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Your search keyword '"Gibberellins genetics"' showing total 18 results

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18 results on '"Gibberellins genetics"'

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1. Hormone and RNA-seq analyses reveal the mechanisms underlying differences in seed vigour at different maize ear positions.

2. Exogenous auxin represses soybean seed germination through decreasing the gibberellin/abscisic acid (GA/ABA) ratio.

3. Major genes determining yield-related traits in wheat and barley.

4. A forward genetic approach in Arabidopsis thaliana identifies a RING-type ubiquitin ligase as a novel determinant of seed longevity.

5. Transcriptional programs related to phytochrome A function in Arabidopsis seed germination.

6. Expression of 9-cis-EPOXYCAROTENOID DIOXYGENASE4 is essential for thermoinhibition of lettuce seed germination but not for seed development or stress tolerance.

7. Molecular and physiological dissection of enhanced seed germination using short-term low-concentration salt seed priming in tomato.

8. Genome-wide identification of gibberellins metabolic enzyme genes and expression profiling analysis during seed germination in maize.

9. Tissue-specific regulation of gibberellin biosynthesis in developing pea seeds.

10. Production of seed samples for the effective molecular analysis of dormancy cycling in Arabidopsis.

11. Disruption of the 1-deoxy-D-xylulose-5-phosphate reductoisomerase (DXR) gene results in albino, dwarf and defects in trichome initiation and stomata closure in Arabidopsis.

12. Overexpression of a gibberellin inactivation gene alters seed development, KNOX gene expression, and plant development in Arabidopsis.

13. Molecular aspects of seed dormancy.

14. Germination of photoblastic lettuce seeds is regulated via the control of endogenous physiologically active gibberellin content, rather than of gibberellin responsiveness.

15. Deactivation of gibberellin by 2-oxidation during germination of photoblastic lettuce seeds.

16. The role of GA-mediated signalling in the control of seed germination.

17. Gibberellin/abscisic acid antagonism in barley aleurone cells: site of action of the protein kinase PKABA1 in relation to gibberellin signaling molecules.

18. Signaling from the embryo conditions Vp1-mediated repression of alpha-amylase genes in the aleurone of developing maize seeds.

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