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MacAlister, C. A.

Publications and source records attributed to MacAlister, C. A..

2 recordsLinked to original sources

Phospholipase C6 Regulates Hydroxyproline O-arabinosyltransferase-mediated Pollen Tube Growth in Arabidopsis

Hydroxyproline O-arabinosylation is a highly-conserved and plant-specific post-translational modification found on extensins and other structural proteins in the cell wall, and is catalyzed by Hydroxyproline O-arabinosyltransferases (HPATs). In Arabidopsis, loss of HPAT1 and HPAT3 (hpat1/3) causes reorganization of components in the pollen tube (PT) cell wall, which compromises cell wall structural integrity and decreases PT growth and fertility. We have previously shown that reduced secretion (caused by loss-of-function mutations in secretory genes EXO70A2, SEC15A, and SEC1A) suppressed cell wall defects and strongly rescued poor growth and fertility in hpat1/3 PTs. Here, we show that a missense mutation in PHOSPHOLIPASE C6 (PLC6) also rescues hpat1/3 PT growth and fertility. Transgenic insertion mutations that disrupt PLC6 expression did not improve hpat1/3 pollen fertility, and did not affect PT growth or fertility in the wild type background. This data suggests that our missense allele (plc6-4) does not function like a true loss-of-function allele, and that PLC6 is not required for wild type PT growth. However, in the absence of hpat1/3, plc6-4 PTs have defects in transmission and polarized growth, as indicated by meandering growth paths and a resulting crooked appearance. plc6-4 PT elongation and straightness are more sensitive to elevated levels of calcium than wild type. This may be due the nature of the plc6-4 mutation, which causes an E569K amino acid substitution in the lipid-binding C2 domain. The 569 position is located among conserved residues that bind calcium. The resulting charge inversion caused by the E569K substitution may disrupt PLC6s lipid binding and phospholipase activities. Here, we show that PLC6 influences polarized PT growth and HPAT-mediated PT growth and fertility, and future studies are necessary to better understand the relationship between calcium and PLC6 in PT growth.

plant biology↗

The Hydroxyproline O-arabinosyltransferase FIN4 is required for tomato pollen intine development

The pollen grain cell wall is a highly specialized structure composed of distinct layers formed through complex developmental pathways. The production of the innermost intine layer, composed of cellulose, pectin and other polymers, is particularly poorly understood. Here we demonstrate an important and specific role for the hydroxyproline O-arabinosyltransferase (HPAT) FIN4 in tomato intine development. HPATs are plant-specific enzymes which initiate glycosylation of certain cell wall structural proteins and signaling peptides. FIN4 was expressed throughout pollen development in both the developing pollen and surrounding tapetal cells. A fin4 mutant with a partial deletion of the catalytic domain displayed significantly reduced male fertility in vivo and compromised pollen hydration and germination in vitro. However, fin4 pollen that successfully germinated formed morphologically normal pollen tubes with the same growth rate as the wild-type pollen. When we examined mature fin4 pollen, we found they were cytologically normal, and formed morphologically normal exine, but produced significantly thinner intine. During intine deposition at the late stages of pollen development we found fin4 pollen had altered polymer deposition, including reduced cellulose and increased detection of pectin, specifically homogalacturonan with both low and high degrees of methylesterification. Therefore, FIN4 plays an important role in intine formation and, in turn pollen hydration and germination and the process of intine formation involves dynamic changes in the developing pollen cell wall.

plant biology↗