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Although these model plants are adopted for the ease with which the phenotype can be easily scored, in most cases, the results can be extrapolated to rice.
But these model plants are glycophytes and naturally lack the ability to adapt and survive in a saline environment, so they are not ideally suited for the dissection of salt stress related genes.
The molecular mechanisms underlying the adaptation to metals in herbaceous model plants are well studied.
By gene annotations approximately, 1% of the total genes in Arabidopsis thaliana and other model plants are found to be cytochrome P450s.
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The SSR size for model plants was similar.
Applications of this new hydroponic culture system for model plants were analyzed in this study.
However the targeting ability of these proteins across the different model plants is not the same.
Only four reports of individual BD PROs in model plants were published in the past 10 years.
Identification of Aux/IAA and ARF gene families from distinct model plants is a necessary step in formulating better hypotheses related to physiological and developmental processes.
The percentage of sequences from our dataset showing homology (1e-5) with proteomes of five model plants is reported in Table 2.
The obvious advantage of wild soybean over other extremophile model plants is that it can be directly compared with soybean cultivar to generate useful information for elucidation of plant stress tolerance and adaptation.
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CEO of Professional Science Editing for Scientists @ prosciediting.com