Chinese Journal of Tropical Crops ›› 2020, Vol. 41 ›› Issue (8): 1708-1713.DOI: 10.3969/j.issn.1000-2561.2020.08.027
Previous Articles Next Articles
YUAN Fei,LIU Zifan(),YAN Wenjing,LIU Peipei
Received:
2019-10-16
Revised:
2019-11-25
Online:
2020-08-25
Published:
2020-09-17
Contact:
LIU Zifan
CLC Number:
YUAN Fei,LIU Zifan,YAN Wenjing,LIU Peipei. Allelopathy of Root Exudates and Aqueous Extracts from Soil of Cassava to Rigidoprus lignosu and Corynespora cassiicola of Hevea brasiliensis[J]. Chinese Journal of Tropical Crops, 2020, 41(8): 1708-1713.
Add to citation manager EndNote|Ris|BibTeX
URL: http://www.rdzwxb.com/EN/10.3969/j.issn.1000-2561.2020.08.027
来源 Resource | 有机质 Organic matter /(g·kg-1) | 碱解氮 Alkaline nitrogen /(mg·kg-1) | 速效磷 Available phosphorus /(mg·kg-1) | 速效钾 Available potassium /(mg·kg-1) | pH |
---|---|---|---|---|---|
间作土壤 | 8.16 | 22.75 | 25.15 | 42.87 | 4.75 |
单作土壤 | 6.20 | 19.83 | 82.75 | 58.11 | 4.52 |
Tab. 1 Physical and chemical properties of soil
来源 Resource | 有机质 Organic matter /(g·kg-1) | 碱解氮 Alkaline nitrogen /(mg·kg-1) | 速效磷 Available phosphorus /(mg·kg-1) | 速效钾 Available potassium /(mg·kg-1) | pH |
---|---|---|---|---|---|
间作土壤 | 8.16 | 22.75 | 25.15 | 42.87 | 4.75 |
单作土壤 | 6.20 | 19.83 | 82.75 | 58.11 | 4.52 |
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment | 处理后5 d 5th day after treatment | 处理后6 d 6th day after treatment |
---|---|---|---|---|---|
0(CK) | 0.00±0.63aA | 0.00±0.40aA | 0.00±0.67aA | 0.00±1.77aA | 0.00±0.30aA |
8 | 2.44±2.11aA | 1.15±2.70aA | 1.66±1.59aA | 2.75±1.56aA | 0.24±0.52aA |
40 | 3.09±2.89aA | 4.70±3.18aA | 5.66±1.85aA | 3.69±2.42aA | 0.99±0.55aA |
200 | 2.98±1.67aA | 5.74±2.01aA | 2.77±1.43aA | 4.34±1.27aA | 2.47±0.41aA |
1000 | 1.46±1.49aA | 3.39±2.28aA | 2.85±1.54aA | 3.69±1.65aA | 0.47±0.54aA |
Tab. 2 Allelophathy of root exudates on growth of R. lignosu of H. brasiliensis %
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment | 处理后5 d 5th day after treatment | 处理后6 d 6th day after treatment |
---|---|---|---|---|---|
0(CK) | 0.00±0.63aA | 0.00±0.40aA | 0.00±0.67aA | 0.00±1.77aA | 0.00±0.30aA |
8 | 2.44±2.11aA | 1.15±2.70aA | 1.66±1.59aA | 2.75±1.56aA | 0.24±0.52aA |
40 | 3.09±2.89aA | 4.70±3.18aA | 5.66±1.85aA | 3.69±2.42aA | 0.99±0.55aA |
200 | 2.98±1.67aA | 5.74±2.01aA | 2.77±1.43aA | 4.34±1.27aA | 2.47±0.41aA |
1000 | 1.46±1.49aA | 3.39±2.28aA | 2.85±1.54aA | 3.69±1.65aA | 0.47±0.54aA |
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment | 处理后5 d 5th day after treatment | 处理后6 d 6th day after treatment |
---|---|---|---|---|---|
0(CK) | 0.00±2.11cA | 0.00±1.88cA | 0.00±3.00dA | 0.00±2.64bA | 0.00±2.47bA |
8 | 7.25±7.56cA | 6.90±6.80cA | 8.06±6.94dA | 8.52±7.89bA | 4.90±8.69bA |
40 | 15.46±8.08abA | 16.17±9.17abA | 20.85±8.21bcA | 23.97±10.90aA | 25.00±12.79aA |
200 | 21.46±4.56bA | 23.11±5.11aA | 24.28±3.57abA | 27.69±4.89aA | 29.55±6.85aA |
1000 | 31.93±6.70aA | 25.31±5.30aA | 29.00±6.89aA | 30.35±6.34aA | 31.11±9.52aA |
Tab. 3 Allelopathy of root exudates on growth of C. cassiicola of H. brasiliensis %
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment | 处理后5 d 5th day after treatment | 处理后6 d 6th day after treatment |
---|---|---|---|---|---|
0(CK) | 0.00±2.11cA | 0.00±1.88cA | 0.00±3.00dA | 0.00±2.64bA | 0.00±2.47bA |
8 | 7.25±7.56cA | 6.90±6.80cA | 8.06±6.94dA | 8.52±7.89bA | 4.90±8.69bA |
40 | 15.46±8.08abA | 16.17±9.17abA | 20.85±8.21bcA | 23.97±10.90aA | 25.00±12.79aA |
200 | 21.46±4.56bA | 23.11±5.11aA | 24.28±3.57abA | 27.69±4.89aA | 29.55±6.85aA |
1000 | 31.93±6.70aA | 25.31±5.30aA | 29.00±6.89aA | 30.35±6.34aA | 31.11±9.52aA |
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment |
---|---|---|---|
0(CK) | 0.00±3.69cA | 0.00±2.83cA | 0.00±2.48dA |
8 | 4.47±4.56cA | 7.30±3.85bA | 5.96±1.48cdA |
40 | 26.03±2.30bA | 12.04±1.35bB | 8.33±3.17bcB |
200 | 25.25±2.03bA | 12.40±1.08bB | 10.68±0.34bB |
1000 | 35.08±5.19aA | 21.59±4.96aB | 18.68±5.11aB |
Tab. 4 Allelophathy of aqueous extracts from soil on growth of R. lignosu of H. brasiliensis %
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment |
---|---|---|---|
0(CK) | 0.00±3.69cA | 0.00±2.83cA | 0.00±2.48dA |
8 | 4.47±4.56cA | 7.30±3.85bA | 5.96±1.48cdA |
40 | 26.03±2.30bA | 12.04±1.35bB | 8.33±3.17bcB |
200 | 25.25±2.03bA | 12.40±1.08bB | 10.68±0.34bB |
1000 | 35.08±5.19aA | 21.59±4.96aB | 18.68±5.11aB |
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment | 处理后5 d 5th day after treatment | 处理后6 d 6th day after treatment |
---|---|---|---|---|---|
0(CK) | 0.00±2.11cA | 0.00±1.88cA | 0.00±3.00cA | 0.00±2.64cA | 0.00±2.47bA |
8 | 3.66±1.39cA | 2.86±2.00cA | 4.61±1.51cA | 5.49±3.70cA | 4.68±2.12bA |
40 | 4.83±2.75cA | 2.12±3.07cA | 3.95±4.38cA | 2.75±5.70cA | 6.25±3.91bA |
200 | 13.86±4.32bA | 10.45±3.98bA | 15.53±4.66bA | 15.49±5.70bA | 17.35±8.16aA |
1000 | 26.41±6.11aA | 25.88±3.52aA | 20.25±6.22aA | 22.36±5.63aA | 24.01±4.89aA |
Tab. 5 Allelopathy of aqueous extracts from soil on growth of C. cassiicola of H. brasiliensis %
浓度 Concentration /(mg·mL-1) | 处理后2 d 2nd day after treatment | 处理后3 d 3rd day after treatment | 处理后4 d 4th day after treatment | 处理后5 d 5th day after treatment | 处理后6 d 6th day after treatment |
---|---|---|---|---|---|
0(CK) | 0.00±2.11cA | 0.00±1.88cA | 0.00±3.00cA | 0.00±2.64cA | 0.00±2.47bA |
8 | 3.66±1.39cA | 2.86±2.00cA | 4.61±1.51cA | 5.49±3.70cA | 4.68±2.12bA |
40 | 4.83±2.75cA | 2.12±3.07cA | 3.95±4.38cA | 2.75±5.70cA | 6.25±3.91bA |
200 | 13.86±4.32bA | 10.45±3.98bA | 15.53±4.66bA | 15.49±5.70bA | 17.35±8.16aA |
1000 | 26.41±6.11aA | 25.88±3.52aA | 20.25±6.22aA | 22.36±5.63aA | 24.01±4.89aA |
[1] | 黄洁, 周建国, 林世欣, 等. 对胶园间作木薯的思考及展望[J]. 江西农业学报, 2014,26(1):64-68, 71. |
[2] | 林位夫, 曾宪海, 谢贵水, 等. 关于橡胶园间作的思考与实践[J]. 中国热带农业, 2011(4):11-15. |
[3] | 蔡吉苗, 王涓, 陈勇, 等. 云南橡胶树棒孢霉落叶病病情调查与病原鉴定[J]. 热带农业科技, 2007,30(4):1-4, 19. |
[4] | 蔡吉苗, 陈瑶, 潘羡心, 等. 海南橡胶树棒孢霉落叶病病情调查与病原鉴定[J]. 热带农业科学, 2008,28(5):1-7, 10. |
[5] | 杨国峰. 加蓬的胶粮间作系统[J]. 世界热带农业信息, 2000(6):1-2. |
[6] | 曹兵. 臭椿生理生态学特性及在混交造林中的应用[M]. 宁夏: 阳光出版社, 2012. |
[7] | 刘培培, 刘子凡, 刘乔颖, 等. 木薯器官及其混合物水浸提液对橡胶树棒孢霉落叶病病菌的化感作用[J]. 热带作物学报, 2018,39(2):338-342. |
[8] | 闫文静, 刘子凡, 张婷婷, 等. 木薯器官及其腐解物水浸液对橡胶树白根病病菌的化感作用[J]. 热带作物学报, 2019,40(1):123-129. |
[9] | 刘秀芬, 马瑞霞, 袁光林, 等. 根际区他感化学物质的分离、鉴定与生物活性的研究[J]. 生态学报, 1996,16(1):1-10. |
[10] | Pernezny K, Stoffella P, Collins J, et al. Control of target spot of tomato with fungicides, systemic acquired resistance activators, and a biocontrol agent[J]. Plant Protection Science, 2002,38(3):81-88. |
[11] | Tran Van Canh, 张开明. 不同杀菌剂防治橡胶树白根病的研究[J]. 热带作物译丛, 1984(2):19-22. |
[12] | 何冰, 顾明华, 康亮, 等. 一种木薯种苗的溶液培养方法: 201310564075.8[P]. 2014:01-19. |
[13] | 孟玉芳, 焦永鸽, 张立猛. 四种作物根系分泌物对烟草疫霉的抑菌活性分析[J]. 植物保护, 2018,44(5):189-193. |
[14] | 田给林. 连作草莓土壤酚酸类物质的化感作用及其生物调控研究[D]. 北京: 中国农业大学, 2015. |
[15] |
Cheng Z H, Wang C H, Xiao X M, et al. Allelopathic effects of decomposing garlic stalk on some vegetable crops[J]. African Journal of Biotechnology, 2011,10(69):15514-15520.
DOI URL |
[16] | 娄晓平, 赵炯平, 王海波, 等. 烟草根系分泌物对黑胫病菌菌丝生长的影响[J]. 烟草科技, 2019,52(6):30-34. |
[17] | 金彦博, 郭凤霞, 陈垣, 等. 三种作物根际土壤水浸液对当归的化感效应[J]. 核农学报, 2018,32(11):2248-2257. |
[18] | 赵文宗, 郑旭阳, 张映卿, 等. 不同砧木嫁接番茄根系分泌物对青枯病菌和幼苗生长的影响[J]. 中国蔬菜, 2019(5):58-63. |
[19] | 陈立新, 李少博, 乔璐, 等. 凋落物叶和土壤浸提液对红松种子萌发及幼苗生长的影响[J]. 南京林业大学学报(自然科学版), 2016,40(2):81-87. |
[20] | 陈军, 罗影, 王立光, 等. 不同种植模式土壤水浸提液对胡麻的化感效应[J]. 中国土壤与肥料, 2017(3):125-130. |
[21] |
吴会芹, 董林林, 王倩. 玉米、小麦秸秆水浸提液对蔬菜种子的化感作用[J]. 华北农学报, 2009,24(S2):140-143.
DOI URL |
[22] | Dong S Q, Ma Y Q, Wu H W, et al. Stimulatory effects of wheat (Triticum aestivum L.) on seed germination of Orobanche minor Sm.[J]. Allelopathy Journal, 2012,30(2):247-258. |
[23] | 刘子凡, 刘培培, 闫文静, 等. 间作木薯对橡胶树根际土壤真菌群落结构的影响[J]. 热带作物学报, 2020,41(3):609-614. |
[1] | SUN Chenyu,ZENG Yanhong,MA Junqing,LIU Lu,WANG Wenqi,HUANG Jinghua. Effects of Arbuscular Mycorrhizal Fungi on Artemisia annua L. Growth and Chemical Composition of Root Exudates [J]. Chinese Journal of Tropical Crops, 2020, 41(9): 1831-1837. |
[2] | ZHANG Zhe,CHEN Qing,LIANG Xiao,WU Chunling,CHEN Qian,Zhang Yindong. Analysis on Difference of Nutrient Content in Leaf Tissue of Resistant and Sensitive Cassava Varieties Before and After Damage to Tetranychus cinnabarinus [J]. Chinese Journal of Tropical Crops, 2020, 41(9): 1865-1869. |
[3] | WEI Yundong,LUO Yanchun,ZHENG Hua,LI Jun,PAN Huan,LEI Kaiwen,XU Chuan. Cassava Rhizosphere Soil Collected by “Root Bag” Method and Its Bacteria Diversity [J]. Chinese Journal of Tropical Crops, 2020, 41(9): 1928-1938. |
[4] | LI Hengrui,CHEN Huixian,YANG Haixia,ZHANG Xiufen,HE Wen,LIANG Zhenhua,GUO Suyun,LIU Lianjun,LI Ping,CHEN Haisheng,YAN Huabing. Flowering and Fruiting Characteristics of Cassava Diploid and Its Autotetraploid [J]. Chinese Journal of Tropical Crops, 2020, 41(8): 1582-1588. |
[5] | LIU Zifan,LIU Peipei,YAN Wenjing,MA Xiaowei. Effects of Rubber-cassava Intercropping on Soil Fungal Community Structure in Rhizosphere of Rubber Trees [J]. Chinese Journal of Tropical Crops, 2020, 41(3): 609-614. |
[6] | CHEN Qian,LIANG Xiao,WU Chunling,CHEN Qing,LIU Ying,ZHANG Zhe. Effects of Different Cassava Cultivars on Antioxidant Enzyme Activities of Paracoccus marginatus [J]. Chinese Journal of Tropical Crops, 2020, 41(11): 2273-2279. |
[7] | Luiz JCB Carvalho,CHEN Songbi. Genetic Resources, Evaluation, Application and Breeding of Cassava Crop [J]. Chinese Journal of Tropical Crops, 2020, 41(10): 1968-1978. |
[8] | LIU Shanting,LUO Xinglu,WU Meiyan,TANG Zhiping,WANG Chaochao,ZHANG Jialing. Comparison of Cassava Yield and Soil Microbial Characteristics under Continuous Cropping and Rotation [J]. Chinese Journal of Tropical Crops, 2019, 40(8): 1468-1473. |
[9] | LI Mao,ZI Xuejuan,DIAO Qiyu,HU Haichao,TANG Jun,ZHOU Hanlin. Organic Acids Improve the Fermentation Quality and Nutrient Value of Cassava Foliage [J]. Chinese Journal of Tropical Crops, 2019, 40(7): 1312-1316. |
[10] | Gao Jintao,LIANG Xiao,WU Chunling,CHEN Qing,CHEN Qian. Function of Red Spider Mite (Tetranychus cinnabarinus) Transcription Factor TcNrf2 on Regulating the Transcription of Antioxidant Enzyme Genes [J]. Chinese Journal of Tropical Crops, 2019, 40(6): 1163-1170. |
[11] | LIN Zhaowei,LI Chaoping,SHI Tao,WANG Guofen,LI Boxun,CAI Jimiao,HUANG Guixiu. Cloning and Expression Analysis of Cassava MeNAC29 and MeNAC30 Genes [J]. Chinese Journal of Tropical Crops, 2019, 40(4): 701-707. |
[12] | CHEN Huixian,CAO Sheng,YAN Huabing,XIE Xiangyu,SHANG Xiaohong. The Effect of Increasing Bio-organic Fertilizer on the Yield and Quality of Edible-cassava [J]. Chinese Journal of Tropical Crops, 2019, 40(3): 417-424. |
[13] | WU Yuanhang,LIU Qin,LIU Pandao,GUO Pengfei,LI Min,JIANG Lingyan,LUO Lijuan. Cloning of Cassava Phenylalanine Ammonia Lyase Genes and Their Responses to Low Temperature Stress [J]. Chinese Journal of Tropical Crops, 2019, 40(3): 483-489. |
[14] | SHI Tao,LI Chaoping,CAI Jimiao,WANG Guofen,LU Cuimei,HAN Quanhui,HUANG Guixiu. Occurrence Pattern Investigation and Fungicides Control Effect in Field for Cassava Brown Leaf Spot Disease in China [J]. Chinese Journal of Tropical Crops, 2019, 40(11): 2178-2188. |
[15] | SU Bimeng,WANG Juan,HUANG Jie,WEI Yunxia,DENG Ganran,HE Fengguang,YU Changde,CHEN Chen,LIU Zhi. Storage Root Configuration of Cassava and the Influence for Mechanical Harvesting [J]. Chinese Journal of Tropical Crops, 2019, 40(10): 2029-2033. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||