Abstract
Phyllody in sunflowers (Helianthus annuus L.) is characterized by the appearance of bracts and ray flowers in the centre of the heads. It has been discussed for decades among the sunflower plant breeders and experts without a clear “unique” explanation for it. The erratic appearance of the phenomena has led to consider it either a disease or hybrid defect and the plants with Phyllody as off-types, raising several farmers claims to seed producers. However, the auxins gradient, in the growing Asteraceae heads, determines the differentiation pathway of the undifferentiated cells. i.e., bracts and ray flowers at the border and disk flowers in the centre of the head. Disruption of the natural auxin gradient alters the cell differentiation in the growing heads and causes bracts and ray flowers to grow where only disk flowers should grow. The disruption of the natural head bottom auxin gradients may be caused by small injures in the fast-growing head receptacle. The most common causes of Phyllody are hormonal herbicide damage and Boron (B) deficiency, even temporary. Plants growing with B deficiency have brittle cell wall and membranes while a plant with high B levels produces plastic or elastic cell wall and membranes. Brittle cell walls are susceptible to breaks during growth. Sunflowers genotypes may react to crack or small damages in the sunflower bud in two ways. Some tend to repair the damages by regrowing new organs such as ligules or bracts and forming Phyllody. Others do not regrow and only heal the wound creating the funnel hole head shape.
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Author contributions: All the authors have accepted responsibility for the entire content of this submitted manuscript and approved submission.
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Research funding: None declared.
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Conflict of interest statement: The authors declare no conflicts of interest regarding this article.
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© 2021 Walter de Gruyter GmbH, Berlin/Boston
Artikel in diesem Heft
- Frontmatter
- Research Articles
- Shuttle breeding in sunflower lines development
- Efficiency of selection–biotechnological system of selection for creation of breeding source material of sunflower resistant to herbicides and broomrape
- New races of rust pathogen on sunflower in Russia
- Phyllody in sunflowers; 44 years to explain the appearance of aberrant flowers
- Effect of different dosage of EMS on germination, survivability and morpho-physiological characteristics of sunflower seedling
- The state of soil microbiotes during sunflower growing with an herbicide of imidazolinone group
Artikel in diesem Heft
- Frontmatter
- Research Articles
- Shuttle breeding in sunflower lines development
- Efficiency of selection–biotechnological system of selection for creation of breeding source material of sunflower resistant to herbicides and broomrape
- New races of rust pathogen on sunflower in Russia
- Phyllody in sunflowers; 44 years to explain the appearance of aberrant flowers
- Effect of different dosage of EMS on germination, survivability and morpho-physiological characteristics of sunflower seedling
- The state of soil microbiotes during sunflower growing with an herbicide of imidazolinone group