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1 期                      徐碧林等: 蕲艾内生细菌的分离鉴定及抑菌活性分析                                            7 7

            普氏肠杆菌( Enterobacter roggenkampii) 是 阿 斯 氏          DONG YHꎬ LIAO Xꎬ XIA HJꎬ et al.ꎬ 2018. Community
            肠杆菌(E. asburiae)的同义词ꎬ阿斯氏肠杆菌的菌                        structure of wild Artemisia argyi at Qichun in China [J]. J
                                                                 Jianghan Univ (Nat Sci Ed)ꎬ 46(1): 58-61.
            株可以通过抑制铁的吸收来降低玉米植株中镉的                              El ̄SAYED ASAꎬ MOUSAFA AHꎬ HUSSEIN HAꎬ et al.ꎬ
            毒性、具有杀线虫和促进植物生长的活性ꎬ阿斯氏                               2020. Potential insecticidal activity of Sarocladium strictumꎬ
                                                                 an endophyte of Cynanchum acutumꎬ against Spodoptera
            肠杆菌 Vt ̄7 挥发物对花生贮藏过程中产生的黄曲
                                                                 littoralisꎬ a polyphagous insect pest [ J]. Biocatal Agric
            霉 和 黄 曲 霉 毒 素 具 有 抗 性 ( Mira et al.ꎬ 2018ꎻ           Biotechnolꎬ 24: 101524.
                                                               FIGUEIRA Cꎬ FERREIRA MJꎬ SILVA Hꎬ et al.ꎬ 2019.
            Sutton et al.ꎬ 2018ꎻ Gong et al.ꎬ 2019ꎻ Zhou et al.ꎬ
                                                                 Improved germination efficiency of Salicornia ramosissima
            2019)ꎮ 该结果表明ꎬ本研究分离得到的罗根坎普
                                                                 seeds inoculated with Bacillus aryabhattai SP1016 ̄20
            氏肠杆菌 wnn1 ̄1 可能具有生物防治功能ꎮ                              [J]. Ann App Biolꎬ 174(3): 319-328.
                 本研究分离的菌株中ꎬ皮提不动杆菌 lzy ̄1 系                      GIAUQUE Hꎬ CONNOR EWꎬ HAWKES CV. 2019. Endophyte
                                                                 traits relevant to stress toleranceꎬ resource use and habitat of
            首次从植物中分离到皮提不动杆菌ꎬ松尼索利黄                                origin predict effects on host plants [ J]. New Phytolꎬ
            体杆菌报道较少ꎬ已报道的与我们分离得到的其                                221(4): 2239-2249.
                                                               GONG ADꎬ DONG FYꎬ HU MJꎬ et al.ꎬ 2019. Antifungal
            余 11 种内生菌同属的菌株分别拥有各自有益的
                                                                 activity of volatile emitted from Enterobacter asburiae Vt ̄7
            生物学功能ꎬ体现在促进生长、增强抗逆性、生物                               against Aspergillus flavus and aflatoxins in peanuts during
                                                                 storage [J]. Food Controlꎬ 106: 106718.
            防治、生物修复和具有良好的抗菌效果等方面ꎮ
                                                               GOUDA Sꎬ DAS Gꎬ SEN SKꎬ et al.ꎬ 2016. Endophytes: a
            因此ꎬ我们猜测ꎬ从蕲艾中分离得到的这些内生细                               treasure house of  bioactive compounds of  medicinal
            菌ꎬ与蕲艾本身易于种植、植株高大、全草入药及                               importance [J]. Front Microbiolꎬ 7: 1538.
                                                               HE Wꎬ MEGHARAJ Mꎬ WU CYꎬ et al.ꎬ 2020. Endophyte ̄
            其良好抑菌效果之间有一定的关联ꎬ可能是在长
                                                                 assisted  phytoremediation:  mechanisms  and  current
            期进化中ꎬ内生菌菌株促进蕲艾生长ꎬ增强其对环                               application strategies for soil mixed pollutants [J]. Crit Rev
            境的耐受性ꎻ同时ꎬ它们也获得了蕲艾本身的部分                               Biotechnolꎬ 40(1): 31-45.
                                                               HONG ZG. 2015. Study in geo ̄authentic of Qiai [J]. J S ̄Cent
            特性ꎬ从而实现与宿主植物共同进化ꎮ
                                                                 Univ Natl ( Nat Sci Ed)ꎬ 34 ( 2): 33 - 37. [ 洪 宗 国ꎬ
                                                                 2015. 蕲艾的道地性研究 [J]. 中南民族大学学报:自然
                                                                 科学版ꎬ 34(2): 33-33.]
            参考文献:                                              HUANG JYꎬ ZHANG CJꎬ YAO YLꎬ et al.ꎬ 2017. Progress in
                                                                 antimicrobial substances of endophytes [ J ]. Chin J
                                                                 Biotechnolꎬ 33(2): 178-186. [黄敬瑜ꎬ 张楚军ꎬ 姚瑜龙ꎬ
            AKTER Sꎬ HUQ MA. 2018. Luteibacter pinisoli sp. nov.ꎬ a  等ꎬ 2017. 植 物 内 生 菌 生 物 抗 菌 活 性 物 质 研 究 进 展
               casein degrading bacterium isolated from rhizospheric soil of
                                                                 [J]. 生物工程学报ꎬ 33(2): 178-186.]
               Pinus koraiensis [J]. Arch Microbiolꎬ 200(7): 1017-1023.  JEONG SDꎬ YOO SJꎬ KYU HJꎬ et al.ꎬ 2019. Effect of Bacillus
            BALTRUS DAꎬ CLARK Mꎬ INDERBITAIN Pꎬ et al.ꎬ 2019.
                                                                 aryabhattai H26 ̄2 and B. siamensis H30 ̄3 on growth
               Complete genome sequence of Luteibacter pinisoli MAH ̄14  promotion and alleviation of heat and drought stresses in
               [J]. Microbiol Resour Annꎬ 8(29): e00774-00719.
                                                                 Chinese cabbage [J]. Plant Pathol Jꎬ 35(2): 178-187.
            BHAI RSꎬ EAPEN SJꎬ KUMAR Aꎬ et al.ꎬ 2017. Mitigating  KANG SMꎬ ASAF Sꎬ KHAN ALꎬ et al.ꎬ 2020. Complete
               phytophthora foot rot and slow decline diseases of black  genome sequence of Pseudomonas psychrotolerans CS51ꎬ a
               pepper through the deployment of bacterial antagonists [J]. J  plant growth ̄promoting bacteriumꎬ under heavy metal stress
               Spiece Aromat Cropꎬ 26(2): 69-82.                 conditions [J]. Microorganismsꎬ 8(3): 382.
            BHATTACHARYA Aꎬ GIRI VPꎬ SINGH Sꎬ et al.ꎬ 2019.    KANG SMꎬ KHAN ALꎬ WAQAS Wꎬ et al.ꎬ 2019. Integrated
               Intervention of bio ̄protective endophyte Bacillus tequilensis  phytohormone production by the plant growth ̄promoting
               enhance physiological strength of tomato during Fusarium wilt  rhizobacterium  Bacillus  tequilensis  SSB07  induced
               infection [J]. Biological Controlꎬ 139: 104074.   thermotolerance in soybean [J]. J Plant Interactꎬ 14(1):
            DASH   DMꎬ  OSBORNE   JW.  2020.  Biodegradation  of  416-423.
               monocrotophos by a plant growth promoting Bacillus  KUMAR Sꎬ STECHER Gꎬ TAMURA K. 2016. MEGA7:
               aryabhattai VITNNDJ5 strain in artificially contaminated soil  molecular evolutionary genetics analysis version 7.0 for
               [J]. Int J Environ Sci Technolꎬ 17(3): 1475-1490.  bigger datasets [J]. Mol Biol Evolꎬ 33(7): 1870-1874.
            DE LAMO Fꎬ TAKKEN F. 2020. Biocontrol by Fusarium  KUMARAVEL Sꎬ SUGITHA Tꎬ SRIDAR Rꎬ et al.ꎬ 2018. Draft
               oxysporum using endophyte ̄mediated resistance [ J]. Front  genome sequence of plant growth ̄promoting and drought ̄
               Plant Sciꎬ 11: 37.                                tolerant Bacillus altitudinis FD48ꎬ isolated from rice
            DONG XZꎬ CAI    MY.  2001.  Handbook  of  systematic  phylloplane [J]. Genome Aꎬ 6(9): e00019-00018.
               identification of common bacteria [ M]. Beijing: Science  LI BYꎬ WANG Bꎬ PAN Pꎬ et al.ꎬ 2019. Bacillus altitudinis
               Press. [东秀珠ꎬ 蔡妙英ꎬ 2001. 常见细菌系统鉴定手册                strain AMCC 101304: a novel potential biocontrol agent for
               [M]. 北京: 科学出版社: 267-295.]                         potato common scab [J]. Biocontrol Sci Technolꎬ 29(10):
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