|Table of Contents|

Effect of Different Microbial Agents and Biological Organic Fertilizer on  Root Growth and Root Rot Underground of Astragalus(PDF)

《北方园艺》[ISSN:1001-0009/CN:23-1247/S]

Issue:
2016年01
Page:
140-143
Research Field:
Publishing date:

Info

Title:
Effect of Different Microbial Agents and Biological Organic Fertilizer on  Root Growth and Root Rot Underground of Astragalus
Author(s):
ZHANG Huihui1SHI Juan1WANG Jun2XIN Xuefa2
Astragalus mongholicus; microbial agents;biological organic fertilizer;root rot
Keywords:
Astragalus mongholicus microbial agentsbiological organic fertilizerroot rot
PACS:
-
DOI:
10.11937/bfyy.201601037
Abstract:
Taking annual Astragalus mongholicus seedlings as materials,field division of research was adopted,the effect of three types of microbial agents (Baitai,Bacillus US,B6) and three kinds of astragalus biological organic fertilizer (Kocel,Saiwaichun,Sandu Kazakhstan)on growth and prevention of astragalus root rot of Astragalus mongholicus were studied.The results showed that the Baitai medium concentration in the treatment group on the effect of Astragalus mongholicus root length and root volume effect was the best,B6 medium concentrations in the treatment group of Astragalus mongholicus membranaceus on average effect was most pronounced in the effect of fresh weight,Sandu Kazakhstan medium concentration in the treatment group of Astragalus mongholicus root length,root volume and average fresh weight effect was the most obvious;in the six test bacteria agent (fat) on the control effect of Astragalus mongholicus root rot in the control effect,Baitai high concentration treatment group was 21.7%,B6 low concentration treatment group was 17.4%,B6 middle concentration treatment group was 15.9%.

References:

 

[1]秦梦,田伟,张益铭,.不同施肥配比对黄芪产量和多糖含量的影响[J].安徽农业大学学报,2015(1):148-151.

[2]崔云玲,郭天文,郭永杰,.黄芪高产平衡施肥效应研究[J].安徽农业科学,2009(17):7991-79927998.

[3]王立刚,李维炯,邱建军,.生物有机肥对作物生长、土壤肥力及产量的效应研究[J].土壤肥料,2004(5):12-16.

[4]姜竹,李晶.中药材土传病害生物防治研究进展[J].现代农业科技,2009(24):152-153156.

[5]陈宏宇,毛正云.黄芪根腐病发病因素调查初报[J].农业科技与信息,2014(21):13-14.

[6]罗光宏,陈叶,王振,.黄芪根腐病发生危害与防治[J].植物保护,2005(4):75-76.

[7]南换杰,秦雪梅,武滨,.黄芪根腐病研究概况[J].山西中医学院学报,2009(1):67-70.

[8]李建军,李继平,周天旺,.黄芪根部病虫害药剂防治技术研究[J].中国植保导刊,2014(2):62-65.

[9]范钱,简恒.几种杀菌剂对黄芪根腐病病原菌的毒力测定[J].中国植保导刊,2009(6):41-43.

[10]陈中明,张鼎新.防治黄芪根腐病农药筛选试验[J].甘肃农业,2004(12):97.

[11]何晨,史娟,沈海,.不同药剂处理对黄芪根腐病的防治效果[J].草业科学,2013(12):1948-1952.

[12]曾庆秋,严铸云,汪杨丽,.微肥处理对连作川明参中总多糖含量的影响[J].中国药业,2007(21):8-9.

[13]张秀玥,李明荣,张启东,.不同微肥施用量对白芨产量及品质的影响[J].贵州农业科学,2009(2):31-32.

[14]耿士均,王波,刘刊,.专用微生物肥对不同连作障碍土壤根际微生物区系的影响[J].江苏农业学报,2012(4):758-764.

[15]李自刚,王新民,刘太宇,.复合微生物菌肥对怀地黄连作障碍修复机制研究[J].湖南农业科学,2008(5):62-65.

[16]刘永录,李自刚.复合微生物制剂对怀山药连作障碍的修复机制研究[J].河南农业科学,2010(11):90-93.

[17]乔卿梅,程茂高,王新民.根际微生物在克服药用植物连作障碍中的潜力[J].土壤通报,2009(4):957-961.

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Last Update: 2016-03-02