Keyword search (4,163 papers available)

"Gulick PJ" Authored Publications:

Title Authors PubMed ID
1 Characterization of secreted epidermal patterning factor peptides and ERECTA family receptors as regulators for root hair development in em Arabidopsis thaliana /em Hamiditabar Z; Lee JS; Gulick PJ; 41280503
BIOLOGY
2 The caleosin RD20/CLO3 regulates lateral root development in response to abscisic acid and regulates flowering time in conjunction with the caleosin CLO7 Brunetti SC; Arseneault MKM; Gulick PJ; 37812854
BIOLOGY
3 The caleosin CLO7 and its role in the heterotrimeric G-protein signalling network Brunetti SC; Arseneault MKM; Gulick PJ; 36334585
BIOLOGY
4 Characterization and Expression of the Pirin Gene Family in Triticum aestivum Brunetti SC; Arseneault MKM; Gulick PJ; 35504035
BIOLOGY
5 Characterization of the heterotrimeric G protein gene families in Triticum aestivum and related species Gawande ND; Hamiditabar Z; Brunetti SC; Gulick PJ; 35463045
BIOLOGY
6 The stress induced caleosin, RD20/CLO3, acts as a negative regulator of GPA1 in Arabidopsis Brunetti SC; Arseneault MKM; Wright JA; Wang Z; Ehdaeivand MR; Lowden MJ; Rivoal J; Khalil HB; Garg G; Gulick PJ; 34599731
BIOLOGY
7 Duplicated antagonistic EPF peptides optimize grass stomatal initiation Jangra R; Brunetti SC; Wang X; Kaushik P; Gulick PJ; Foroud NA; Wang S; Lee JS; 34328169
BIOLOGY
8 Structural variation and rates of genome evolution in the grass family seen through comparison of sequences of genomes greatly differing in size. Dvorak J, Wang L, Zhu T, Jorgensen CM, Deal KR, Dai X, Dawson MW, Müller HG, Luo MC, Ramasamy RK, Dehghani H, Gu YQ, Gill BS, Distelfeld A, Devos KM, Qi P, You FM, Gulick PJ, McGuire PE 29770515
BIOLOGY
9 Genetic combining ability of coriander genotypes for agronomic and phytochemical traits in response to contrasting irrigation regimes. Gholizadeh A, Dehghani H, Khodadadi M, Gulick PJ 29953470
BIOLOGY
10 Characterization of the Esi3/RCI2/PMP3 gene family in the Triticeae. Brunetti SC, Arseneault MKM, Gulick PJ 30537926
BIOLOGY
11 Aegilops tauschii Genome Sequence: A Framework for Meta-analysis of Wheat QTLs. Xu J, Dai X, Ramasamy RK, Wang L, Zhu T, McGuire PE, Jorgensen CM, Dehghani H, Gulick PJ, Luo MC, Müller HG, Dvorak J 30670607
BIOLOGY
12 Gene expression analysis in the roots of salt-stressed wheat and the cytogenetic derivatives of wheat combined with the salt-tolerant wheatgrass, Lophopyrum elongatum. Hussein Z, Dryanova A, Maret D, Gulick PJ 24141639
CSFG

 

Title:The caleosin RD20/CLO3 regulates lateral root development in response to abscisic acid and regulates flowering time in conjunction with the caleosin CLO7
Authors:Brunetti SCArseneault MKMGulick PJ
Link:https://pubmed.ncbi.nlm.nih.gov/37812854/
DOI:10.1016/j.jplph.2023.154102
Publication:Journal of plant physiology
Keywords:ABACLO7Calcium-binding proteinCaleosinRD20/CLO3Root architecture
PMID:37812854 Category: Date Added:2023-10-10
Dept Affiliation: BIOLOGY

Description:

The caleosins are encoded by multi-gene families in Arabidopsis thaliana and other plant species. This work investigates the role of two family members, RD20/CLO3 and CLO7, in flowering transition and in root development in response to ABA treatment. Gene expression of the caleosin RD20/CLO3 is induced by ABA in the root tissues and RD20/CLO3 has a negative affect on the total number of lateral roots as well as the length of the lateral roots in response to ABA treatment. The rd20/clo3 mutant has more and longer lateral roots in response to ABA treatment compared to the wild-type, showing that RD20/CLO3 plays a role in the ABA signaling pathway affecting this trait. In contrast, the caleosin CLO7 is not expressed in the roots and does not affect root architecture in response to ABA treatment. The disruption of both RD20/CLO3 and CLO7 together causes a dramatic early-flowering phenotype under long-day conditions, whereas single mutations in these genes do not affect flowering time under these conditions. Both yeast two-hybrid and bimolecular fluorescence complementation showed that both RD20/CLO3 and CLO7 interact with each other and can form homodimers and heterodimers. Taken together, these findings suggest that members of the caleosin gene family play both different and redundant roles in plant development.





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