The leaf blade is the main photosynthetic organ and its morphology is related to light energy capture and conversion efficiency. We isolated a novel rice () mutant showing reduced width of leaf blades, rolled leaves and lower chlorophyll content. The narrow-rolled leaf phenotype resulted from the reduced number of small longitudinal veins per leaf, smaller size and irregular arrangement of bulliform cells compared with the wild-type. was mapped to chromosome 7 and encoded a putative 3-deoxy-7-phosphoheptulonate synthase (DAHPS) which catalyzes the conversion of phosphoenolpyruvate and D-erythrose 4-phosphate to DAHP and phosphate. Sequence analysis revealed that a single base substitution (T-A) was detected in , leading to a single amino acid change (L376H) in the coding protein. The mutation led to a lower expression level of as well as the lower activity of DAHPS in the mutant compared with the wild type. Genetic complementation and over-expression of could rescue the narrow-rolled phenotype. was constitutively expressed in all tested organs and exhibited different expression patterns from other narrow-rolled leaf genes. DNRL1-GFP located to chloroplasts. The lower level of chlorophyll in was associated with the downregulation of the genes responsible for chlorophyll biosynthesis and photosynthesis. Furthermore, showed significantly reduced levels of aromatic amino acids including Trp, Phe and Tyr. We conclude that OsDAHPS, encoded by , plays a critical role in leaf morphogenesis by mediating the biosynthesis of amino acids in rice.
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http://dx.doi.org/10.3390/ijms21041521 | DOI Listing |
Planta
June 2024
Hainan Institute, Yazhou Bay Science and Technology City, Zhejiang University, Sanya, 572025, China.
Ectopic expression of OsWOX9A induces narrow adaxially rolled rice leaves with larger bulliform cells and fewer large veins, probably through regulating the expression of auxin-related and expansin genes. The WUSCHEL-related homeobox (WOX) family plays a pivotal role in plant development by regulating genes involved in various aspects of growth and differentiation. OsWOX9A (DWT1) has been linked to tiller growth, uniform plant growth, and flower meristem activity.
View Article and Find Full Text PDFInt J Mol Sci
February 2020
State Key Laboratory of Rice Biology, China National Rice Research Institute, Hangzhou 310006, China.
The leaf blade is the main photosynthetic organ and its morphology is related to light energy capture and conversion efficiency. We isolated a novel rice () mutant showing reduced width of leaf blades, rolled leaves and lower chlorophyll content. The narrow-rolled leaf phenotype resulted from the reduced number of small longitudinal veins per leaf, smaller size and irregular arrangement of bulliform cells compared with the wild-type.
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