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Kohorn, B.

Publications and source records attributed to Kohorn, B..

2 recordsLinked to original sources

Bbl1 Allele of the Receptor Kinase Subfamily VII PBL38 Is Required for Elongated Root Hairs in Arabidopsis

In a screen for mutations that alter cell morphology and adhesion as a marker for cell wall composition alterations, an Arabidopsis seedling with root hairs that fail to elongate was identified. Root hairs are rounded and bubble-like, and the mutation was named Bubbles or bbl1. No other visible whole plant phenotypes were observed. Using backcrosses with wild type, and genomic sequencing of pooled F2 individuals with the Bubbles phenotype, 14 candidates for the mutant allele were identified. T-DNA alleles of one of these candidates showed a similar but partial phenotype to bbl1, and indicate that bbl1 is an allele of AT2G39110 previously identified as PBL38 (AvrPphB SUSCEPTIBLE1-LIKE38), a member of receptor kinase subfamily VII. PBL38 has been associated with the response to pathogens. bbl1 is a point mutation that causes a Glutamic acid to Lysine change at position 140, and is complimented by a C-terminal GFP fusion to the coding region of AT2G39110, indicating that the BBL1 gene (PBL38) is involved in correct root hair formation. AT2G39110 is expressed only in roots early in seedling maturation, and the GFP fusion protein localizes to the cell surface, consistent with the prediction that the gene encodes a receptor-like protein kinase. In bbl1 root hairs, the actin cytoskeleton does not form, while in bbl1 roots and other tissues normal actin cytoskeleton is observed.

plant biology↗

Arabidopsis WALL-ASSOCIATED KINASES are not required for oligogalacturonide-induced signaling and immunity

Carbohydrate-based cell wall signaling impacts plant growth, development, and stress responses; however, how cell wall signals are perceived and transduced remains poorly understood. Several cell wall breakdown products have been described as typical damage-associated molecular patterns (DAMPs) that activate plant immunity, including pectin-derived oligogalacturonides (OGs). Receptor kinases (RKs) of the WALL-ASSOCIATED KINASE (WAK) family have been shown to bind pectin and OGs, and were previously proposed as OG receptors. However, unambiguous genetic evidence for the role of WAKs in OG responses is lacking. Here, we investigated the role of Arabidopsis WAKs in OG perception using a novel deletion mutant of the clustered WAK family. Using a combination of immune assays for early and late pattern-triggered immunity (PTI), we show that WAKs are dispensable for OG-induced signaling and immunity, indicating that they are not bona fide OG receptors.

plant biology↗