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               investigations on the control of yam ( Dioscorea rotundata  microbial pathogens in plant disease complexes: A growing
               Poir) tuber rot through nanoscience [ J]. Nanotechnology  trend [J]. Frontiers in Plant Scienceꎬ 6: 385.
               Reviewsꎬ 5(6): 499-505.                         LI CNꎬ LI HTꎬ LI YCꎬet al.ꎬ 2022. Research progress and
            FAOSTATꎬ 2022. Food and Agriculture Organization of the  control of root rot in Atractylodes lancea [J]. Journal of Agro ̄
               United Nations [DB/ OL]. http:/ / www.fao.org/ faostat/ en/ #  Environment Scienceꎬ 41(12): 2840-2846. [李超楠ꎬ 李洪
               data/ QC.                                         涛ꎬ 李运朝ꎬ 等ꎬ 2022. 苍术根腐病及其防治研究进展
            GAO Jꎬ HU XMꎬ XIAO RJꎬ et al.ꎬ 2023. The microbiome and  [J]. 农业环境科学学报ꎬ 41(12): 2840-2846.]
               typical pathogen multiplicationꎬ qualities changes of Baoxing  LI PFꎬ GU SSꎬ ZHU YMꎬ et al.ꎬ 2023. Soil microbiota plays a
               yam at  different  storage  temperatures  [ J ].  LWTꎬ  key regulatory role in the outbreak of tobacco root rot
               188: 115402.                                      [J]. Frontiers in Microbiologyꎬ 14: 1214167.
            GUO HYꎬ WANG DSꎬ RUAN Yꎬ et al.ꎬ 2023. Characteristics  LI PFꎬ YANG Lꎬ LI GLꎬ et al.ꎬ 2019. Research of rhizosphere
               and succession of rhizosphere soil microbial communities in  fungi communities of Fusarium root rot diseased tobacco
               continuous cropping watermelon [ J]. Scientia Agricultura  based on FUNGuild [ J]. Acta Tabacaria Sinicaꎬ 25(2):
               Sinicaꎬ 56(21): 4245- 4258. [郭晗玥ꎬ 王东升ꎬ 阮杨ꎬ        63- 68. [ 李 朋 发ꎬ 杨 龙ꎬ 李 桂 龙ꎬ 等ꎬ 2019. 基 于
               等ꎬ 2023. 西 瓜 连 作 根 际 土 壤 微 生 物 群 落 演 替 特 征        FUNGuild 的镰刀菌根腐病发病烟株根际真菌群落研究
               [J]. 中国农业科学ꎬ 56(21): 4245-4258.]                  [J]. 中国烟草学报ꎬ 25(2): 63-68.]
            GENG LHꎬ WANG JSꎬ MA Jꎬ et al.ꎬ 2021. Identification and  LI SCꎬ JIA HMꎬ CHEN Dꎬ 2005. Progress on yam ( Dicscorea
               biological characteristics of the pathogen causing a new  opposita Thunb) diseases and discussion on IPM strategies
               symptom disease of melon [ J ]. China Cucurbits and  [J]. Journal of Northwest A & F University (Natural Science
               Vegetablesꎬ 34(3): 15-20. [耿丽华ꎬ 王建设ꎬ 马建ꎬ 等ꎬ       Edition)ꎬ 33(增刊): 243-246. [李术臣ꎬ 贾海民ꎬ 陈丹ꎬ
               2021. 一种甜瓜新症状病害的病原鉴定及其生物学特性                       2005. 山药 主 要 病 害 研 究 进 展 和 生 产 中 存 在 的 问 题
               [J]. 中国瓜菜ꎬ 34(3): 15-20.]                         [J]. 西北农林科技大学学报(自然科学版)ꎬ 33(Suppl.):
            HALLIDAY FWꎬ PENCZYKOWSKI RM ꎬ BARRÈS Bꎬ et al.ꎬ     243-246.]
               2020. Facilitative priority effects drive parasite assembly  LI XYꎬZENG Rꎬ HUANG XMꎬ et al.ꎬ 2023. First report in
               under coinfection [ J]. Nature Ecology & Evolutionꎬ 4:  China of Fusarium humuli as a causative agent of Chinese
               1510-1521.                                        yam wilt [J]. Plant Diseaseꎬ 107(6): 1943.
            HAMDAYANTY Hꎬ MALINDA Nꎬ 2020. Isolation and       LI Yꎬ JI SYꎬ XU Tꎬet al.ꎬ 2023. Chinese yam (Dioscorea):
               identification of pathogen causes brown spot disease on yam  Nutritional valueꎬ  beneficial  effectsꎬ  and  food  and
               tubers ( Pachyrizus erosus ) in Indonesia [ J ]. IOP  pharmaceutical applications [J]. Trends in Food Science &
               Conference Series: Earth and Environmental Scienceꎬ  Technologyꎬ 134: 29-40.
               575: 012157.                                    LI YNꎬ 2022. Evolution of stomatal immunity against fungi
            HUANG ZXꎬ 2013. Molecular identification and pesticides  invasion in different vascular plants [D]. Lanzhou: Lanzhou
               screening of four fungal pathogens of Dioscorea alata L.  University: 1-47. [李燕娜ꎬ 2022. 不同维管束植物防御真
               [D]. Haikou: Hainan University: 1-42. [黄祖旬ꎬ 2013. 参  菌入侵的气孔免疫进化 [D]. 兰州: 兰州大学: 1-47.]
               薯四种 真 菌 性 病 害 病 原 菌 的 分 子 鉴 定 与 农 药 筛 选         LIN RHꎬ JI Zꎬ 2024. The formation mechanism of inventors’
               [D]. 海口: 海南大学: 1-42.]                             collaboration network based on exponential random graph
            JIA HMꎬ LU XYꎬ CHEN Dꎬ et al.ꎬ 2011. Occurrence law and  model [J]. Science & Technology Progress and Policyꎬ 41
               control technology of root rot of yam [ J ]. Northern  (13): 131-140. [林润辉ꎬ 季泽ꎬ 2024. 基于指数随机图
               Horticulture (1): 159-160. [贾海民ꎬ 鹿秀云ꎬ 陈丹ꎬ 等ꎬ      模型的发明者合作网络形成机制研究 [J]. 科技进步与
               2011. 麻山药根腐病发生规律及其防治技术 [J]. 北方园                   对策ꎬ 41(13): 131-140.]
               艺 (1): 159-160.]                                LIU TYꎬ CHEN CHꎬ YANG YLꎬ et al.ꎬ 2022. The brown root
            KANG Jꎬ ZHANG SYꎬ HAN Tꎬ et al.ꎬ 2017. Research on   rot fungus Phellinus noxius affects microbial communities in
               rhizosphere soil microbial diversity of two typical kinds of  different root ̄associated niches of  ficus trees [ J ].
               disease in yam [J]. Biotechnology Bulletinꎬ 33(3): 107-  Environmental Microbiologyꎬ 24(1): 276-297.
               113. [康捷ꎬ 章淑艳ꎬ 韩韬ꎬ 等ꎬ 2017. 两种麻山药典型病            LIU YXꎬ SHAO QYꎬ GE Wꎬ et al.ꎬ 2021. Comparison of
               害根际土壤微生物多样性的研究 [J]. 生物技术通报ꎬ                       culturable phyllosphere fungal flora between healthy and
               33(3): 107-113.]                                  diseased Rosa roxburghii [J]. Mycosystemaꎬ 40(10): 2620-
            LAMICHHANE JRꎬ VENTURI Vꎬ 2015. Synergisms between   2640. [刘宇星ꎬ 邵秋雨ꎬ 葛伟ꎬ 等ꎬ 2021. 健康与患病刺
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