Abstract
Adjacent bundle sheath and mesophyll cells cooperate for carbon fixation in the leaves of C4 plants. Mutants with compromised plastid development should reveal the degree to which this cooperation is obligatory, because one can assay whether mesophyll cells with defective bundle sheath neighbors retain C4 characteristics or revert to C3 photosynthesis. The leaf permease1-mutable1 (lpe1-m1) mutant of maize exhibits disrupted chloroplast ultrastructure, preferentially affecting bundle sheath choroplasts under lower light. Despite the disrupted ultrastructure, the metabolic cooperation of bundle sheath and mesophyll cells for C4 photosynthesis remains intact. To investigate this novel mutation, the Activator transposon-tagged allele and cDNAs corresponding to the Lpe1 mRNA from wild-type plants were cloned. The Lpe1 gene encodes a polypeptide with significant similarity to microbial pyrimidine and purine transport proteins. An analysis of revertant sectors generated by Activator excision suggests that the Lpe1 gene product is cell autonomous and can be absent up to the last cell divisions in the leaf primordium without blocking bundle sheath chloroplast development.
MeSH Terms
Amino Acid Sequence
Base Sequence
Cell Division
Chloroplasts/physiology
Cloning, Molecular
Genes, Plant
Kinetics
Light
Membrane Transport Proteins/biosynthesis,genetics,metabolism
Molecular Sequence Data
Mutagenesis
Open Reading Frames
Phenotype
Plant Leaves
Plant Proteins/biosynthesis,genetics,metabolism
Purines/metabolism
RNA, Messenger/biosynthesis,metabolism
Sequence Homology, Amino Acid
Zea mays/genetics,physiology
Chemicals
LPE1 protein, Zea mays
Membrane Transport Proteins
Plant Proteins
Purines
RNA, Messenger
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Schultes N P
Department of Biology, Yale University, New Haven, Connecticut 06511, USA.
Brutnell T P
Allen A
Dellaporta S L
Nelson T
Chen J
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