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34results about How to "Strong sporulation ability" patented technology

Beauveria bassiana strain having pathogenicity on cyclophragma undans and application thereof

ActiveCN105039184AStrong pathogenicityStrong secondary infection abilityBiocideFungiBiotechnologySpore
The invention discloses a beauveria bassiana strain having pathogenicity on cyclophragma undans and an application thereof. The beauveria bassiana strain is named as beauveria bassiana FJBb201202 and preserved in a common microorganism center of China committee for culture collection of microorganisms on March 19, 2015, and the preservation number is CGMCC No. 10641. The strain is high in growth rate, high in spore producing capacity and good in production property; meanwhile, the pathogenicity on the cyclophragma undans is high, the larva death rate reaches 100 percent 15 days after spore suspension with the concentration 107 spores / mL is inoculated into third instar larvae of the cyclophragma undans, and LT50 (the median lethal time) is 5.83. A fungal preparation produced by the strain has the good control effect on the cyclophragma undans and can effectively decrease the forest pest density of the cyclophragma undans; the strain is a biocontrol strain which has the application value on controlling of the cyclophragma undans and has the positive significance for reducing the harm of the cyclophragma undans.
Owner:FUJIAN ACAD OF FORESTRY

Metarhizium flavoviride bacterial strain and application thereof

The invention provides a metarhizium flavoviride bacterial strain (Metarhizium flavoviride.minus) CQMf1072 with the preservation number of CGMCCNO.4717 and the ITS1-5.8S-ITS2 sequence of SEQ ID NO.1. The metarhizium flavoviride bacterial strain CQMf1072 which is directly separated and screened from naturally infected rice planthopper has strong sporulation capability, and the sporulation rate can be up to 2.5%; the metarhizium flavoviride bacterial strain has good production trait and is rapid to grow; meanwhile, the metarhizium flavoviride bacterial strain has high insecticidal activity on the rice planthopper and has a good insecticidal effect; the LT50 (lethal time) and LT90 (lethal time) of the larva of the rice planthopper are respectively 5.8 days and 8.7 days. By using an insecticidal fungal preparation which is manufactured by utilizing the bacterial strain, the population quantity of the rice planthopper is effectively controlled.
Owner:CHONGQING UNIV

Beauveria bassiana, use thereof in preventing and treating tea tree leaf-eating beetles and fungus agent

The invention belongs to the technical field of biological prevention and control of agriculture and forestry pests, and particularly relates to beauveria bassiana, use thereof in preventing and treating tea tree leaf-eating beetles and a fungus agent. The beauveria bassiana is named as FJBb1338 and has the preservation number of CGMCC No.20253. The invention provides the use of the beauveria bassiana in preventing and treating the tea tree leaf-eating beetles. The invention further provides thefungus agent for preventing and treating the tea tree leaf-eating beetles. Beneficial effects are as follows: the beauveria bassiana FJBb1338 has a high growth speed and a strong sporulation capacity and the fungus agent of the beauveria bassiana can be remarkably reduce the number of the leaf-eating beetles in a tea garden. Meanwhile, the strain can be stored in the tea garden for a long time, has high secondary infection capacity and is suitable for biological prevention and treatment of the leaf-eating beetles in the tea garden.
Owner:TEA RES INST OF FUJIAN ACADEMY OF AGRI SCI

Novel Aspergillus niger strain and application thereof

The invention provides a novel Aspergillus niger strain QY-002 capable of simultaneously secreting amylase and glucoamylase. The novel Aspergillus niger strain QY-002 has an accession number of CGMCC No. 10650 and is preserved on April 24, 2015. In the conventional fermentation industry, amylase and glucoamylase are separately produced by using different processes. In the conventional sugar industry, liquefaction and saccharification of starch are carried out in two steps under different temperature and pH value conditions and aided by amylase and glucoamylase respectively. Enzyme liquid obtained after fermentation of the novel Aspergillus niger strain has the activity of both amylase and glucoamylase and produces synergism at a same reaction temperature and a same pH value condition, so high-efficiency catalysis is realized in complete hydrolysis of a substrate, i.e., starch, into glucose. Thus, a process of preparing sugar from starch is greatly simplified; reaction time is shortened; product quality is improved; energy consumption is reduced; production cost is lowered; and the novel Aspergillus niger strain has potential and wide application value and is of epoch-making significance to development of the industry of preparation of sugar from starch in China.
Owner:烟台启元微生物技术研究院有限公司
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