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Data from: The effectiveness and costs of pathogen resistance strategies in a perennial plant
- 负责人:
- DOI:
- doi:10.5061/dryad.3p35d
- 摘要:
- . We detected costs in plant performance for qualitative and quantitative resistance compared to susceptible plants in absence of the pathogen. The costs
Data from: Allopolyploidy and the evolution of plant virus resistance
- 负责人:
- DOI:
- doi:10.5061/dryad.3543v
- 摘要:
- s: Depending on the host-virus combination, plants displayed immunity, susceptibility or intermediate levels of resistance. Synthetic allopolyploids sh
Data from: Phage resistance evolution in vitro is not reflective of in vivo outcome in a plant-bacteria-phage system
- 负责人:
- DOI:
- doi:10.5061/dryad.v3r5d21
- 摘要:
- environments (high-nutrient media and the tomato leaf apoplast), we demonstrate that de novo evolution of resistance is negligible in planta despite high levels
inable resistance breeding in plants
- 负责人:
- DOI:
- doi:10.5061/dryad.s4n76
- 摘要:
- ) pathosystem, we aimed at identifying plant genetic factors directly affecting the frequency of virus adaptation to the major resistance gene pvr23
Data from: Virus adaptation to quantitative plant resistance: erosion or breakdown?
- 负责人:
- DOI:
- doi:10.5061/dryad.t3cd2
- 摘要:
- qualitative and monogenic resistances. However, the ability of pathogens to adapt to quantitative polygenic plant resistances and the consequences of thes
Data from: Analysis of cytochrome P450 contribution to evolved plant toxin resistance in Drosophila sechellia
- 负责人:
- DOI:
- doi:10.5061/dryad.66767
- 摘要:
- d by the fruit of its preferred host plant Morinda citrifolia. The genetic basis of adult toxin resistance is the result of evolution at five loci ac
Data from: Hosts do not simply outsource pathogen resistance to protective symbionts
- 负责人:
- DOI:
- doi:10.5061/dryad.v31k428
- 摘要:
- . Within a biotype there was no difference in intrinsic resistance between clones that did and did not carry a protective symbiont. The host plant on which an aphid
Data from: Plant resistance reduces the strength of consumptive and non-consumptive effects of predators on aphids
- 负责人:
- 关键词:
- bottom-up and top-down effects herbivory non-lethal predator effects plant defenses plant quality predation risk predator-prey interactions trait-mediated effects
- DOI:
- doi:10.5061/dryad.1hj8f
- 摘要:
- d mandibles impaired to prevent killing. 4. Plant resistance reduced predation rate (consumptive effect) on high resistance plants. As a consequence, predators
Data from: Identification of resistance to bacterial leaf blight in the U.S. Department of Agriculture Collard Collection
- 负责人:
- Wechter, W. Patrick
- DOI:
- doi:10.5061/dryad.4851qq0
- 摘要:
- of disease control is host plant resistance, but thus far resistant germplasm has only been identified in Brassica juncea L. (mustard greens). We report the fir
Data from: Host resistance and pathogen aggressiveness are key determinants of coinfection in the wild
- 负责人:
- DOI:
- doi:10.5061/dryad.5h9s7
- 摘要:
- genetic variation in host resistance and pathogen infectivity to play a key role in how coinfections are formed. The limited number of studies available have demonstrated coinfection