Page 13 - 《广西植物》2023年第7期
P. 13

7 期                   向维等: 三七皂苷类自毒物质降解细菌分离及其降解特性                                          1 1 8 1

            QIAO YJꎬ ZHANG JJꎬ SHANG JHꎬ et al.ꎬ 2019. GC ̄MS ̄based  Front Plant Sciꎬ 9: 264.
               identification  and  statistical  analysis  of  liposoluble  YANG Mꎬ ZHANG XDꎬ XU YGꎬ et al.ꎬ 2015. Autotoxic
               components in the rhizosphere soils of Panax notoginseng  ginsenosides in the rhizosphere contribute to the replant
               [J]. RSC Advꎬ 9(36): 20557-20564.                 failure  of  Panax  notoginseng  [ J ].  PLoS  ONEꎬ
            REN Xꎬ YAN ZQꎬ HE XFꎬ et al.ꎬ 2017. Allelochemicals from  10(2): e0118555.
               rhizosphere soils of Glycyrrhiza uralensis Fisch: Discovery of  YOU PJꎬ 2009. Study on autotoxicants in soil of Panax
               the autotoxic compounds of a traditional herbal medicine  notoginseng after continuous cropping [D]. Beijing: Beijing
               [J]. Ind Crops Prodꎬ 97: 302-307.                 University of Chinese Medicine. [游佩进ꎬ 2009. 连作三七
            SHEN   Hꎬ  LEUNG   WIꎬ  RUAN  JQꎬ  et  al.  2013.    土壤中自毒物质的研究 [D]. 北京: 北京中医药大学.]
               Biotransformation of ginsenoside Rb1 via the gypenoside  ZHANG QFꎬ LÜ SXꎬ JIANG YXꎬ et al.ꎬ 2021. Screening and
               pathway by human gut  bacteria [ J ].  Chin Medꎬ  identification of microorganisms producing β ̄glucosidase and
               8(1): 1-11.                                       their application in transformation of ginsenoside Compound ̄
            SUDHIR Kꎬ GLEN Sꎬ LI Mꎬ et al.ꎬ 2018. MEGA X: molecular  K [J]. Shandong Agric Sciꎬ 53(11): 63-69. [张庆锋ꎬ 吕
               evolutionary genetics analysis across computing platforms  世鑫ꎬ 江雨欣ꎬ 等ꎬ 2021. 产 β ̄葡萄糖苷酶微生物的筛选
               [J]. Mol Biol Evolꎬ 35(6): 1547-1549.             鉴定及其在人参皂苷 Compound K 转化中的应用 [J]. 山
            SUN XTꎬ LI Lꎬ LONG GQꎬ et al.ꎬ 2015. The progress and  东农业科学ꎬ 53(11): 63-69.]
               prospect on consecutive monoculture problems of Panax  ZHANG Wꎬ LU LYꎬ HU LYꎬ et al.ꎬ 2018. Evidence for the
               notoginseng [J]. Chin J Ecolꎬ 34(3): 885-893. [孙雪婷ꎬ  involvement of auxinꎬ ethylene and ROS signaling during
               李磊ꎬ 龙光强ꎬ 等ꎬ 2015. 三七连作障碍研究进展 [J]. 生               primary root inhibition of Arabidopsis by the allelochemical
               态学杂志ꎬ 34(3): 885-893.]                            benzoic acid [J]. Plant Cell Physiolꎬ 59(9): 1889-1904.
            TAN Yꎬ CUI YSꎬ JI XLꎬ et al.ꎬ 2017. Research progress in  ZHANG Yꎬ ZHENG YJꎬ XIA PGꎬ et al.ꎬ 2019. Impact of
               microorganism changes of  rhizospheric soil  and root  continuous Panax notoginseng plantation on soil microbial and
               endogenous and ecology during continuous cropping of Panax  biochemical properties [J]. Sci Repꎬ 9(1): 13205.
               notoginseng [ J]. Chin Trad Herb Drugsꎬ 48 ( 2): 391 -  ZHAO Jꎬ WANG Pꎬ LIU YNꎬ et al.ꎬ 2021ꎬ Recent advances in
               399. [谭勇ꎬ 崔尹赡ꎬ 季秀玲ꎬ 等ꎬ 2017. 三七连作的根               biotransformation of ginsenosides [J]. Chem Ind Eng Progꎬ
               际、根内微生物变化与生态学研究进展 [J]. 中草药ꎬ                       40(3): 1238-1247. [赵婧ꎬ 王盼ꎬ 刘彦楠ꎬ 等ꎬ 2021. 人
               48(2): 391-399.]                                  参皂苷的定向生物转化研究进展 [J]. 化工进展ꎬ 40(3):
            WANG LTꎬ YANG DYꎬ DENG LMꎬ et al.ꎬ 2020. Isolation and  1238-1247.]
               screening of antagonistic autotoxin ̄degrading bacteria in  ZHAO LFꎬ JIAO CXꎬ LI Hꎬ et al.ꎬ 2018. Chemical
               Panax notoginseng (Burk.)F. H. Chen rhizosphere soil [J] J  transformation of protopanaxadiol type ginsenoside Rb ꎬ Rb
                                                                                                        1   2
               S Agricꎬ 51(2): 305- 312. [王罗涛ꎬ 杨冬英ꎬ 邓琳梅ꎬ         and Rc analyzed by RRLC ̄Q ̄TOF-MS [J]. Chem J Chin
               等ꎬ 2020. 三七根际土壤中皂苷类自毒物质降解拮抗细菌                     Univꎬ 39(4): 667- 673. [赵乐凤ꎬ 焦传新ꎬ 李慧ꎬ 等ꎬ
               的分离筛选 [J]. 南方农业学报ꎬ 51(2): 305-312.]               2018. RRLC ̄Q ̄TOF ̄MS 研究人参二醇型皂苷 Rb ꎬ Rb 和
                                                                                                      1   2
            WANG WPꎬ WANG ZHꎬ YANG Kꎬ et al.ꎬ 2020. Biochar      Rc 的 化 学 转 化 [ J]. 高 等 学 校 化 学 学 报ꎬ 39 ( 4):
               application alleviated negative plant ̄soil  feedback  by  667-673.]
               modifying soil microbiome [J]. Front Microbiolꎬ 11: 799.  ZHOU Wꎬ LI JYꎬ LI XWꎬ et al.ꎬ 2008. Development and
            XIANG Wꎬ 2016. Autotoxicity in Panax notoginseng of root  validation of a reversed ̄phase HPLC method for quantitative
               exudates and their allelochemicals [D]. Nanning: Guangxi  determination of ginsenosides Rb ꎬ Rdꎬ F ꎬ and compound K
                                                                                        1      2
               University. [向维ꎬ 2016. 三七根系分泌物的自毒作用及              during the process of biotransformation of ginsenoside Rb1
               自毒物质研究 [D]. 南宁: 广西大学.]                            [J]. J Sep Sciꎬ 31(6/ 7): 921-925.
            XIANG Wꎬ WEI XLꎬ TANG Hꎬ et al.ꎬ 2020. Complete genome  ZHU XYꎬ SHEN CYꎬ CHEN GWꎬ et al.ꎬ 2019. Advancement
               sequence and biodegradation characteristics of benzoic acid ̄  in research on bacterial chemotaxis in soil [J]. Acta Pedol
               degrading bacterium Pseudomonas sp. SCB32 [J]. Biol Med  Sinꎬ 56(2): 259-275. [朱晓艳ꎬ 沈重阳ꎬ 陈国炜ꎬ 等ꎬ
               Res Intꎬ 2020: e6146104.                          2019. 土壤细菌趋化性研究进展 [J]. 土壤学报ꎬ 56(2):
            YANG Mꎬ CHUAN YCꎬ GUO CWꎬ et al.ꎬ 2018. Panax        259-275.]
               notoginseng root cell death caused by the autotoxic
               ginsenoside Rg is due to over ̄accumulation of ROSꎬ as                        (责任编辑  蒋巧媛)
                          1
               revealed by transcriptomic and cellular approaches [ J].
   8   9   10   11   12   13   14   15   16   17   18