Applications of Trichoderma formulations in crop protection

来源 :浙江大学学报(农业与生命科学版) | 被引量 : 0次 | 上传用户:xiangwang111
下载到本地 , 更方便阅读
声明 : 本文档内容版权归属内容提供方 , 如果您对本文有版权争议 , 可与客服联系进行内容授权或下架
论文部分内容阅读
The choice of active Trichoderma strains is important in designing effective and safe biocontrol applications. Many species of Trichoderma have multiple strategies for fungal antagonism and indirect effects on plant health, such as growth promotion, systemic resistance induction and fertility improvements. Some strains are powerful antibiotic producers, and their suitability for use in biocontrol systems must be carefully assessed. However, many other active strains have no antibiotic capacity, and these are likely to be more useful in food production systems since they have not adverse effects on important groups of beneficial soil organisms. We have assessed the performance of selected naturally occurring Trichoderma strains (singly and in combination) and developed TUSAL, a mixture of Trichoderma harzianum and T. viride that has demonstrated to be effective against major pathogens in sugar beet and horticulture. TUSAL, has been bulked up and tested under field conditions, showing positive effects on precocity and root development, and increasing the crop production in field trials carried out in different pathosystems. The environmental impact of TUSAL strains on beneficial organisms in the environment were assessed before release, and molecular detection methods were developed to monitor the presence and performance of strains in the field. In addition, Trichoderma protein extracts with high glucanase and chitinase activities, have also been obtained from wild type strains and their effectiveness as biofungicides was tested in laboratory and field conditions, defining the concentration of protein necessary to produce fungicide effects. The genes coding for protein production were introduced into suitable organisms for large-scale production in the laboratory, never released to the environment. The effect of these novel biofungicide proteins was studied separately and synergistically with Trichoderma conidia, and with minimal doses of chemical fungicides. Suitable active Trichoderma strains are being registered in the EU by the company NBT. Both Trichoderma strains and proteins are included in formulations patented as biocontrol agents. The choice of active Trichoderma strains is important in designing effective and safe biocontrol applications. Many species of Trichoderma have multiple strategies for fungal antagonism and indirect effects on plant health, such as growth promotion, systemic resistance induction and fertility improvements. producers, and their suitability for use in biocontrol systems must be carefully assessed. However, many other active trouble have no antibiotic capacity, and these are likely to be more useful in food production systems since they have not adverse effects on important groups of beneficial soil organisms. We have assessed the performance of selected naturally occurring Trichoderma strains (singly and in combination) and developed TUSAL, a mixture of Trichoderma harzianum and T. viride that has demonstrated to be effective against major pathogens in sugar beet and horticulture. TUSAL , has been bulked up and tested under field condit ions, showing positive effects on precocity and root development, and increasing the crop production in field trials carried out in different pathosystems. The environmental impact of TUSAL strains on the environment were assessed before release, and molecular detection methods were developed to monitor the presence and performance of strains in the field. In addition, Trichoderma protein extracts with high glucanase and chitinase activities, have also been obtained from wild type strains and their effectiveness as biofungicides was tested in laboratory and field conditions, defining the concentration of protein The genes coding for protein production were introduced into suitable organisms for large-scale production in the laboratory, never released to the environment. The effect of these novel biofungicide proteins was investigated separately and synergistically with Trichoderma conidia, and with minimal doses of chem ical fSuitable active Trichoderma strains are being registered in the EU by the company NBT. Both Trichoderma strains and proteins are included in formulations patented as biocontrol agents.
其他文献
介绍了原子吸收法测定食品中微量锌时采用的盐酸萃取法样品预处理方法.通过正交试验得出了最佳萃取条件.回收率为96.25%,变异系数为0.65%.此法具有操作简便、结果可靠,速度快
北方联合出版传媒集团与天津出版集团、内蒙古新华发行集团股权合作协议签字仪式在京举行孙志军邬书林孙寿山乌兰张江陈浙闽等出席本刊讯11月5日,北方联合出版传媒(集团)股份
本文为会议纪要。会议名称:写作艺术与文学批评主办:《上海文化》杂志中国现代文学馆时间:2016.10.29—10.30李洱:我眼中的大作家,通常都既写小说,又做研究,或者说批评。比如
氰化苄,别名苯乙腈。分子式C_6H_5CH_2CN,分子量117.2,无色油状液体,有异香,能与醇、醚和丙酮等有机溶剂相混溶,不溶于水,熔点-23.8℃,沸点233.5℃,有毒。比重范围(r_4~(20)
等离子喷涂陶瓷涂层的层状结构杨元政1)张大同2)刘正义1)(华南理工大学1)机电工程系;2)分析测试中心510641,广州)关键词:等离子喷涂;陶瓷涂层;层状结构中图分类号:TG174.442等离子喷涂是一种表面强化工艺,它是利
随着市场经济的不断发展,中小企业面临着更多的发展机遇和更大的挑战.税务筹划作为财务管理中重要的内容,越来越受到企业的重视,税务筹划在给企业发展带来利益的同时,也带来
1927年南京国民政府为提倡国术,以发展国民体育,促进民族健康为宗旨,率先成立中央国术研究馆,1928年改称中央国术馆,馆长张之江,并令在全国建立国术馆系统,规定由各级行政长
糖皮质激素抵抗的机制已引起广泛关注。糖皮质激素受体(GR)异常是糖皮质激素抵抗的机制之一,而GR基因突变可引起糖皮质激素的结构和功能异常。近年来大量体外GR基因突变研究
目的:对2007年上海市非公立口腔医疗单位进行普查,分析了解2007年上海市非公立医疗单位口腔卫生人力的数量、结构、层次、分布、设备状况及口腔门诊工作情况,探讨存在的问题,
以尔康制药财务造假事件为例,对其财务造假原因进行分析,提出了审计人员职业道德建设路径,对于提高会计人员整体素养有一定的促进作用.