[1] |
PLOETZ R C. Management of Fusarium wilt of banana: A review with special reference to tropical race 4 [J]. Crop Protection, 2015, 73: 7 − 15. doi: 10.1016/j.cropro.2015.01.007 |
[2] |
HIGGINS J E. The banana in Hawaii [J]. Hawaii Agric Expt Stn Bul, 1904, 49(7): 53 − 67. |
[3] |
李恒,畅文军,陈汉清,等. 香蕉枯萎镰刀菌4号生理小种mon1基因敲除转化子的表型分析及致病力测定[J]. 热带生物学报, 2019, 10(2): 127 − 134. |
[4] |
MOORE N Y, PEGG K G, BENTLEY S, et al. Fusarium wilt of banana: global problems and perspectives[C]//MOLINA B, NIKMASDEK N H, LIEW K W. Banana Fusarium wilts management: towards sustainable cultivation. Proceedings of International Workshop on the Banana Fusarium Wilt Disease. Los Banos, Laguna (Philippines), 2001: 11 − 30. |
[5] |
ZHONG S, MO Y, GUO G, et al. Effect of continuous cropping on soil chemical properties and crop yield in Banana Plantation [J]. J Agr Sci Tech, 2014, 16: 239 − 250. |
[6] |
HARTMAN K, VAN D, WITTWER R A, et al. Cropping practices manipulate abundance patterns of root and soil microbiome members paving the way to smart farming [J]. Microbiome, 2018, 6(1): 14. doi: 10.1186/s40168-017-0389-9 |
[7] |
QIAO P L, WU F Z, ZHOU X G, et al. Effects of continuous cropping on soil microbe communities and enzyme activity [J]. Journal of Shenyang Agricultural University, 2013, 44(5): 524 − 530. |
[8] |
HWANG S C and KO W H. Cavendish banana cultivars resistant to Fusarium wilt acquired through somaclonal variation in Taiwan [J]. Plant Disease, 2004, 88(6): 580 − 588. doi: 10.1094/PDIS.2004.88.6.580 |
[9] |
LAKSHMANAN P, SELVARAJ P and MOHAN S. Efficacy of different methods for the control of Panama disease [J]. Pans Pest Articles & News Summaries, 1987, 33(4): 373 − 374. |
[10] |
FU L, PENTON C R, RUAN Y Z, et al. Inducing the rhizosphere microbiome by biofertilizer application to suppress banana Fusarium wilt disease [J]. Soil Biology and Biochemistry, 2017, 104: 39 − 48. doi: 10.1016/j.soilbio.2016.10.008 |
[11] |
HONG S, JV H L, LU M, et al. Significant decline in banana Fusarium wilt disease is associated with soil microbiome reconstruction under chilli pepper-banana rotation [J]. European Journal of Soil Biology, 2020, 97: 103154. doi: 10.1016/j.ejsobi.2020.103154 |
[12] |
剧虹伶. 辣椒−香蕉轮作联合生物有机肥减轻高发枯萎病蕉园连作障碍机制研究[D]. 海口: 海南大学, 2017. |
[13] |
曾莉, 郭志祥, 番华彩, 等. 云南香蕉枯萎病及防治研究进展[J]. 热带农业科技, 2016, 39(4): 19 − 22. doi: 10.3969/j.issn.1672-450X.2016.04.005 |
[14] |
LI Q S, WU L K, CHEN J, et al. Biochemical and microbial properties of rhizospheres under maize/ peanut intercropping [J]. Journal of Integrative Agriculture, 2016(1): 101 − 110. |
[15] |
ZHANG M M, WANG N, ZHANG J Y, et al. Soil physicochemical properties and the rhizosphere soil fungal community in a mulberry (Morus alba L.)/Alfalfa (Medicago sativa L.) intercropping system [J]. Forests, 2019, 10(2): 167 − 184. doi: 10.3390/f10020167 |
[16] |
WIBOWO A, ALBONEH A R, SOMALA M U A, et al. Increasing soil suppressivity to Fusarium wilt of banana through banana intercropping with Allium spp. [J]. Perlindungan Tanaman Indonesia, 2015, 19(1): 33 − 39. |
[17] |
付学鹏, 吴凤芝, 吴瑕, 等. 间套作改善作物矿质营养的机理研究进展[J]. 植物营养与肥料学报, 2016, 22(2): 525 − 535. doi: 10.11674/zwyf.14423 |
[18] |
DEVI K N, SHAMURAILATPAM D, SINGH T B, et al. Performance of lentil (Lens culinaris M.) and mustard (Brassica juncea L.) intercropping under rainfed conditions [J]. Australian Journal of Crop Science, 2014, 8: 284 − 289. |
[19] |
吴凤芝, 周新刚. 不同作物套作对黄瓜病害及土壤微生物群落多样性的影响[J]. 土壤学报, 2009, 46(5): 899 − 906. doi: 10.3321/j.issn:0564-3929.2009.05.019 |
[20] |
鲍士旦. 土壤农化分析[M]. 3版. 北京: 中国农业出版社, 2000. |
[21] |
洪珊. 茄子与香蕉轮作配施生物有机肥缓解蕉园连作障碍土壤微生物机制研究[D]. 海口: 海南大学, 2017. |
[22] |
刘珊珊, 夏萌, 胡夏茹, 等. 石灰碳铵熏蒸联合生物有机肥对香蕉枯萎病和细菌群落的影响[J/OL]. 应用生态学报, 2020(12): 4189 − 4196. |
[23] |
SHEN Z Z, PENTON C R, LV N, et al. Banana Fusarium wilt disease incidence is influenced by shifts of soil microbial communities under different monoculture spans [J]. Microbial Ecology, 2018, 75: 739 − 750. doi: 10.1007/s00248-017-1052-5 |
[24] |
杨劲明, 王禹童, 陈冰, 等. 豆科绿肥残体对连作蕉园土壤肥力的影响[J]. 热带作物学报, 2020, 41(3): 433 − 440. doi: 10.3969/j.issn.1000-2561.2020.03.003 |
[25] |
SENECHKIN I V, OVERBEEK L V and BRUGGEN A V. Greater Fusarium wilt suppression after complex than after simple organic amendments as affected by soil pH, total carbon and ammonia-oxidizing bacteria [J]. Applied Soil Ecology, 2014, 73: 148 − 155. doi: 10.1016/j.apsoil.2013.09.003 |
[26] |
PENG H X, SIVASITHAMPARAM K, TURNER D W. Chlamydospore germination and Fusarium wilt of banana plantlets in suppressive and conducive soils are affected by physical and chemical factors [J]. Soil Biology and Biochemistry, 1999, 31: 1363 − 1374. doi: 10.1016/S0038-0717(99)00045-0 |
[27] |
DELTOUR P, FRANCA S C, PEREIRA O L, et al. Disease suppressiveness to Fusarium wilt of banana in an agroforestry system: Influence of soil characteristics and plant community [J]. Agriculture Ecosystems & Environment, 2017, 239: 173 − 181. |
[28] |
RYAN O and NELSON P N. Impacts of soil abiotic attributes on Fusarium wilt, focusing on bananas [J]. Applied Soil Ecology, 2018, 132: 20 − 33. doi: 10.1016/j.apsoil.2018.06.019 |
[29] |
廖明莉, 韩文斌, 谢树果, 等. 四种豆科绿肥与小麦间作的效应研究[J]. 西华师范大学学报(自然科学版), 2012, 33(4): 366 − 370. |
[30] |
YUAN J, CHAPARRO J M, MANTER D K, et al. Roots from distinct plant developmental stages are capable of rapidly selecting their own microbiome without the influence of environmental and soil edaphic factors [J]. Soil Biology and Biochemistry, 2015, 89: 206 − 209. doi: 10.1016/j.soilbio.2015.07.009 |
[31] |
郝文雅, 沈其荣, 冉讳, 等. 西瓜和水稻根系分泌物中糖和氨基酸对西瓜枯萎病病原菌生长的影响[J]. 南京农业大学学报, 2011, 34(3): 77 − 82. doi: 10.7685/j.issn.1000-2030.2011.03.014 |
[32] |
ZHAO M L, ZHAO J, YUAN J, et al. Root exudates drive soil – microbe - nutrient feedbacks in response to plant growth [J]. Plant Cell & Environment, 2021, 44: 613 − 628. |
[33] |
SHEN Z Z, XUE C, PENTON C R, et al. Suppression of banana Panama disease induced by soil microbiome reconstruction through an integrated agricultural strategy [J]. Soil Biology and Biochemistry, 2019, 128: 164 − 174. doi: 10.1016/j.soilbio.2018.10.016 |
[34] |
ZHAO M, YUAN J, ZHANG R, et al. Microflora that harbor the NRPS gene are responsible for Fusarium wilt disease-suppressive soil [J]. Applied Soil Ecology, 2018, 132: 83 − 90. doi: 10.1016/j.apsoil.2018.08.022 |
[35] |
BUBICI G, KAUSHAL M, PRIGIGALLO M, et al. Biological control agents against Fusarium wilt of banana [J]. Front. Microbiol, 2019, 10: 616 − 625. doi: 10.3389/fmicb.2019.00616 |