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8篇 您的检索式:作者名="Simier"
    题名 作者 年代 出处 被引量
1Isolation of mannose 6-phosphate reductase cDNA, changes in enzyme activity and mannitol content in broomrape (Orobanche ramosa)parasitic on tomato roots显示文摘Delavault P Simier P Thoiron S 2002Physiologia Plantarum2002,115,1:1
2Development of a high-throughput real-time quantitative PCR method to detect and quantify contaminating seeds of Phelipanche ramosa and Orobanche cumana in crop seed lots 显示文摘Dongo A Leflon M Simier P 2012Weed Research2012,52,1:1
3Characteristics of the mannitol pathway in a root hemiparasitic species, Thesium humile Vahl (Santalaceae) 显示文摘Simier P Renaudin S Fer A 1994J Plant Physiol1994,143,:1
4Physiological changes in a root hemiparasitic angiosperm,Thesium humile(Snatalaceae),before and after attachment to the host plant (Triticum vulgare)显示文摘Fer A Russo N Simier P 1994Plant Physiol1994,143,:1
5Physiological changes in a root hemiparasitic angiosperm, Thesiurn ihurnile (Santalaceae), before and after attachment to the host plant (Tritcum vulgore) 显示文摘Fer A Russo N Simier P 1994J Plant Physiol1994,143,:1
6Spatial and temporal struc-ture of fish assemblages in an “inverse estuary”,the Sine Saloumsystem (Senegal) 显示文摘Simier M Blanc L Aliaume C 2004Estuarine Coastal and Shelf Science2004,59,:1
7Ha-DEF1, a sunflower defensin, induces cell death in Orobanche parasitic plants显示文摘Axel Zélicourt Patricia Letousey Séverine Thoiron Claire Campion Philippe Simoneau Khalil Elmorjani Didier Marion Philippe Simier Philippe Delavault 2007Planta2007,,3:1
8A Phelipanche ramosa KAI2 protein perceives strigolactones and isothiocyanates enzymatically显示文摘Phelipanche ramosa is an obligate root-parasitic weed that threatens major crops in central Europe.In order to germinate,it must perceive various structurally divergent host-exuded signals,including isothiocyanates(ITCs)and strigolactones(SLs).However,the receptors involved are still uncharacterized.Here,we identify five putative SL receptors in P.ramosa and show that PrKAI2d3 is involved in the stimulation of seed germination.We demonstrate the high plasticity of PrKAI2d3,which allows it to interact with different chemicals,including ITCs.The SL perception mechanism of PrKAI2d3 is similar to that of endogenous SLs in non-parasitic plants.We provide evidence that PrKAI2d3 enzymatic activity confers hypersensitivity to SLs.Additionally,we demonstrate that methylbutenolide-OH binds PrKAI2d3 and stimulates P.ramosa germination with bioactivity comparable to that of ITCs.This study demonstrates that P.ramosa has extended its signal perception system during evolution,a fact that should be considered for the development of specific and efficient biocontrol methods.Alexandre de Saint Germain Anse Jacobs Guillaume Brun Jean-Bernard Pouvreau Lukas Braem David Cornu Guillaume Clavé Emmanuelle Baudu Vincent Steinmetz Vincent Servajean Susann Wicke Kris Gevaert Philippe Simier Sofie Goormachtig Philippe Delavault François-Didier Boyer 2021Plant Communications2021,2,5:0
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