Chinese Agricultural Science Bulletin ›› 2023, Vol. 39 ›› Issue (31): 90-95.doi: 10.11924/j.issn.1000-6850.casb2022-0900
Previous Articles Next Articles
WANG Xiaorong1,2(), GU Zhongchun1, LIU Xing1, TANG Lan1, DAI Xue1, YANG Jiawei1,2, ZHOU Yufang2,3, ZHOU Gaoyu4
Received:
2022-10-31
Revised:
2023-06-12
Online:
2023-10-31
Published:
2023-10-31
WANG Xiaorong, GU Zhongchun, LIU Xing, TANG Lan, DAI Xue, YANG Jiawei, ZHOU Yufang, ZHOU Gaoyu. Effects of Substrate and Growth Hormone on Hardwood Cutting Propagation of Ficus tikoua[J]. Chinese Agricultural Science Bulletin, 2023, 39(31): 90-95.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.casb.org.cn/EN/10.11924/j.issn.1000-6850.casb2022-0900
变异来源 | 性状 | 平方和 | df | 均方 | F | Sig. |
---|---|---|---|---|---|---|
基质 | 生根率 | 2734.00 | 2 | 1367.00 | 3.275 | 0.048 |
平均生根数 | 306.501 | 2 | 153.025 | 0.761 | 0.473 | |
最大根长 | 182.973 | 2 | 91.487 | 41.010 | 0.000 | |
平均根长 | 99.664 | 2 | 49.832 | 174.102 | 0.000 | |
单株根系干质量 | 2.857 | 2 | 1.429 | 23.385 | 0.000 | |
生根指数 | 48759.102 | 2 | 24379.551 | 6.728 | 0.003 | |
激素 | 生根率 | 1669.523 | 4 | 417.381 | 0.898 | 0.474 |
平均生根数 | 4666.973 | 4 | 1166.743 | 11.428 | 0.000 | |
最大根长 | 47.266 | 4 | 11.816 | 1.753 | 0.157 | |
平均根长 | 13.864 | 4 | 3.466 | 1.212 | 0.321 | |
单株根系干质量 | 0.238 | 4 | 0.060 | 0.460 | 0.765 | |
生根指数 | 46344.222 | 4 | 11586.055 | 2.998 | 0.030 |
变异来源 | 性状 | 平方和 | df | 均方 | F | Sig. |
---|---|---|---|---|---|---|
基质 | 生根率 | 2734.00 | 2 | 1367.00 | 3.275 | 0.048 |
平均生根数 | 306.501 | 2 | 153.025 | 0.761 | 0.473 | |
最大根长 | 182.973 | 2 | 91.487 | 41.010 | 0.000 | |
平均根长 | 99.664 | 2 | 49.832 | 174.102 | 0.000 | |
单株根系干质量 | 2.857 | 2 | 1.429 | 23.385 | 0.000 | |
生根指数 | 48759.102 | 2 | 24379.551 | 6.728 | 0.003 | |
激素 | 生根率 | 1669.523 | 4 | 417.381 | 0.898 | 0.474 |
平均生根数 | 4666.973 | 4 | 1166.743 | 11.428 | 0.000 | |
最大根长 | 47.266 | 4 | 11.816 | 1.753 | 0.157 | |
平均根长 | 13.864 | 4 | 3.466 | 1.212 | 0.321 | |
单株根系干质量 | 0.238 | 4 | 0.060 | 0.460 | 0.765 | |
生根指数 | 46344.222 | 4 | 11586.055 | 2.998 | 0.030 |
基质 | 平均生根数/条 | 最大根长/cm | 平均根长/cm | 单株根系干质量/g | 生根指数 |
---|---|---|---|---|---|
河沙 | 22.64±3.88a | 4.76±0.22b | 2.91±0.10c | 0.29±0.06b | 61.06±11.07b |
黄土 | 17.66±3.33a | 8.17±0.65a | 5.59±0.22b | 0.47±0.04b | 61.81±12.45b |
腐殖质土 | 23.62±3.75a | 9.56±0.41a | 6.39±0.28a | 0.89±0.08a | 131.26±21.15a |
基质 | 平均生根数/条 | 最大根长/cm | 平均根长/cm | 单株根系干质量/g | 生根指数 |
---|---|---|---|---|---|
河沙 | 22.64±3.88a | 4.76±0.22b | 2.91±0.10c | 0.29±0.06b | 61.06±11.07b |
黄土 | 17.66±3.33a | 8.17±0.65a | 5.59±0.22b | 0.47±0.04b | 61.81±12.45b |
腐殖质土 | 23.62±3.75a | 9.56±0.41a | 6.39±0.28a | 0.89±0.08a | 131.26±21.15a |
生长激素 | 平均生根数/条 | 最大根长/cm | 平均根长/cm | 单株根系干质量/g | 生根指数 |
---|---|---|---|---|---|
无激素 | 5.85±1.15c | 7.34±1.03a | 4.87±0.60a | 0.46±0.14a | 28.91±9.50b |
生根粉 | 37.03±3.46a | 5.72±0.89a | 4.08±0.36a | 0.62±0.09a | 99.94±18.33ab |
50 mg/L NAA | 16.81±3.88bc | 8.84±0.86a | 5.79±0.68a | 0.56±0.06a | 69.37±12.22ab |
200 mg/L NAA | 22.16±9.76b | 8.00±0.80a | 5.20±0.59a | 0.48±0.09a | 110.81±26.48ab |
500 mg/L NAA | 24.68±4.22ab | 7.60±0.72a | 4.87±0.54a | 0.63±0.18a | 114.50±29.51a |
生长激素 | 平均生根数/条 | 最大根长/cm | 平均根长/cm | 单株根系干质量/g | 生根指数 |
---|---|---|---|---|---|
无激素 | 5.85±1.15c | 7.34±1.03a | 4.87±0.60a | 0.46±0.14a | 28.91±9.50b |
生根粉 | 37.03±3.46a | 5.72±0.89a | 4.08±0.36a | 0.62±0.09a | 99.94±18.33ab |
50 mg/L NAA | 16.81±3.88bc | 8.84±0.86a | 5.79±0.68a | 0.56±0.06a | 69.37±12.22ab |
200 mg/L NAA | 22.16±9.76b | 8.00±0.80a | 5.20±0.59a | 0.48±0.09a | 110.81±26.48ab |
500 mg/L NAA | 24.68±4.22ab | 7.60±0.72a | 4.87±0.54a | 0.63±0.18a | 114.50±29.51a |
处理 | 生根率/% | 平均生根数/条 | 最大根长/cm | 平均根长/cm | 单株根系干质量/g | 生根指数 | 隶属度值 | 综合排序 |
---|---|---|---|---|---|---|---|---|
A1B1 | 62.50 | 3.38 | 3.60 | 2.63 | 0.11 | 4.99 | 0.40 | 15 |
A1B2 | 95.83 | 41.75 | 4.66 | 2.77 | 0.51 | 110.16 | 1.99 | 10 |
A1B3 | 89.83 | 30.22 | 5.62 | 3.20 | 0.51 | 89.20 | 1.78 | 11 |
A1B4 | 87.87 | 19.51 | 4.98 | 3.00 | 0.23 | 52.49 | 1.33 | 13 |
A1B5 | 87.50 | 18.33 | 4.97 | 2.93 | 0.09 | 48.46 | 1.28 | 14 |
A2B1 | 79.17 | 4.50 | 8.30 | 5.60 | 0.37 | 19.88 | 1.55 | 12 |
A2B2 | 44.02 | 32.28 | 5.42 | 4.80 | 0.51 | 53.77 | 2.17 | 8 |
A2B3 | 62.81 | 8.41 | 9.93 | 6.67 | 0.54 | 36.25 | 2.20 | 7 |
A2B4 | 87.50 | 14.29 | 9.09 | 5.73 | 0.42 | 73.66 | 2.10 | 9 |
A2B5 | 85.42 | 28.83 | 8.14 | 5.13 | 0.50 | 125.46 | 2.36 | 4 |
A3B1 | 97.92 | 9.67 | 10.12 | 6.37 | 0.89 | 61.86 | 2.27 | 6 |
A3B2 | 77.08 | 37.06 | 7.09 | 4.67 | 0.85 | 135.89 | 2.31 | 5 |
A3B3 | 93.75 | 11.81 | 10.98 | 7.50 | 0.63 | 82.66 | 2.60 | 3 |
A3B4 | 91.67 | 32.69 | 9.94 | 6.87 | 0.78 | 206.28 | 3.21 | 1 |
A3B5 | 91.67 | 26.88 | 9.69 | 6.53 | 1.31 | 169.59 | 2.90 | 2 |
处理 | 生根率/% | 平均生根数/条 | 最大根长/cm | 平均根长/cm | 单株根系干质量/g | 生根指数 | 隶属度值 | 综合排序 |
---|---|---|---|---|---|---|---|---|
A1B1 | 62.50 | 3.38 | 3.60 | 2.63 | 0.11 | 4.99 | 0.40 | 15 |
A1B2 | 95.83 | 41.75 | 4.66 | 2.77 | 0.51 | 110.16 | 1.99 | 10 |
A1B3 | 89.83 | 30.22 | 5.62 | 3.20 | 0.51 | 89.20 | 1.78 | 11 |
A1B4 | 87.87 | 19.51 | 4.98 | 3.00 | 0.23 | 52.49 | 1.33 | 13 |
A1B5 | 87.50 | 18.33 | 4.97 | 2.93 | 0.09 | 48.46 | 1.28 | 14 |
A2B1 | 79.17 | 4.50 | 8.30 | 5.60 | 0.37 | 19.88 | 1.55 | 12 |
A2B2 | 44.02 | 32.28 | 5.42 | 4.80 | 0.51 | 53.77 | 2.17 | 8 |
A2B3 | 62.81 | 8.41 | 9.93 | 6.67 | 0.54 | 36.25 | 2.20 | 7 |
A2B4 | 87.50 | 14.29 | 9.09 | 5.73 | 0.42 | 73.66 | 2.10 | 9 |
A2B5 | 85.42 | 28.83 | 8.14 | 5.13 | 0.50 | 125.46 | 2.36 | 4 |
A3B1 | 97.92 | 9.67 | 10.12 | 6.37 | 0.89 | 61.86 | 2.27 | 6 |
A3B2 | 77.08 | 37.06 | 7.09 | 4.67 | 0.85 | 135.89 | 2.31 | 5 |
A3B3 | 93.75 | 11.81 | 10.98 | 7.50 | 0.63 | 82.66 | 2.60 | 3 |
A3B4 | 91.67 | 32.69 | 9.94 | 6.87 | 0.78 | 206.28 | 3.21 | 1 |
A3B5 | 91.67 | 26.88 | 9.69 | 6.53 | 1.31 | 169.59 | 2.90 | 2 |
[1] |
王晓荣, 崔鸿侠, 唐万鹏, 等. 地被植物地果资源利用与研究进展[J]. 湖北农业科学, 2022, 61(11):93-96.
|
[2] |
黎旭琳, 黎卫东, 吴少鑫, 等. 地果种苗大规模高效育繁技术[J]. 种子科技, 2021(7):54-55.
|
[3] |
石登红, 杨秀群, 刘燕. 野生植物资源—野地瓜的开发利用研究[J]. 贵州学院学报(自然科学版), 2010, 5(4):35-37.
|
[4] |
廖祥兵, 肖伟, 张祥辉, 等. 一种利用野地瓜修复矿区植被与土壤的方法初探[J]. 中国农学通报, 2017, 33(1):102-105.
doi: 10.11924/j.issn.1000-6850.casb16090134 |
[5] |
李洁玉, 谭小蓉, 张力强. 野地瓜的驯化栽培与开发利用研究[J]. 亚太传统医药, 2017, 13(5):39-40.
doi: 10.11954/ytctyy.201705013 |
[6] |
徐楚律, 郑琛, 李德荣, 等. 优良多用途资源植物地果的研究进展[J]. 江西科学, 2020, 38(5):636-642.
|
[7] |
邹玲俐, 黄仕训. 优良野生地被植物——地瓜榕的开发利用[J]. 广西热带农业, 2007(5):45-46.
|
[8] |
秦爱丽, 简尊吉, 马凡强, 等. 母树年龄、生长调节剂、容器与基质对崖柏嫩枝扦插的影响[J]. 林业科学, 2018, 54(7):40-50.
|
[9] |
黄国伟, 陈慧玲, 李振芳, 等. 美洲黑杨杂种优良无性系扦插生根对比研究[J]. 中国农学通报, 2016, 32(4):9-13.
doi: 10.11924/j.issn.1000-6850.casb15070077 |
[10] |
doi: 10.3923/ajpp.2013.41.49 URL |
[11] |
闭鸿雁, 徐清, 王兵, 等. 园林植物地石榴光合-光响应及叶绿素荧光特征探究[J]. 种子, 2019, 38(11):46-50.
|
[12] |
陈秀妹. 生根剂种类、浓度和时间对地果扦插生根的影响[J]. 现代园艺, 2020(18):14-15.
|
[13] |
奎建蕊, 赵安洁, 陶耀明, 等. 地石榴苗扦插繁育及移栽技术[J]. 热带农业科学, 2014, 34(12):35-38.
|
[14] |
李剑, 李美珍. 不同基质和激素对地石榴扦插生根的影响[J]. 中国园艺文摘, 2009(12):19-22.
|
[15] |
王书胜, 单文, 张乐华, 等. 基质和IBA对云锦杜鹃扦插生根的影响[J]. 林业科学, 2015, 51(9):165-172.
|
[16] |
姜玉东, 熊佑清, 张军民. 不同生根粉浓度对5种木本植物插穗萌发和生根的影响[J]. 中国农学通报, 2021, 37(14):52-58.
doi: 10.11924/j.issn.1000-6850.casb20191100875 |
[17] |
梁小春, 黄松殿, 姜仪民, 等. 外源激素与基质对黄果厚壳桂扦插生根的影响[J]. 中国农学通报, 2021, 37(10):24-29.
doi: 10.11924/j.issn.1000-6850.casb2020-0282 |
[18] |
雷江丽, 戴耀良, 刘训花, 等. 小叶铺地榕泥炭穴盘覆膜扦插繁殖技术[J]. 广东林业科技, 2008, 24(5):94-96,100.
|
[19] |
黄洪峰, 王丽欣, 蒙晴苇, 等. 扦插基质与生根剂处理对地果插穗生根的影响[J]. 贵州农业科学, 2018, 46(5):102-106.
|
[20] |
侯玉娇. 不同浓度IBA及浸泡时间对地果水插繁殖的影响[J]. 农家科技, 2015(7):121.
|
[21] |
高坤林, 唐永良, 罗质超. 用于植物扦插繁殖的理想基质[J]. 土壤, 1992, 24(1):43-45.
|
[22] |
余婷, 杨波, 翟书华, 等. 不同基质配比对地石榴扦插生根的影响[J]. 昆明学院学报, 2018, 40(3):80-82.
|
[23] |
|
[24] |
廖丽华, 蔡长顺. 园林景观植物——地果应用GGR扦插繁育苗试验初报[J]. 中国园艺文摘, 2016(10):33-34,141.
|
[25] |
刘辰飞, 张玉武, 韦堂灵, 等. 野地瓜扦插试验[J]. 贵州科学, 2012, 30(4):70-74.
|
[1] | CHEN Gaolin, MAI Yongxin, ZHANG Dongqing, LV Mengyu, LI Xia. Antibiotic Removal Mechanism in Constructed Wetland: A Review [J]. Chinese Agricultural Science Bulletin, 2023, 39(9): 63-70. |
[2] | SUN Kexin, GUO Ranran, WANG Ziming, HUO Ruipeng, SUN Yangyang, ZHAI Sheng, WANG Juyuan. Efficient Resource Utilization of Vegetable Waste [J]. Chinese Agricultural Science Bulletin, 2023, 39(5): 92-99. |
[3] | GE Yuxuan, DONG Kun, KONG Weiyi, WANG Xuehan. Growth and Development Characteristics of Shoot and Root for Ground Cover Plants in Fragrant Hills Park [J]. Chinese Agricultural Science Bulletin, 2023, 39(31): 83-89. |
[4] | LUO Jiali, TANG Yilei, SHI Wenhui, YING Yeqing. Effects of Substrate Composition and Planting Number on the Emergence and Growth of Chimonobambusa marmorea f. variegata Seedling [J]. Chinese Agricultural Science Bulletin, 2023, 39(31): 38-43. |
[5] | GUAN Tikun, LIU Zilu, LI Xiaoyu, WANG Jianli, HOU Shuangying, LIU Xushan, XU Shiyi, CHEN Qingjun, ZHANG Guoqing. Biochar from Spent Mushroom Substrate of Industrial Pleurotus eryngii: Preparation Process and Quality Evaluation [J]. Chinese Agricultural Science Bulletin, 2023, 39(3): 71-79. |
[6] | ZHANG Xiaoqin, LI Na, XU Hui, WANG Jianqiang, NIE Chaoren, WANG Caiyun. Effects of Substrate and Growth Regulator on Softwood Cutting of Viburnum brachybotryum [J]. Chinese Agricultural Science Bulletin, 2023, 39(28): 17-23. |
[7] | HE Lingfeng, CHEN Chen, DENG Yuanjie, LU Jie, WANG Guanglong, TAN Guofei, WANG Yahui, DUAN Aoqi, SHU Sheng, LIU Hui, XIONG Aisheng. Effects of Substrate Ratio on Root Growth and Physiological Characteristics of Carrot [J]. Chinese Agricultural Science Bulletin, 2023, 39(16): 12-19. |
[8] | TIAN Subo, GUO Yanchun, SONG Yuxiao, LI Chuanxing, WANG Kunting, LI Yingjie, GUO Jiajin, LIN Guiyu, DING Junyang, ZHANG Jingmin, HU Yongjun, XIA Haibo. Effects of Vegetable Straw Fermentation and Recycling Seedling Substrate on the Growth of Tomato Seedlings [J]. Chinese Agricultural Science Bulletin, 2023, 39(16): 20-24. |
[9] | CHENG Ziyue, LIANG Mingzhu. Effects of Different Substrate Formulations on Yield and Quality of Cucumis melo var. makuwa [J]. Chinese Agricultural Science Bulletin, 2023, 39(16): 25-28. |
[10] | CHEN Liang, LUAN Qianqian, LIN Yi, ZHANG Ziqiang. Effects of Substrate Cultivation Modes on Greenhouse Watermelon Growth, Yield and Quality [J]. Chinese Agricultural Science Bulletin, 2023, 39(10): 38-44. |
[11] | JIN Meijuan, SHE Xudong, SHEN Mingxing, LU Changying, TAO Yueyue, WANG Haihou. Production Effect of Strawberry Cultured by Constructing Ridge-type Soil Groove Coupling Substrate in Paddy Field [J]. Chinese Agricultural Science Bulletin, 2023, 39(1): 71-76. |
[12] | LU Shimin, LI Yayuan, LIU Chong, LIU Xingguo, BAO Xuteng, TIAN Changfeng, GU Zhaojun, ZHOU Liang, WU Fan. Ammonia-oxidizing Microorganisms and Their Application in Water Quality Control of Pond Aquaculture in China [J]. Chinese Agricultural Science Bulletin, 2022, 38(33): 145-151. |
[13] | YANG Fan, GUO Lina, DONG Meichao, WANG Ziran, FU Xiaomeng, LI Danping, YANG Hongxia, GAO Junyan, ZHOU Dongguo. Effects of Substrates on Rooting of Cutting Seedlings of Passiflora caerulea [J]. Chinese Agricultural Science Bulletin, 2022, 38(28): 68-71. |
[14] | CHU Xiangqian, LI Hongna, LV Weiguang, ZHENG Xianqing, LI Shuangxi, ZHANG Juanqin, WANG Quanhua, ZHANG Hanlin. Nutrients and Heavy Metals in Sediments and Substrate of Shuifeng Lake Basin: Investigation and Evaluation [J]. Chinese Agricultural Science Bulletin, 2022, 38(28): 72-78. |
[15] | YAO Xiaojian, ZHANG Xiongjian, YAO Zhufang, LUO Zhongxia, WANG Zhangying, HUANG Lifei, FANG Boping, YANG Yiling. Potted Conservation Substrates of Sweet Potato Germplasms: Screening and Evaluation [J]. Chinese Agricultural Science Bulletin, 2022, 38(24): 28-37. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||