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botrytis elliptica
相关语句
  灰霉病菌
     Botrytis elliptica (Berk.) Cooke. infects the leaves, stems and flowers of lily plants.
     百合灰霉病菌[Botrytiseliptica(Berk.)Cooke.]能危害百合叶、茎和花。
短句来源
  “botrytis elliptica”译为未确定词的双语例句
     A Study on the Biological Properties of Botrytis elliptica Causing Lily Gray Mould
     百合灰霉病病菌生物学特性研究
短句来源
     The morphological characteristics of the new species,and the morphological comparisions of the new species with the allied species Botrytis elliptica (Berk.)
     新种。 并报道了其形态特征及其与椭圆葡萄孢 [Botrytis elliptica(Berk.)
短句来源
     The dominant pathogen causing lily blight was identified as Botrytis elliptica,with isolation rate as(70.5%.)
     引起甘肃省百合叶枯病的主要致病菌为椭圆葡萄孢[Botrytis elliptica(Berk.) Cooker],分离率为70.5%;
短句来源
     Primary study on inhibition activity of actinomycetes seconday metabolites to Botrytis elliptica(Berk.) Cooke.
     放线菌次生代谢产物对百合灰霉病菌的抑菌活性筛选
短句来源
  相似匹配句对
     elliptica Z.
     elliptica Z.
短句来源
     elliptica,D.
     elliptica、马来鱼藤D.
短句来源
     , Botrytis spp. .
     和葡萄孢属(Botrytis spp.)
短句来源
     ,Botrytis spp.
     、葡萄孢菌(Botrytis spp.)
短句来源
     A Study on the Biological Properties of Botrytis elliptica Causing Lily Gray Mould
     百合灰霉病病菌生物学特性研究
短句来源
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  botrytis elliptica
AFLP analysis of genetic diversity in populations of Botrytis elliptica and Botrytis tulipae from the Netherlands
      
Light, scanning electron and fluorescent microscopy were used to observe the infection process of Botrytis elliptica on leaves of oriental lily (cv.
      
Light and Scanning Electron Microscopy Studies on the Infection of Oriental Lily Leaves By Botrytis Elliptica
      
Comparative Analysis of the Role of Substrate Specificity in Biological Control of Botrytis Elliptica in Lily and B.
      
The effectiveness of film-forming polyelectrolytes for the control of lily leaf blight caused by Botrytis elliptica was evaluated using laboratory a leaf disk assay, greenhouse tests and field trials.
      
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The pathogenic fungus inducing Sclerotinia root rot of Fritillaria pallidiflora Schrenk.,distributed in Tai-bai Hsien,Province Shanxi,was identified in this paper as a new taxon,i.e.Botryotinla fritillarii-pallidiflori Q.T.Chen et J.L.Li,sp.nov.The morphological characteristics of the new species,and the morphological comparisions of the new species with the allied species Botrytis elliptica (Berk.) Cooke and Botryotinia calthae Hennebert et Elliott,are given.

在陕西省太白县采集到伊贝母(Fritillaria pallidiflora Schrenk.)的菌核病致病真菌,伊贝母葡萄孢盘 Botryotinia fritillarii-pallidiflori Q.T.Chen et J.L.Li sp.nov.新种。并报道了其形态特征及其与椭圆葡萄孢 [Botrytis elliptica(Berk.)Cooke]和驴蹄草葡萄孢盘(Botryotinia calthae Hennebert et Elliott)的区别。

Botrytis elliptica (Berk.) Cooke. infects the leaves, stems and flowers of lily plants. Temperatures for the germination of conidia are 5~30℃, and the optimum temperatures are 15~20℃. The most suitable temperature for infection is found to be at 15~20℃ under high moisture condition. The incubation period for B. elliptica infection is 20~24 hours at 15~20℃ and RH 90%~100%, wheareas it will be 7 days under 8℃ and RH 90%.

百合灰霉病菌[Botrytiseliptica(Berk.)Cooke.]能危害百合叶、茎和花。病菌孢子萌发温度范围5~30℃,最适温度15~20℃。致病最适温度为15~20℃,还需水湿条件。发病潜育期在15~20℃、RH90%~100%时为20~24h,8℃、RH90%以下时长达7d。

Antagonistic bacteria Bacillus pumilus and B. subtilis were tested for their inhibition against plant pathogens Magnaporthe grisea, Bipolaria maydis, Botrytis elliptica, Fusarium oxysporum f. sp. batatas, Phomopsis asparagi and Ralstonia solanacearum. The results showed that the inhibitive rate against conidial germination of M. grisea reached 62.6% for fiftyfold dilution of cultural solution of B. pumilus, and 55.3% for one hundredfold dilution. But, its inhibitive effect on appressorium...

Antagonistic bacteria Bacillus pumilus and B. subtilis were tested for their inhibition against plant pathogens Magnaporthe grisea, Bipolaria maydis, Botrytis elliptica, Fusarium oxysporum f. sp. batatas, Phomopsis asparagi and Ralstonia solanacearum. The results showed that the inhibitive rate against conidial germination of M. grisea reached 62.6% for fiftyfold dilution of cultural solution of B. pumilus, and 55.3% for one hundredfold dilution. But, its inhibitive effect on appressorium formation was not evident. In addition, B. pumilus  had markedly inhibitive effect on colonial growth of M. grisea. The diluted cultural solutions of B. pumilus  and B. subtilis had not markedly inhibitive effect on conidial germination of B. maydis, B. elliptica, F. oxysporum f. sp. Batatas and P. asparagi. B. subtilis could evidently inhibit colonial formation of R. solanacearum.

分别就拮抗细菌生防菌2[短小芽胞杆菌(Bacilluspumilus)]和生防菌1[枯草芽孢杆菌(Bacillussubtilis)]对稻瘟病菌(Magnaporthegrisea)、芦笋茎枯病菌(Phomopsisiasparagi)、尖镰刀菌(Fusariumoxysporum)、玉米小斑菌(Bipolariamaydis)、百合灰霉病菌(Botrytiselliptica)和青枯病菌(Ralstoniasolanacearum)6种植物病原菌的抑制作用进行了测定,结果发现,生防菌2发酵液50倍稀释液对稻瘟病菌分生孢子萌发的抑制率为62 6%,100倍稀释液则为55 3%,对分生孢子附着胞形成的抑制作用不明显;将稻瘟病菌和生防菌2发酵液同时接入燕麦培养基中,生防菌2对稻瘟病菌菌落的生长有明显的抑制作用;生防菌2对芦笋茎枯病菌、尖镰刀菌、玉米小斑菌和百合灰霉病菌分生孢子萌发的抑制作用不明显;生防菌1对青枯病菌生长有明显的抑制作用,而生防菌2对青枯菌抑制作用不明显。

 
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