マグナ・ルテ属、Magnaporthe属
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出典(authority):フリー百科事典『ウィキペディア(Wikipedia)』「2015/08/27 07:06:06」(JST)
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Magnaporthe |
Scientific classification |
Kingdom: |
Fungi |
Division: |
Ascomycota |
Class: |
Sordariomycetes |
Order: |
Magnaporthales |
Family: |
Magnaporthaceae |
Genus: |
Magnaporthe
R.A.Krause & R.K.Webster (1972)[1] |
Type species |
Magnaporthe salvinii
(Catt.) R.A.Krause & R.K.Webster (1972) |
Species |
M. grisea
M. oryzae
M. poae
M. rhizophila
M. salvinii
|
Magnaporthe is a genus of ascomycete fungi. Several of the species are cereal pathogens. There are five species in the widespread genus.[2]
References
- ^ Krause RA, Webster RK. (1972). "The morphology, taxonomy and sexuality of the rice stem rot fungus, Magnaporthe salvinii". Mycologia 64: 103–114. JSTOR 3758018.
- ^ Kirk PM, Cannon PF, Minter DW, Stalpers JA. (2008). Dictionary of the Fungi (10th ed.). Wallingford, UK: CAB International. p. 399. ISBN 9780851998268.
External links
Magnaporthe in Index Fungorum.
English Journal
- Small heat shock proteins, phylogeny in filamentous fungi and expression analyses in Aspergillus nidulans.
- Wu J1, Wang M2, Zhou L1, Yu D3.
- Gene.Gene.2016 Jan 10;575(2 Pt 3):675-9. doi: 10.1016/j.gene.2015.09.044. Epub 2015 Sep 25.
- Small heat shock proteins (sHSPs) have been characterized in organisms from all three domains of life and viruses and are involved in a wide range of biological functions. However, the evolution and function of sHSP in Aspergillus species are largely unknown. In the present work, sHSPs were identifi
- PMID 26403724
- Improvement of Basmati rice varieties for resistance to blast and bacterial blight diseases using marker assisted backcross breeding.
- Ellur RK1, Khanna A1, Yadav A1, Pathania S1, Rajashekara H2, Singh VK3, Gopala Krishnan S1, Bhowmick PK1, Nagarajan M4, Vinod KK4, Prakash G5, Mondal KK5, Singh NK6, Vinod Prabhu K1, Singh AK7.
- Plant science : an international journal of experimental plant biology.Plant Sci.2016 Jan;242:330-41. doi: 10.1016/j.plantsci.2015.08.020. Epub 2015 Sep 26.
- Marker assisted backcross breeding was employed to incorporate the blast resistance genes, Pi2 and Pi54 and bacterial blight (BB) resistance genes xa13 and Xa21 into the genetic background of Pusa Basmati 1121 (PB1121) and Pusa Basmati 6. Foreground selection for target gene(s) was followed by arduo
- PMID 26566849
- ZNF1 Encodes a Putative C2H2 Zinc-Finger Protein Essential for Appressorium Differentiation by the Rice Blast Fungus Magnaporthe oryzae.
- Yue X1, Que Y1, Xu L1, Deng S1, Peng Y2, Talbot NJ3, Wang Z1.
- Molecular plant-microbe interactions : MPMI.Mol Plant Microbe Interact.2015 Dec 4:MPMI09150201R. [Epub ahead of print]
- The rice blast fungus Magnaporthe oryzae forms specialized infection structures called appressoria which are essential for gaining entry to plant tissue. Here, we report the identification of a novel nonpathogenic T-DNA-tagged mutant XF696 of M. oryzae with a single insertion in the promoter of ZNF1
- PMID 26441322
Japanese Journal
- イネいもち病菌のマイコウイルスを用いた防除資材の開発 (特集 農作物生産におけるウイルスの有効利用)
- 浦山 俊一,森山 裕充
- JATAFFジャーナル = JATAFF journal : 農林水産技術 1(12), 19-23, 2013-12
- NAID 40019900062
- ハタケシメジ廃菌床のオートクレーブ水抽出液によるイネいもち病の発病抑制
- 荒瀬 榮,近藤 雄祐,PARADA JACO Roxana Yanira,尾谷 浩,上野 誠,木原 淳一
- 日本きのこ学会誌 : mushroom science and biotechnology 21(2), 79-83, 2013-07-31
- ハタケシメジ(Lyophyllum decastes)の廃菌床のオートクレーブ水抽出液(AWESMS)のイネいもち病に対する発病抑制効果を検討した.イネ品種コシヒカリに抽出液を前処理しておくと蒸留水やハタケシメジの未接種菌床抽出液(AWEMS)の前処理に比べて葉いもちの発生が著しく抑制された.発病の抑制効果は廃菌床抽出液の処理2日後から認められ,14日後まで持続した.AWESMSとAWEMSは共に …
- NAID 110009631311
- イネ科植物いもち病菌集団における宿主抵抗性遺伝子への適応戦略
Related Links
- Home > Data Magnaporthe grisea > Magnaporthe grisea Database Magnaporthe grisea Database Tools BLAST Search: Find similarities to other sequences Feature Search: Search and view annotated features on the sequence ...
- Project What's New? Recently updated site content Project Information Description and background information on the sequencing project Genome Sequence Magnaporthe grisea Release 5 genome sequence and annotation now ...
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