|本期目录/Table of Contents|

[1]黄依蓝,岳倩倩,倪爱新,等.宽阔水自然保护区3种类型土壤的真菌多样性[J].江苏农业科学,2016,44(05):458-460.
 Huang YiLan,et al.Fungi diversity in three types of soil in Kuankuoshui Nature Reserve[J].Jiangsu Agricultural Sciences,2016,44(05):458-460.
点击复制

宽阔水自然保护区3种类型土壤的真菌多样性(PDF)
分享到:

《江苏农业科学》[ISSN:1002-1302/CN:32-1214/S]

卷:
第44卷
期数:
2016年05期
页码:
458-460
栏目:
资源与环境
出版日期:
2016-05-25

文章信息/Info

Title:
Fungi diversity in three types of soil in Kuankuoshui Nature Reserve
作者:
黄依蓝 岳倩倩 倪爱新 周礼红
贵州大学生命科学院,贵州贵阳 550000
Author(s):
Huang YiLanet al
关键词:
宽阔水土壤真菌多样性
Keywords:
-
分类号:
S154.3
DOI:
-
文献标志码:
A
摘要:
利用稀释平板法和基于ITS rDNA基因序列的分析方法对宽阔水自然保护区3种类型的土壤进行真菌的分离鉴定,共分离得到353株真菌,归为34个不同的属。对土壤真菌多样性进行评估,结果表明:紫色土真菌优势属为酵母菌属(Saccharomyces),黄棕壤真菌优势属为酵母菌属(Saccharomyces)和被孢霉属(Mortierella),黄壤真菌优势属为青霉属(Penicillium)和木霉属(Trichoderma)。土壤真菌Margalef丰富度指数(R)最高的是黄壤,最低的是黄棕壤;Shannon-Wiener多样性指数(H′)最高的是紫色土;Pielou均匀度指数(J)黄棕壤最高;Jaccard相似性指数(Cj)为0444 ~0.536,表明3种类型土壤的真菌多样性均具有一定差异。
Abstract:
-

参考文献/References:

[1]喻理飞,谢双喜,吴太伦. 宽阔水自然保护区综合科学考察集[M]. 贵阳:贵州科技出版社,2004.
[2]Jessica L G,Brendan J M B,Rachel J W. Microbial biogeography: from taxonomy to Traits[J]. Science,2008,320:1039-1041.
[3]Pagaling E,Wang H Z,Venables M,et al. Microbial biogeography of six salt lakes in Inner Mongolia,China,and a salt lake in Argentina[J]. Applied and Environmental Microbiology,2009,75(18):5750-5760.
[4]Finlay B J. Global dispersal of free-living microbial eukaryote species[J]. Science,2002,296(5570):1061-1063.
[5]周游. 九寨沟县自然保护区土壤真菌研究[D]. 雅安:四川农业大学,2010:1-45.
[6]张群,刘春阳,于晓丹,等. 辽河保护区土壤可培养真菌多样性分析[J]. 辽宁林业科技,2014(6):7-13.
[7]Leslie J F,Summerell B A,Bullock S. The Fusarium laboratory manual[M]. Oxford:Blackwell Publishing,2006:1-278.
[8]庞雄飞,尤民生. 昆虫群落生态学[M]. 北京:中国农业出版社,1996:77-103.
[9]王娜,吕国忠,孙晓东,等. 烟草根际土壤真菌多样性的研究[J]. 菌物学报,2012,31(6):827-836.
[10]张颖慧. 森林植被与土壤微生物关系研究进展[J]. 安徽农业科学,2014,42(30):10683-10684,10758.
[11]Kumar M R,Kumaran M D,Balashanmugam P. Production of cellulase enzyme by Trichoderma reesei Cefl9 and its application in the production of bio-ethanol[J]. Parkistan Journal of Biological Science,2014,17(5):735.
[12]Mutschlechner M,Illmer P,Wagner A O. Biological pre-treatment:enhancing biogas production using the highly cellulolytic fungus Trichoderma viride[J]. Waste Management,2015,43:98-107.
[13]Vadivelan G,Venkateswaran G. Production and enhancement of omega-3 fatty acid from Mortierella alpina CFR-GV15:its food and therapeutic application[J]. Bio Med Research International,2014:657414.
[14]Patil N P,Patil K P,Chaudhari B L,et al. Production,purification of exo-polygalacturonase from soil isolate Paecilomyces variotii NFCCI 1769 and its application[J]. Indian Journal of Microbiology,2012,52(2):240-246.
[15]Ment D,Iraki N,Gindin G,et al. Thermal limitations of Metarhizium anisopliae efficacy:selection for application on warm-blooded vertebrates[J]. Bio Control,2011,56(1):81-89.
[16]潘好芹,张天宇,黄悦华,等. 太白山土壤淡色丝孢真菌群落多样性及生态位[J]. 应用生态学报,2009,20(2):363-369.
[17]张俊忠,陈秀蓉,杨成德,等. 东祁连山高寒草地土壤可培养真菌多样性分析[J]. 草业学报,2010,19(2):124-132.
[18]Faust K,Raes J. Microbial interactions:from networks to models[J]. Nature Reviews Microbiology,2012,10(8):538-550.

相似文献/References:

[1]鲁海菊,张晓永,全舒舟,等.从93株土壤真菌中筛选抑制石榴干腐病菌的活性菌株[J].江苏农业科学,2013,41(07):108.
 Lu Haiju,et al.Screening of antifungal activity strains against pomegranate fruit rot pathogen from 93 strains of soil fungi[J].Jiangsu Agricultural Sciences,2013,41(05):108.
[2]丁玮,阳树英,刘洋.化肥减量配施生物炭对镉污染水稻土壤真菌群落的影响[J].江苏农业科学,2022,50(15):210.
 Ding Wei,et al.Effects of reduced chemical fertilizer and biochar on fungal communities in rice soil contaminated by cadmium[J].Jiangsu Agricultural Sciences,2022,50(05):210.

备注/Memo

备注/Memo:
收稿日期:2015-11-22
基金项目:国家科技基础性工作专项(编号:2014FY120100)。
作者简介:黄依蓝(1992—),女,硕士研究生,主要从事土壤真菌资源研究。E-mail:ylhuang77@163.com。
通信作者:周礼红,博士,副教授,主要从事微生物应用方向的研究。E-mail:lhzhou33@126.com。
更新日期/Last Update: 2016-05-25