Page 108 - 《广西植物》2026年第4期
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6 6 6                                  广  西  植  物                                         46 卷
            在猕猴桃木质部的趋化运动能力ꎻ强化生物膜合                                D747 to control the kiwifruit bacterial canker disease
            成基因簇ꎬ促使工程菌在伤口、导管口稳定占位ꎬ                               [J]. Acta Horticulturaeꎬ 1332: 95-102.
                                                               CHEN Qꎬ YU J Jꎬ HE Jꎬ et al.ꎬ 2022. Isobenzofuranones and
            进而阻断 Psa 的入侵通道ꎮ (4) 构建“ Psa 感应 -
                                                                 isocoumarins from kiwi endophytic fungus Paraphaeosphaeria
            智能杀伤-自身调控” 一体化回路ꎬ让 KBC 工程菌
                                                                 sporulosa and their antibacterial activity against Pseudomonas
            株可精准识别 Psa 并按需启动抑菌功能ꎬ减少对果
                                                                 syringae pv. actinidiae [J]. Phytochemistryꎬ 195: 113050.
            园土著微生物群的干扰ꎻ同时结合营养缺陷型底                              CONG Y Zꎬ 2019. Novel mixed fermentation of bio ̄control
            盘改造ꎬ提升工程菌株的环境安全性ꎬ为其田间规                               microorganisms treatment agent for suppressing kiwifruit

            模化应用筑牢基础ꎮ                                            bacterial canker disease associated with soil microflora
            5.2.2 基于微生物组的病害预警与精准防控  基                            alterations [ J]. Journal of Plant Physiology & Pathologyꎬ
            于微生物组学技术ꎬ解析猕猴桃溃疡病健康植株                                7: 27.
                                                               DARANAS Nꎬ ROSELLÓ Gꎬ CABREFIGA Jꎬ et al.ꎬ
            与发病植株根际、叶际及枝干维管内生菌群结构
                                                                 2019. Biological control of bacterial plant diseases with
            差异ꎬ筛选病害特异性微生物标记物ꎬ进而构建潜
                                                                 Lactobacillus plantarum strains selected for their broad ̄
            伏侵染阶段的早期微生态预警模型ꎻ同时通过定                                spectrum activity [J]. Annals of Applied Biologyꎬ 174(1):
            向修复核心抗病有益菌群、组装合成功能菌群、优                               92-105.
            化栽培管理以调控果园微生态ꎬ构建从早期风险                              DENG S Yꎬ CHANG Wꎬ QUE Y Wꎬ et al.ꎬ 2023. Survival of
                                                                 Pseudomonas syringae pv. actinidiae in detached kiwifruit
            预警到菌群精准重塑的一体化绿色防控体系ꎮ
                                                                 leaves at different environmental conditions [ J]. PeerJꎬ
            5.2.3 生防菌与智慧农业的融合应用  借助在线
                                                                 11: e15031.
            监测设备ꎬ对果园环境、Psa 菌量及 KBC 生防菌的
                                                               DONATI Iꎬ BURIANI Gꎬ CELLINI Aꎬ et al.ꎬ 2014. New
            定殖动态进行实时监测ꎬ通过完善大数据分析模
                                                                 insights on the bacterial canker of kiwifruit ( Pseudomonas
            型ꎬ进一步推动智能装备与 KBC 生防菌施用的深                             syringae pv. actinidiae) [ J]. Journal of Berry Researchꎬ
            度适配ꎻ研发适用于猕猴桃枝干维管系统的精准                                4(2): 53-67.
            注射设备、无人机变量施药系统等智能装备ꎬ以实                             DONATI Iꎬ CELLINI Aꎬ BURIANI Gꎬ et al.ꎬ 2018. Pathways
            现 KBC 生防菌的定向递送与定量施用ꎬ有效提升                             of flower infection and pollen ̄mediated dispersion of
                                                                 Pseudomonas syringae pv. actinidiaeꎬ the causal agent of
            其施用效率与防治效果ꎻ同时结合“ 水肥菌一体
                                                                 kiwifruit bacterial canker [ J ]. Horticulture Researchꎬ
            化”智慧灌溉技术ꎬ促进 KBC 生防菌应用与栽培
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            管理的协同融合ꎮ
                                                               DU Z Nꎬ YAN Z Yꎬ HOU Z Yꎬ et al.ꎬ 2021. Isolation and
                                                                 identification of pathogen causing canker and screening of
                                                                 biocontrol bacteria in kiwifruit [J]. Southwest China Journal
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               plant growth and short ̄term productivity of Capsicum annuum  plant growth promotionꎬ and sustainable agriculture: a
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               producing  2ꎬ 4 ̄diacetylphloroglucinol  and  lipopeptides  agents of plant diseases: mechanismsꎬ challenges and future
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