 1.59±0.59b | 48.18±6.15c | 330.38±32.51b | 855.53±74.66b | 48.55±3.52b |
20~40 | 9.09±0.14b | 1.18±0.36bc | 66.82±4.44ab | 397.76±25.23a | 1106.18±53.53a | 56.33±3.13b |
处理 | 土层深度/cm | 根系长度/cm | 根系直径/mm | 周皮厚度/μm | 韧皮部厚度/μm | 木质部厚度/μm | 形成层厚度/μm |
---|---|---|---|---|---|---|---|
高接 | 0~20 | 10.64±0.62a | 2.36±0.66a | 70.09±9.75a | 436.97±31.38a | 1034.76±57.81a | 30.91±6.08c |
20~40 | 8.95±0.99b | 0.79±0.33c | 54.17±8.29bc | 259.69±36.20c | 1050.65±66.27a | 76.42±2.54a | |
更新 | 0~20 | 9.52±0.94ab | 1.59±0.59b | 48.18±6.15c | 330.38±32.51b | 855.53±74.66b | 48.55±3.52b |
20~40 | 9.09±0.14b | 1.18±0.36bc | 66.82±4.44ab | 397.76±25.23a | 1106.18±53.53a | 56.33±3.13b |
处理 | 土层深度/cm | 导管直径/μm | 导管密度/(N/mm2) | 木质部厚度/枝条半径 | 韧皮部厚度/枝条半径 | 木质部厚度/韧皮部厚度 |
---|---|---|---|---|---|---|
高接 | 0~20 | 62.82±8.60b | 95.08±10.95b | 0.46±0.03a | 0.39±0.02a | 1.19±0.03b |
20~40 | 54.74±4.19b | 83.65±14.39b | 0.46±0.03a | 0.23±0.03b | 2.04±0.25a | |
更新 | 0~20 | 60.89±5.33b | 149.33±33.48a | 0.43±0.04a | 0.33±0.04b | 1.31±0.22b |
20~40 | 86.55±8.95a | 83.30±8.41b | 0.47±0.01a | 0.34±0.02b | 1.39±0.09b |
处理 | 土层深度/cm | 导管直径/μm | 导管密度/(N/mm2) | 木质部厚度/枝条半径 | 韧皮部厚度/枝条半径 | 木质部厚度/韧皮部厚度 |
---|---|---|---|---|---|---|
高接 | 0~20 | 62.82±8.60b | 95.08±10.95b | 0.46±0.03a | 0.39±0.02a | 1.19±0.03b |
20~40 | 54.74±4.19b | 83.65±14.39b | 0.46±0.03a | 0.23±0.03b | 2.04±0.25a | |
更新 | 0~20 | 60.89±5.33b | 149.33±33.48a | 0.43±0.04a | 0.33±0.04b | 1.31±0.22b |
20~40 | 86.55±8.95a | 83.30±8.41b | 0.47±0.01a | 0.34±0.02b | 1.39±0.09b |
[1] |
马庆国, 乐佳兴, 宋晓波, 等. 新中国果树科学研究70年——核桃[J]. 果树学报, 2019, 36(10):1389-1398.
|
[2] |
张志华, 裴东. 核桃学[M]. 北京: 中国农业出版社,2018:32-33.
|
[3] |
郭志伟. 我国选育出第一批早实核桃新品种[J]. 林业科学研究, 1990(3):206.
|
[4] |
刘静, 孙翠翠, 薛德胜, 等. 核桃枝枯病病原菌鉴定及其生物学特性[J]. 植物病理学报, 2020, 50(6):774-778.
|
[5] |
程相瑞, 李丙雪, 卢靖天, 等. 矮化核桃枝枯病病原菌的形态与分子鉴定[J]. 植物保护, 2019, 45(3):78-82,133.
|
[6] |
doi: 10.1007/s00299-013-1471-9 pmid: 23793453 |
[7] |
doi: 10.1111/nph.2017.214.issue-1 URL |
[8] |
doi: 10.1073/pnas.1114076109 URL |
[9] |
|
[10] |
|
[11] |
冯春慧, 孙梅, 田昆, 等. 模拟增温对水葱(Scirpus validus)输导组织的影响[J]. 东北林业大学学报, 2020, 48(4):24-28.
|
[12] |
doi: S1360-1385(15)00288-5 pmid: 26698413 |
[13] |
朱攀攀, 王彤, 习建龙, 等. 重庆地区柑橘叶片的微量元素含量状况[J]. 湖南农业大学学报, 2019, 45(6):617-623.
|
[14] |
|
[15] |
上官方京, 赵明水, 张博纳, 等. 亚热带植物水力性状与木质部解剖结构的关系[J]. 浙江农林大学学报, 2022, 39(2):252-261.
|
[16] |
李春燕, 杨廷桢, 王新平, 等. 苹果矮化中间砧对接穗品种枝条输导组织解剖结构的影响[J]. 西北农业学报, 2019, 28(3):404-411.
|
[17] |
doi: 10.5958/2455-7560.2019.00003.7 URL |
[18] |
朱广龙, 陈许兵,
|
[19] |
王秀娟, 马春晖, 王然, 等. 主要梨属砧木枝条导管分子结构比较分析[J]. 北方园艺, 2016(8):24-28.
|
[20] |
董星光, 曹玉芬, 王昆, 等. 中国3个主要梨砧木资源木质部导管分子结构及分布比较[J]. 植物学报, 2015, 50(2):227-233.
doi: 10.3724/SP.J.1259.2015.00227 |
[21] |
李荣, 姜在民, 张硕新, 等. 木本植物木质部栓塞脆弱性研究新进展[J]. 植物生态学报, 2015, 39(8):838-848.
doi: 10.17521/cjpe.2015.0080 |
[22] |
陶珊珊, 章英才, 王静, 等. 枣果实同化物韧皮部卸载和运输途径研究[J]. 电子显微学报, 2022, 41(2):171-179.
|
[23] |
张永香, 任苗, 洪茵恬, 等. 不同砧木嫁接对线辣椒生长发育及光合特性的影响[J]. 西北农林科技大学学报(自然科学版), 2019, 47(7):94-101,108.
|
[24] |
张永利, 王烨军, 苏有健, 等. 茶树胚根倒接方法及不同砧穗品种的嫁接效果[J]. 热带作物学报, 2019, 40(6):1068-1074.
doi: 10.3969/j.issn.1000-2561.2019.06.005 |
[25] |
常君, 姚小华, 杨水平, 等. 美国山核桃不同品种接穗对嫁接苗木根系生长发育影响的研究[J]. 西南大学学报(自然科学版), 2007, 29(10):104-108.
|
[26] |
刘泽茂, 晏昕, 吴文, 等. 氯化锌控根处理对榉树容器苗生长及生理特性的影响[J]. 中南林业科技大学学报(自然科学版), 2022, 42(3):72-79.
|
[1] | TANG Jiajia, LI Xiuzhen, WEI Liben, PENG Xiu, DANG Jiangbo, ZHOU Xiaozhou, FENG Dalan. Study on the Suitable Planting Density and Pruning Intensity in Scion Orchard of Early Bearing Walnut [J]. Chinese Agricultural Science Bulletin, 2023, 39(35): 55-60. |
[2] | HU Changping, WANG Youbing, JIANG Jianfa, YANG Guobin, YANG Jianjun, LI Manqing, YANG Shujiao. Diversity Characteristics of Herbaceous Plants Under Walnut Forests in Yangbi County [J]. Chinese Agricultural Science Bulletin, 2023, 39(35): 49-54. |
[3] | YU Zhibin, JI Yangyang, HE Aimin, TIAN Yiling. Effects of Different Modified Atmosphere Packages on Preservation of Fresh Walnuts [J]. Chinese Agricultural Science Bulletin, 2023, 39(3): 141-147. |
[4] | LIU Jing, LIU Jinli, LI Yang, BAI Zhongkui, YU Qiuxiang. Effects of Different Soil Mulching Treatments on Walnut Quality [J]. Chinese Agricultural Science Bulletin, 2023, 39(12): 42-48. |
[5] | HUANG Faxin, SONG Xiaobo, CHEN Lingna, QI Ji, XU Yongjie. Research on Phenological Phase and Phenotypic Plasticity of Leaves and Fruits of Walnut [J]. Chinese Agricultural Science Bulletin, 2022, 38(31): 49-54. |
[6] | XU Yongjie, HAN Huabai, PEI Dong. Characteristics and Distribution of Walnut Seed Resources in Bashan Mountains [J]. Chinese Agricultural Science Bulletin, 2022, 38(30): 51-55. |
[7] | HUANG Yali, MA Fengyun, WANG Xia, HAO Jun, DU Zhenyu, LIU Fangchun, SHI Qun, MA Bingyao. Effects of Drip Irrigation Amount on the Growth of Walnut Seedlings [J]. Chinese Agricultural Science Bulletin, 2022, 38(22): 62-68. |
[8] | Li Shengyong, Zheng Jianli, Zhang Zhuli. New Discharge Standard of Fishing Vessel Diesel Engine Based on Bench Test [J]. Chinese Agricultural Science Bulletin, 2021, 37(28): 159-164. |
[9] | Sun Wanxu, Huang Qizhen, Li Boyu, Su Yunze, Zhang Qiaochu, Xiao Longfei, Qi Xiaolong, Xing Kai, Wang Xiangguo, Sheng Xihui, Guo Yong, Ni Hemin. ‘The Regulation by Estradiol on Mammalian Endometrial Angiogenesis: Research Progress [J]. Chinese Agricultural Science Bulletin, 2021, 37(17): 94-98. |
[10] | Zhao Xuetong, Xu Siqi, Zhang Qi, Pan Wenzheng, Shang Haili, Wang Bin, Wang Jingxian, Zhao Rongbiao. Effect of Walnut Special Bio-organic-inorganic Compound Fertilizer on Walnut Planting [J]. Chinese Agricultural Science Bulletin, 2021, 37(11): 108-113. |
[11] | Zhang Qi, Xu Siqi, Zhao Xuetong, Pan Wenzheng, Shang Haili, Wang Jingxian, Zhao Rongbiao. Special High-efficient Microorganisms for Dissolving Phosphorus, Potassium and Growth-promoting of Walnut: Screening and Compounding [J]. Chinese Agricultural Science Bulletin, 2020, 36(34): 64-70. |
[12] | Huang Jinying, Lu Shu, Yuan Shujie, Jin Haidong, Zhao Ran, Sun Xiaolin. Walnut Trees in Main Phenological Periods in Jizhou: Agro-meteorological Disaster Regionalization [J]. Chinese Agricultural Science Bulletin, 2020, 36(26): 93-105. |
[13] | Zhang Chenglin, Xu Hao, Wang Shiming, Liu Huang, Chen Xinjun. Offshore Fisheries Based on Large-scale Fishery Platform: Development Status [J]. Chinese Agricultural Science Bulletin, 2020, 36(25): 152-157. |
[14] | Ha Xiaoli, Sun Yang, Han Zhanjiang. Comparative Analysis of Quality and Yield of Walnut Under Different Planting Patterns [J]. Chinese Agricultural Science Bulletin, 2020, 36(22): 44-48. |
[15] | Xu Shuo, Lu Feng, Guo Yudong, Wang Yu, Li Ao. Fishery Internet of Vessels Engineering System: Application Status Analysis [J]. Chinese Agricultural Science Bulletin, 2020, 36(12): 139-151. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||