期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
探索采用马铃薯全基质培养真菌在实验室中的应用 被引量:1
1
作者 易筑刚 陈春旭 +2 位作者 易金 蔡静云 王遵 《贵州林业科技》 2022年第1期31-34,共4页
不同微生物特别是真菌类微生物所需养分大部分有所差异。目前,作为实验室基础培养基Potato Dextrose Agar(Medium)(PDA)的应用,其熬制工作繁琐给实验室工作带来极大不便。本文进行了马铃薯全营养基质培养真菌的实验,结果表明:(1)比传统... 不同微生物特别是真菌类微生物所需养分大部分有所差异。目前,作为实验室基础培养基Potato Dextrose Agar(Medium)(PDA)的应用,其熬制工作繁琐给实验室工作带来极大不便。本文进行了马铃薯全营养基质培养真菌的实验,结果表明:(1)比传统PDA培养出的菌丝体健壮、浓密、旺盛;(2)对不同条件下培养菌丝生物量的测定提供便捷方法;(3)极大降低了实验室工作强度。 展开更多
关键词 马铃薯全营养基质 基础培养基PDA 真菌类微生物 实验室工作强度
下载PDF
Frequent Applications of Organic Matter to Agricultural Soil Increase Fungistasis
2
作者 Giuliano BONANOMI Salvatore A. GAGLIONE +4 位作者 Gaspare CESARANO Tushar C. SARKER Marica PASCALE Felice SCALA Astolfo ZOINA 《Pedosphere》 SCIE CAS CSCD 2017年第1期86-95,共10页
Soil-borne plant pathogens are among the most important limiting factors for the productivity of agro-ecosystems. Fungistasis is the natural capability of soils to inhibit the germination and growth of soil-borne fung... Soil-borne plant pathogens are among the most important limiting factors for the productivity of agro-ecosystems. Fungistasis is the natural capability of soils to inhibit the germination and growth of soil-borne fungi in the presence of optimal abiotic conditions. The objective of this study was to assess the effects of different soil managements, in terms of soil amendment types and frequency of application, on fungistasis. For this purpose, a microcosm experiment was performed by conditioning a soil with frequent applications of organic matter with contrasting biochemical quality (i. e., glucose, alfalfa straw and wheat straw). Thereafter, the fungistasis response was assessed on four fungi (Aspergillus niger, Botrytis cinerea, Pyrenoehaeta lycopersici and Trichoderma harzianum). Conditioned soils were characterized by measuring microbial activity (soil respiration) and functional diversity using the BIOLOG EcoPlatesTM method. Results showed that irrespective of the fungal species and amendment types, frequent applications of organic matter reduced fungistasis relief and shortened the time required for fungistasis restoration. The frequent addition of easily decomposable organic compounds enhanced soil respiration and its specific catabolic capabilities. This study demonstrated that frequent applications of organic matter affected soil fungistasis likely as a result of higher microbial activity and functional diversity. 展开更多
关键词 biological control disease suppression microbial activity microbial functional diversity organic C soil-borne pathogens
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部