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Sousa-Baena, M. S.

Publications and source records attributed to Sousa-Baena, M. S..

2 recordsLinked to original sources

Helical Growth of Twining Common Bean is Associated with Longitudinal, Not Skewed, Microtubule Patterning

Organ chirality in plants has been linked to cytoskeletal organization, as demonstrated in Arabidopsis thaliana twisted mutants, where left-skewed cortical microtubules are associated with right-handed twisting, and vice versa. While this phenotype seemingly mirrors vining activity, this hypothesis remains understudied within naturally twining plants. Qualitative observations identified skewed microtubules in the twining stem of Ipomoea nil vine, suggesting parallels with Arabidopsis studies. To further investigate organ chirality in twining plants, we used common bean vine (Phaseolus vulgaris L.) to examine the relationship between microtubule orientation, cell morphogenesis, and the right-handed twining phenotype via immunolabeling techniques. Here, we report a transition from mixed microtubules orientations in emergent and elongating internodes to a predominance of longitudinal microtubules in straight and twined stem segments post-elongation. Additionally, we report a distinction in epidermal cell shapes, where the straight portions of the stem consist of lobes with rectangular cells and furrows comprised of round cells, while the twined portions are comprised of cells that are relatively more rectangular and stretched. We propose that these orientations reflect dynamic microtubule responses to external stimuli and growth cues, such as tensile stresses from climbing or tissue expansion. Taken together, these findings highlight dissimilarities between twisting Arabidopsis mutants and naturally twining plants. HighlightLongitudinally arranged cortical microtubules found along the coiled stems of common bean vine highlight disparities between the directional growth of well-documented twisted Arabidopsis mutants and naturally twining plants.

developmental biology↗

Gelatinous fibers develop asymmetrically for posture support of bends and coils in common bean vine

Gelatinous (G)-fibers are common in the stems of twining vines (twiners), but their role remain unclear given the lack of developmental insights. Here, we characterize the developmental anatomy of G-fiber formation in common bean stems (Phaseolus vulgaris L., Fabaceae). G-fibers in common bean exhibit cell wall organization comparable to other species, consisting of cellulose and Rhamnogalacturonan-I pectins, with possible traces of lignin. We show that G-fibers are absent in the actively circumnutating stems, thus these tensile fibers are not associated with the dynamic searching movements characteristics of twiners. Instead, we found that after a subtle bend or dramatic coil is formed, G-fibers form asymmetrically on the concave side of the stem for posture maintenance. Therefore, G-fibers do not drive movement, but provide support for existing bends, thus stabilizing the helical conformation of twiners around its host to avoid slippage. Finally, we present common bean as an emergent system to study twiners and growth form diversity given its easy cultivation, self-pollination, fast growth, and habit diversity arising from plant breeding, and the ability to induce habit shifts through simple modifications to light conditions.

plant biology↗