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Regeneration methodology, plant part and solvent system significantly influenced the levels of various secondary metabolites like phenols, flavonoids, alkaloids and tannins.
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This design methodology of plant model is closed to material structure of the plant and associates real time plant evolutions to meaning full information.
By developing a hybrid mesh segmentation and analysis methodology for plant phenotyping, we have demonstrated that the automated temporal mesh-based analysis of the plant aerial part is feasible (from the temporal broad plant analysis to the evolution of individual organs).
The methodology for plant model identification in closed loop will be briefly surveyed and illustrated by experimental results.
In the design methodology, the plant is altered to achieve the best possible mechanical design and control solution.
Overall, the described methodology estimates plant phenotypic parameters with sufficient accuracy and reproducibility to be used as a surrogate for manual or destructive phenotypic analysis (Table 1).
Genetic mapping and QTL detection are powerful methodologies in plant improvement and breeding.
In this paper, we review available methodologies in plant foliar VOC research to provide a comprehensive resource for plant scientists with no background in physics or analytical sciences to move into the field of plant foliar VOC research and select the most appropriate analytical method and sampling approach.
A more constructive approach to establish methodologies for plant DNA taxonomy would be to find genetic markers that are most likely to achieve species monophyly of the group under study, because the probability of supporting species monophyly should vary across markers and lineages in response to the marker-specific coalescence time and lineage-specific life history traits.
General gene delivery methodologies in plants are first summarized, followed by extensive discussion on the application and scalability of each agroinfiltration method.
The authors provide a general overview of gene delivery methodologies in plants, followed by a detailed description of agroinfiltration, its applications and scalability, typical vectors used, and how it can be used in different Nicotiana and non- Nicotiana hosts.
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