Low plant density can reduce sunflower premature ripening caused by Phoma macdonaldii
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Seassau, C.
[1
,4
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Dechamp-Guillaume, G.
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Univ Toulouse, INPT ENSAT, UMR AGIR 1248, F-31320 Castanet Tolosan, France
INRA, UMR AGIR 1248, F-31320 Castanet Tolosan, FranceUniv Toulouse, INPT El Purpan, F-31076 Toulouse, France
Dechamp-Guillaume, G.
[2
,4
]
Mestries, E.
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CETIOM, ENSAT, F-31320 Castanet Tolosan, FranceUniv Toulouse, INPT El Purpan, F-31076 Toulouse, France
Mestries, E.
[3
]
Debaeke, P.
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INRA, UMR AGIR 1248, F-31320 Castanet Tolosan, France
Univ Toulouse, INPT, UMR AGIR, F-31029 Toulouse, FranceUniv Toulouse, INPT El Purpan, F-31076 Toulouse, France
Debaeke, P.
[4
,5
]
机构:
[1] Univ Toulouse, INPT El Purpan, F-31076 Toulouse, France
[2] Univ Toulouse, INPT ENSAT, UMR AGIR 1248, F-31320 Castanet Tolosan, France
[3] CETIOM, ENSAT, F-31320 Castanet Tolosan, France
[4] INRA, UMR AGIR 1248, F-31320 Castanet Tolosan, France
[5] Univ Toulouse, INPT, UMR AGIR, F-31029 Toulouse, France
In France, premature ripening (PR) is a widespread damage of a fungal disease of sunflower caused by Phoma macdonaldii. Previous results indicated that girdling canker at the stem base, caused by P. macdonaldii, was its primary cause. Previous studies have reported the influence of nitrogen and water supply on the incidence and severity of PR but an additional study was required to analyze the effect of plant density on the level of attack for a more comprehensive cultural control of PR. In a 2-year field study (2008 and 2009) in Toulouse (France), a susceptible cultivar (cv. Heliasol) artificially inoculated at star bud stage with P. macdonaldii was grown at three plant densities (4, 6.5 and 9 plants m(-2)) factorially combined with three N fertilization rates (0, 50/75 and 150 kg N ha(-1)) and two water regimes (irrigated and rainfed). P. macdonaldii symptoms were scored weekly to calculate the area under disease progress curve (AUDPC) and percentage of PR plants. Microclimatic conditions were monitored using thermo-hygrometers within the crop. The fraction of photosynthetically active radiation intercepted by the canopy (fPARi) and leaf area index (LAI) were measured at anthesis. Plant water status during the disease progression was characterized by crop simulation (SUNFLO) and N status at anthesis was assessed from shoot N content (Nm) analysis and N Nutrition Index (NNI) calculation. Increasing plant density resulted in a greater proportion of PR plants, and this proportion increased further when N was applied at 150 kg ha(-1), the highest rate, and the crop was not irrigated. Despite differing canopy development, differences in microclimatic conditions between density levels were too small to explain the PR differences. However plant N concentration and diameter at stem base were closely related to PR incidence. Thin plants (grown at high density) with non-limiting N supply were the most susceptible to premature ripening. This study opens new avenues for the control of PR through crop management and emphasizes the key role of plant morphology in the development of the disease. Stem base diameter is a morphological trait that could be manipulated through crop management (plant density, N fertilization) and probably breeding in the future when developing integrated disease management systems in sunflower. (c) 2012 Elsevier B.V. All rights reserved.
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Univ Calif San Diego, Scripps Inst Oceanog, San Diego, CA 92093 USA
Colorado State Univ, Dept Environm & Radiol Hlth Sci, Ft Collins, CO 80523 USAUniv Calif San Diego, Scripps Inst Oceanog, San Diego, CA 92093 USA
Garber, Michael D.
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Benmarhnia, Tarik
Zhou, Weiqi
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Chinese Acad Sci, Res Ctr Ecoenvironm Sci, State Key Lab Urban & Reg Ecol, Beijing 100085, Peoples R China
Chinese Acad Sci, Res Ctr Ecoenvironm Sci, Beijing Urban Ecosyst Res Stn, Beijing 100085, Peoples R China
Univ Chinese Acad Sci, Beijing 100049, Peoples R ChinaUniv Calif San Diego, Scripps Inst Oceanog, San Diego, CA 92093 USA
Zhou, Weiqi
Mudu, Pierpaolo
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WHO, Reg Off Europe, European Ctr Environm & Hlth, Pl Vereinten Nationen 1, D-53113 Bonn, Germany
WHO, 20 Ave Appia, Geneva, SwitzerlandUniv Calif San Diego, Scripps Inst Oceanog, San Diego, CA 92093 USA
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Univ Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USA
China Univ Petr, Unconvent Nat Gas Inst, 18 Fuxue Rd, Beijing 102249, Peoples R ChinaUniv Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USA
Liang, Tianbo
Achour, Sofiane H.
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Univ Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USAUniv Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USA
Achour, Sofiane H.
Longoria, Rafael A.
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Univ Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USAUniv Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USA
Longoria, Rafael A.
DiCarlo, David A.
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Univ Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USAUniv Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USA
DiCarlo, David A.
Nguyen, Quoc P.
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Univ Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USAUniv Texas Austin, Dept Petr & Geosyst Engn, 200 E Dean Keeton St,Stop C0300, Austin, TX 78712 USA