Mostrando 141 - 160 Resultados de 1,285 Para Buscar '"Brassicaceae"', tiempo de consulta: 0.14s Limitar resultados
  1. 141
    por Song, Feng, Jin, Lu, Ge, Xue-Jun, Feng, Ying
    Publicado 2021
    “…The complete chloroplast genome of Isatis minima, a typical ephemeral plant of Brassicaceae in the Central Asia desert, was sequenced and characterized in this study. …”
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  2. 142
    por Maccagni, Alessio, Willi, Yvonne
    Publicado 2022
    “…Here, we investigated the traits involved in such constraints by macroevolutionary comparisons involving 100 Brassicaceae species differing in elevational distribution. …”
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  3. 143
    “…Here, we studied the dynamics of concerted evolution in 85 individuals of seven plant species of the genus Erysimum (Brassicaceae) with multiple ploidy levels. We estimated the rate of concerted evolution and the degree of sequence homogenization separately for ITS1 and ITS2 and whether these varied with ploidy. …”
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  4. 144
  5. 145
    “…As one of the important sources of human nutrition, Brassicaceae vegetables are widely grown worldwide. Black rot caused by Xanthomonas campestris pv. campestris (Xcc) seriously affects the quality and yield of Brassicaceae vegetables. …”
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  6. 146
  7. 147
    “…The Brassicaceae family constitutes some of the most well-studied natural products in the world, due to their anti-inflammatory, anti-oxidative, and pro-regenerative properties as well as their ubiquitous distribution across the world. …”
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  8. 148
    por Kaneko, Hiroki, Furuya, Toshiki
    Publicado 2023
    “…Here, we report the draft genome sequences of six Pseudomonas strains that were isolated from the interior of Brassicaceae plants.…”
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  9. 149
    por Walsh, Catherine A
    Publicado 2023
    “…This article comments on: Schlüter U, Bouvier JW, Guerreiro R, Malisic M, Kontny C, Westhoff P, Stich B, Weber APM. 2023. Brassicaceae display variation in efficiency of photorespiratory carbon-recapturing mechanisms. …”
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  10. 150
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  13. 153
    “…In particular the unpredicted expression patterns for TRY and CPC in B. villosa suggest additional characterization is needed to determine the function of the expanded families of trichome regulatory genes in more complex polyploid species within the Brassicaceae.…”
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  14. 154
    por Indriolo, Emily, Goring, Daphne R.
    Publicado 2014
    “…Ubiquitination plays essential roles in the regulation of many processes in plants including pollen rejection in self-incompatible species. In the Brassicaceae (mustard family), self-incompatibility drives the rejection of self-pollen by preventing pollen hydration following pollen contact with the stigmatic surface. …”
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  15. 155
    “…Recently, 6480 LincRNAs were putatively identified in Arabidopsis thaliana (Brassicaceae), however there is limited information on their conservation. …”
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  16. 156
  17. 157
    “…We used the tribe Arabideae (Brassicaceae) to study the divergence of seasonal flowering behaviour among annual and perennial species. …”
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  18. 158
    “…Therefore, selected supplemental LED wavelengths can be used in the cultivation of Brassicaceae microgreens to preserve and increase the contents of specific nutritionally valuable metabolites.…”
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  20. 160
    “…At the same time, the molecular mechanisms by which self‐pollen is specifically recognized and rejected have been described in exquisite details in several model organisms, such that the genotype‐to‐phenotype map is also pretty well understood, notably in the Brassicaceae. Here, we review recent advances in these two fronts and illustrate how the joint availability of detailed characterization of genotype‐to‐phenotype and phenotype‐to‐fitness maps on a single genetic system (plant self‐incompatibility) provides the opportunity to understand the evolutionary process in a unique perspective, bringing novel insight on general questions about the emergence, maintenance, and diversification of a complex genetic system.…”
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