Literature DB >> 23624937

Alteration of flavonoid accumulation patterns in transparent testa mutants disturbs auxin transport, gravity responses, and imparts long-term effects on root and shoot architecture.

Charles S Buer1, Farzanah Kordbacheh, Thy T Truong, Charles H Hocart, Michael A Djordjevic.   

Abstract

Flavonoids have broad cross-kingdom biological activity. In Arabidopsis, flavonoid accumulation in specific tissues, notably the root elongation zone and root/shoot junction modulate auxin transport, affect root gravitropism, and influence overall plant architecture. The relative contribution made by aglycones and their glycosides remains undetermined, and the longer-term phenotypic effects of altered flavonoid accumulation are not fully assessed. We tested Arabidopsis thaliana mutants that accumulate different flavonoids to determine which flavonoids were causing these affects. Tandem mass spectrometry and in situ fluorescence localisation were used to determine the in vivo levels of aglycones in specific tissues of 11 transparent testa mutants. We measured rootward and shootward auxin transport, gravitropic responses, and identified the long-term changes to root and shoot architecture. Unexpected aglycone species accumulated in vivo in several flavonoid-pathway mutants, and lower aglycone levels occurred in transcription factor mutants. Mutants accumulating more quercetin and quercetin-glycosides changed the greatest in auxin transport, gravitropism, and aerial tissue growth. Early flavonoid-pathway mutants showed aberrant lateral root initiation patterns including clustered lateral root initiations at a single site. Transcription factor mutants had multiple phenotypes including shallow root systems. These results confirm that aglycones are present at very low levels, show that lateral root initiation is perturbed in early flavonoid-pathway mutants, and indicate that altered flavonoid accumulation affects multiple aspects of plant architecture.

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Year:  2013        PMID: 23624937     DOI: 10.1007/s00425-013-1883-3

Source DB:  PubMed          Journal:  Planta        ISSN: 0032-0935            Impact factor:   4.116


  63 in total

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Authors:  Loverine P Taylor; Erich Grotewold
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5.  Novel software for analysis of root gravitropism: comparative response patterns of Arabidopsis wild-type and axr1 seedlings.

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Journal:  Plant Cell Environ       Date:  1997-07       Impact factor: 7.228

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7.  Plasticity of Arabidopsis root gravitropism throughout a multidimensional condition space quantified by automated image analysis.

Authors:  Tessa L Durham Brooks; Nathan D Miller; Edgar P Spalding
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8.  Implications of long-distance flavonoid movement in Arabidopsis thaliana.

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  30 in total

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4.  Transient silencing of CHALCONE SYNTHASE during fruit ripening modifies tomato epidermal cells and cuticle properties.

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5.  cis-Cinnamic Acid Is a Novel, Natural Auxin Efflux Inhibitor That Promotes Lateral Root Formation.

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Journal:  Plant Physiol       Date:  2016-11-11       Impact factor: 8.340

Review 6.  Plant glutathione transferase-mediated stress tolerance: functions and biotechnological applications.

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7.  Flavonoids and Auxin Transport Inhibitors Rescue Symbiotic Nodulation in the Medicago truncatula Cytokinin Perception Mutant cre1.

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8.  7-Rhamnosylated Flavonols Modulate Homeostasis of the Plant Hormone Auxin and Affect Plant Development.

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9.  Developmental phenotypes of Arabidopsis plants expressing phosphovariants of AtMYB75.

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10.  Fine-tuning of the flavonoid and monolignol pathways during apple early fruit development.

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