中国水稻科学 ›› 2018, Vol. 32 ›› Issue (3): 277-284.DOI: 10.16819/j.1001-7216.2018.7074
张清霞, 张迎, 何玲玲, 陈夕军*(), 童蕴慧, 纪兆林
收稿日期:
2017-06-19
修回日期:
2017-09-18
出版日期:
2018-05-10
发布日期:
2018-05-10
通讯作者:
陈夕军
基金资助:
Qingxia ZHANG, Ying ZHANG, Lingling HE, Xijun CHEN*(), , Zhaolin JI
Received:
2017-06-19
Revised:
2017-09-18
Online:
2018-05-10
Published:
2018-05-10
Contact:
Xijun CHEN
摘要:
【目的】旨在获得对水稻纹枯病有生防效果的拮抗细菌,探索生防细菌作用机理。【方法】通过苗期防病试验从本实验室保存的7株拮抗细菌中筛选对水稻纹枯病有较好防病效果的菌株。结合生理生化性状和16S rDNA基因序列同源性分析,对生防细菌7-5进行初步鉴定,并通过PCR扩增、薄层层析等探讨7-5产生抗生素的种类。【结果】供试7株细菌中7-5、4-74和4-78对水稻纹枯病防效分别可达69.0%、70.8%和75.4%。其中4-74和4-78抑菌谱窄,7-5对水稻纹枯病菌、桃褐腐病菌和草莓灰霉病菌都具有较强抑菌能力。菌株7-5 鉴定为绿针假单胞菌;该菌株可产生吩嗪-1-羧酸、嗜铁素、氢氰酸、蛋白酶、藤黄绿脓菌素和2,4-二乙酰基间苯三酚等抗菌物质,不产生硝吡咯菌素、几丁质酶和纤维素酶。【结论】绿针假单胞菌7-5主要通过产生抗生素防治水稻纹枯病。
中图分类号:
张清霞, 张迎, 何玲玲, 陈夕军, 童蕴慧, 纪兆林. 水稻纹枯病拮抗细菌7-5的鉴定及其生防机制初步研究[J]. 中国水稻科学, 2018, 32(3): 277-284.
Qingxia ZHANG, Ying ZHANG, Lingling HE, Xijun CHEN, , Zhaolin JI. Identification of Strain 7-5, Antagonistic to Rice Sheath Blight, and Preliminary Study of Its Biocontrol Mechanism[J]. Chinese Journal OF Rice Science, 2018, 32(3): 277-284.
引物 Primer | 序列 Sequence (5’-3’) | 基因 Amplified gene | 片段大小 Amplified segment/bp | 文献 Reference |
---|---|---|---|---|
16S-63F | CAGGCCTAACACATGCAAGTC | 16SrDNA | 1500 | [19] |
16S-1387R | GGGCGGTGATGTACAAGGC | |||
phl2a | GAGGACGTCGAAGACCACCA | phlD | 745 | [20] |
phl2b | ACCGCAGCATCGTGTATGAG | |||
PCA2a | TGCCAAGCCTCGCTCCAAC | phzCD | 1400 | [20] |
PCA3b | CCGCGTTGTTCCTCGTTCAT | |||
pltcf | GAAGCCGAAGGCATGGACCC | pltC | 450 | 本研究This study |
pltcr | GCCGCGTCGAAGGTCTTGCA | |||
prnCF | CCACAAGCCCGGCCAGGAGC | prnC | 720 | [21] |
prnCR | GAGAAGAGCGGGTCGATGAAGCC |
表1 本研究所用引物
Table 1 Primers used in this study.
引物 Primer | 序列 Sequence (5’-3’) | 基因 Amplified gene | 片段大小 Amplified segment/bp | 文献 Reference |
---|---|---|---|---|
16S-63F | CAGGCCTAACACATGCAAGTC | 16SrDNA | 1500 | [19] |
16S-1387R | GGGCGGTGATGTACAAGGC | |||
phl2a | GAGGACGTCGAAGACCACCA | phlD | 745 | [20] |
phl2b | ACCGCAGCATCGTGTATGAG | |||
PCA2a | TGCCAAGCCTCGCTCCAAC | phzCD | 1400 | [20] |
PCA3b | CCGCGTTGTTCCTCGTTCAT | |||
pltcf | GAAGCCGAAGGCATGGACCC | pltC | 450 | 本研究This study |
pltcr | GCCGCGTCGAAGGTCTTGCA | |||
prnCF | CCACAAGCCCGGCCAGGAGC | prnC | 720 | [21] |
prnCR | GAGAAGAGCGGGTCGATGAAGCC |
图1 拮抗细菌对水稻纹枯病的防治效果柱上不同小写字母表示差异显著。
Fig.1. Control effects of antagonistic bacteria on rice sheath blight. Different small letters above bars mean significant difference at 0.05 level.
图4 抗生素基因的PCR检测 M—2000 bp标记;1~3–菌株FD6、7-5、2P24 prn扩增产物;4~6–菌株PAO17-5、FD6产生的pca扩增产物;7~9–菌株FD6、7-5、2P24 产生的plt扩增产物;10~12–菌株FD6、7-5、L5phl扩增产物。
Fig.4. PCR amplification of antibiotics gene from bacterial strain 7-5. M,2000 bp marker;1–3,PRN amplification productsof FD6, 7-5 and 2P24;4–6,PCAamplification products of PAO17-5 and FD6;7–9,PLT amplification productsof FD6, 7-5 and 2P24;10–12,PHL amplification productsof FD6, 7-5 and L5.
图6 7-5产生代谢分泌物鉴定 A—蛋白酶;B—嗜铁素;C—氢氰酸;左—W10;右—7-5。
Fig. 6. Assay of antifungal compounds produced by strain 7-5. A, Proteinase; B, Siderophore; C, HCN; Left, W10; Right, 7-5.
[1] | Pan X B, Zou H J, Chen Z X, Lu J F, Yu H X, Li H T, Wang Z B, Pan X Y, Rush MC, Zhu L H.Tagging major quantitative trait loci for sheath blight resistance in a rice variety Jasmine 85.Chin Sci Bull, 1999, 44(19): 1783-1789. |
[2] | 杨媚, 杨迎青, 李明海, 舒灿伟, 周而勋. 井冈霉素对水稻纹枯病菌生长发育的影响. 华中农业大学学报, 2012, 31(4): 313-317. |
Yang M, Yang Y Q, Li M H, Shu C W, Zhou E X.Effects of Jinggangmycin on the growth and development of rice sheath blight.JHuazhongAgricUniv, 2012, 31(4): 313-317 (in Chinese with English abstract) | |
[3] | 魏赛金, 杜亚楠, 李昆太, 涂国全, 潘晓华. 稠李链霉菌JAU4234代谢产物对水稻纹枯病菌的作用机制. 植物保护学报, 2012, 39(5): 411-417. |
Wei S J, Du Y N, Li K T, Tu G Q, Pan X H.Effect of metabolin from Streptomyces padanus JAU4234 against Rhizoctoniasolani. J Plant Prot, 2012, 39(5): 411-417 (in Chinese with English abstract) | |
[4] | DuanGF, Zhang Z B, Zhang J P, Zhou Y J, Yu L Q, Yuan Q S. Evaluation of crude toxin and metabolite produced by Helminthosporiumgramineum Rabenh for the control of rice sheath blight in paddy fields.Crop Prot, 2007, 26: 1036-1041. |
[5] | 谢宗华, 高健, 王金宇, 彭喜旭, 唐新科, 王海华. 一株水稻纹枯菌拮抗细菌的分离与鉴定. 微生物学通报, 2012, 39(4): 477-485. |
Xie Z H, Gao J, Wang J Y, Peng X X, Tang X K, Wang H H.Isolation and identification of an antagonistic bacterium against Rhizoctoniasolani , the causing agent of rice sheath blight.Microbiol China, 2012, 39(4): 477-485(in Chinese with English abstract) | |
[6] | 陈刘军, 俞仪阳, 王超, 柯红娇, 刘红霞, 郭坚华. 蜡质芽胞杆菌AR156防治水稻纹枯病机理初探. 中国生物防治学报, 2014, 30(1): 107-112. |
Chen L J, Yu Y Y, Wang C, Ke H J, Liu H X, Guo J H.Preliminary research of mechanisms underlying Bacillus cereus AR156-mediated resistance to Rhizoctoniasolani in rice. Chin J Biol Control, 2014, 30(1): 107-112 (in Chinese with English abstract) | |
[7] | Singh U B, Malviya D, Wasiullah, Singh S, Pradhan J K, Singh B P, Roy M, Imram M, Pathak N, Baisyal B M, Rai J P, Sarma B K, Singh R K, Sharma P K, Kaur S D, Manna M C, Sharma S K, Sharma A K. Bio-protective microbial agents from rhizosphere eco-systems trigger plant defense responses provide protection against sheath blight disease in rice (Oryza sativa L.).Microbiol Res, 2016, 192: 300-312. |
[8] | 陈思宇, 陈志宜,张荣胜. 水稻纹枯病菌拮抗细菌的筛选及鉴定. 植物保护学报, 2013, 40(3): 211-218. |
Chen S Y, Chen Z Y, Zhang R S.Screening and evaluation of antagonistic bacteria against Rhizoctoniasolani. J Plant Prot, 2013, 40(3): 211-218(in Chinese with English abstract) | |
[9] | 严婉荣, 赵廷昌, 肖彤斌, 肖敏, 赵志祥, 陈绵才. 生防细菌在植物病害防治中的应用. 基因组学与应用生物学, 2013, 32(4): 533-539. |
Yan W R, Zhao T C, Xiao D B, Xiao M, Zhao Z X, Chen M C.Applications of biocontrol bacteria in plant disease control.GenomApplBiol, 2013, 32(4): 533-539 (in Chinese with English abstract) | |
[10] | 张力群, 张俊威. 假单胞菌产生的抗生素. 中国生物防治学报, 2015, 31(5): 750-756. |
Zhang L Q, Zhang J W.Antibiotics produced by Pseudomonasspp. Chin J Biol Control, 2015, 31(5): 750-756(in Chinese with English abstract) | |
[11] | Yu Y Y, Jiang C H, Wang C, Chen L J, Li H Y, Xu Q, Guo J H.An improved strategy for stable biocontrol agents selecting to control rice sheath blight caused by Rhizoctoniasolani. Microbiol Res, 2017, 203: 1-9. |
[12] | 东秀珠, 蔡妙英. 常见细菌系统鉴定手册. 北京:科学出版社, 2001:166-169. |
[13] | 张清霞, 李世俊, 徐敬友, 纪兆林, 陈夕军, 童蕴慧. 中华根瘤菌L03几丁质酶纯化及其酶学性质研究. 中国生物防治学报, 2011, 27(2): 241-245. |
Zhang Q X, Li S J, Xu J Y, Ji Z L, Chen X J, Tong Y H.Purification and characterization of chitinase produced by Sinorhizobium sp. Strain L03.Chin J Biol Control, 2011, 27(2): 241-245.(in Chinese with English abstract) | |
[14] | Reimmann C, Beyeler M, Latifi A, Winteler H, Foglino M, Lazdunski A, Haas D.The global activator GacA of Pseudomonas aeruginosa PAO positively controls the production of the autoinducer N-butyryl-homoserine lactone and the formation of the virulence factors pyocyanin, cyanide and lipase.Mol Microbiol, 1997, 24(2): 309-319. |
[15] | 侯进慧, 刘彤, 李同祥.产纤维素酶菌株Pantoea ananatis P5的筛选鉴定和活性研究. 徐州工程学院学报:自然科学版. 2013, 28(4): 80-84. |
Hou J H, Liu D, Li T Y.Screening, identification and activity analysis of a cellulase producing strain Pantoea ananatis P5.J Xuzhou Inst Technol: NatSciEd, 2013, 28(4): 80-84(in Chinese with English abstract) | |
[16] | Schwyn B, Neilands J B.Universal chemical assay for the detection and determination of siderophores.Anal Biochem, 1987, 160: 47-56. |
[17] | Liu H M, Dong D X, Peng H S, Zhang X, Xu Y.Genetic diversity of phenazine- and pyoluteorin-producing pseudomonads isolated from green pepper rhizosphere. Arch Microbiol , 2006, 185: 91-98. |
[18] | 陈夕军, 王玲, 左示敏, 王子斌, 陈宗祥, 张亚芳, 鲁国东, 周而勋, 郭泽建, 黄世文, 潘学彪. 水稻纹枯病寄主-病原物互作鉴别品种与菌株的筛选. 植物病理学报, 2009, 39(5): 514-520. |
Chen X J, Wang L, Zuo S M, Wang Z B, Chen Z X, Zhang Y F, Lu G D, Zhou E X, Guo Z J, Huang S W, Pan X B.Screening of varieties and isolates for identifying interaction between host and pathogen of rice Sheath blight.ActaPhytopathol Sin, 2009, 39(5): 514-520(in Chinese with English abstract) | |
[19] | Marchesi J R, Sato T, Weightman A J, Martin T A, Fry J C, Hiom S J, Dymock D, Wade W G.Design and evaluation of useful bacterium-specific PCR primers thatamplify genes coding for bacterial 16s rRNA.ApplEnviron Microbiol, 1998, 64(2): 759-799. |
[20] | Raaijmakers J M, Weller D M, Thomashow L S.Frequency of antibiotic-producing Pseudomonas spp. in natural environments.Appl Environ Microbiol, 1997, 63(3): 881-887. |
[21] | Mavrodi O V, Gardener B B M, Mavrodi D V, Bonsall RF, Weller D M, Thomashow LS. Genetic diversity of phlDfrom2,4-diacetylphloroglucinol-producingfluorescent pseudomonas spp.Phytopathology, 2001, 91: 35-43. |
[22] | 张望月, 高健, 张超, 张友明, 胡胜标, 李岚岚, 孙运军, 丁学知, 夏立秋. 五种假单胞菌的分离鉴定及其生物活性. 微生物学报, 2013, 53(9): 957-965. |
Zhang W Y, Gao J, Zhang C, Zhang Y M, Hu S B, Li L L, Sun Y J, Ding X Z, Xia L Q.Isolation, identification and characterization of five Pseudomonas strains.ActaMicrobiolSin, 2013, 53(9): 957-965(in Chinese with English abstract) | |
[23] | Hu W Q, Gao Q X, Hamada M S,Dawood D H, Zheng J, Chen Y, Ma Z.Potential of Pseudomonas chlororaphis subsp. aurantiacastrain Pcho10 as a biocontrol agent against Fusarium graminearum. Biol Con, 2014, 104(12): 1289-1297. |
[24] | Calderón C E, Vicente A D, Cazorla F M.Role of 2-hexyl, 5-propyl resorcinol production by Pseudomonas chlororaphis PCL1606 in the multitrophic interactions in the avocado rhizosphere during the biocontrol process.FemsMicrobiolEcol, 2014, 89(1): 20-31. |
[25] | Latour X, Delorme S, Mirleau P, Lemanceau P.Identification of traits implicated in the rhizosphere competence of fluorescent pseudomonads: description of a strategy based on population and model strain studies.Biom Life Sci, 2009,3: 285-296. |
[26] | Du X L, Li Y Q, Zhou W P, Zhou Q, Liu H M, Xu Y Q.Phenazine-1-carboxulic acid production in a chromosomally non-scar tripe-deleted mutant Pseudomonas aeruginosa using statistical experimental designs to optimize yield. ApplMicrobiolBiotechnol, 2013, 97: 7767-7778. |
[27] | Nagarajkumar M, Bhaskaran R, Velazhahan R.Involvement of secondary metabolites and extracellular lytic enzymes produced by Pseudomonas fluorescens in inhibition of Rhizoctonia solani, the rice sheath blight pathogen.Microbiol Res, 2004, 159: 73-81. |
[28] | Kwak Y, Han S, Thomashow L S, Rice J T, Paulitz T C, Kim D, Weller D M.Saccharomyces cerevisiae genome-wide mutant screen for sensitivity to 2,4-diacetylphloroglucinol, an antibiotic produced by Pseudomonas fluorescens. Appl EnvironMicrobiol, 2011, 77(5): 1770-1776. |
[29] | Briard B, Bomme P, LechnerB E, Mislin G, Lair V, Prevost M, Latge J, Haas H, Beauvais A.Pseudomonas aeruginosa manipulatesredox and iron homeostasis of itsmicrobiota partner Aspergillus fumigatus via phenazines. ScientRep, 2015, 5(2): 8220. |
[1] | 王炫栋, 余俊杰, 高润杰, 兰赫婷, 江樱姿, 齐文杰, 宋振, 蒋冬花. 一株兼具防病促生功能的沙阿霉素链霉菌Sz-11[J]. 中国水稻科学, 2023, 37(2): 200-212. |
[2] | 马静静, 潘妍妍, 杨孙玉悦, 王嘉琦, 蒋冬花. 硫藤黄链霉菌St-79对水稻白叶枯病的防效和促生作用[J]. 中国水稻科学, 2022, 36(6): 623-638. |
[3] | 朱名海, 彭丹丹, 舒灿伟, 周而勋. 海南南繁区水稻纹枯病菌的遗传多样性与致病力分化[J]. 中国水稻科学, 2019, 33(2): 176-185. |
[4] | 刘婷婷, 王婷, 胡林. 基于卷积神经网络的水稻纹枯病图像识别[J]. 中国水稻科学, 2019, 33(1): 90-94. |
[5] | 江绍锋, 王陈骄子, 舒灿伟, 周而勋. 水稻纹枯病菌RsPhm基因的克隆及其表达分析[J]. 中国水稻科学, 2018, 1(1): 111-118. |
[6] | 左示敏* ,张玉梅,薛芗,朱亚军,张亚芳,陈宗祥,陈夕军,潘学彪*. 水稻新种质YSBR1抗纹枯病机制的初步研究[J]. 中国水稻科学, 2014, 28(2): 132-140. |
[7] | 杨媚1,#,杨迎青1, 2,#,郑丽1,李明海1,周而勋1,*. 水稻纹枯病菌细胞壁降解酶组分分析、活性测定及其致病作用[J]. 中国水稻科学, 2012, 26(5): 599-605. |
[8] | 罗楚平1,3刘永锋1陈志谊1,3,*王晓宇1方先文2陈忠明2刘邮洲1聂亚锋1张荣胜1. 水稻纹枯病菌6磷酸葡萄糖胺合成酶基因的克隆、测序及表达分析[J]. 中国水稻科学, 2012, 26(2): 137-143. |
[9] | 邹成佳,唐芳,杨媚,贺晓霞,李献军,周而勋. 华南3省(区)水稻纹枯病菌的生物学性状与致病力分化研究[J]. 中国水稻科学, 2011, 25(2): 206-202 . |
[10] | 杨迎青,杨媚,李明海,李勇,贺晓霞,周而勋. 根癌农杆菌介导的水稻纹枯病菌转化系统的建立 [J]. 中国水稻科学, 2010, 24(6): 617-622 . |
[11] | 王玲,黄雯雯,黄世文,刘连盟,刘恩勇, . 皖鄂地区水稻纹枯病菌致病力分化研究[J]. 中国水稻科学, 2010, 24(6): 623-629 . |
[12] | 陈涛,张震,柴荣耀,王教瑜,毛雪琴,邱海萍,杜新法,姜华,王立安. 浙江省水稻纹枯病菌的遗传分化与致病力研究[J]. 中国水稻科学, 2010, 24(1): 67-72 . |
[13] | 耿锐梅,傅扬,张文明,张建萍,余柳青,. 麦根腐平脐蠕孢和薏苡平脐蠕孢防治稻田稗草的生物活性和安全性[J]. 中国水稻科学, 2008, 22(3): 307-312 . |
[14] | 万树青,刘祥发, 冯国忠,潘大建. 几种野生稻甲醇提取物对害虫的行为干扰及对酯酶同工酶的影响[J]. 中国水稻科学, 2006, 20(3): 340-342 . |
[15] | 段桂芳,张建萍,周勇军,余柳青,袁勤生,. 禾长蠕孢菌及其代谢产物Ophiobolin A防治水稻纹枯病[J]. 中国水稻科学, 2006, 20(3): 337-339 . |
阅读次数 | ||||||
全文 |
|
|||||
摘要 |
|
|||||