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Lalit Ponnala

Explore the profile of Lalit Ponnala including associated specialties, affiliations and a list of published articles. Areas
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Articles 33
Citations 3494
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Recent Articles
11.
Bhuiyan N, Friso G, Poliakov A, Ponnala L, van Wijk K
Plant Cell . 2015 Jan; 27(1):262-85. PMID: 25587003
Photosystem II (PSII) requires constant disassembly and reassembly to accommodate replacement of the D1 protein. Here, we characterize Arabidopsis thaliana MET1, a PSII assembly factor with PDZ and TPR domains....
12.
Ponnala L, Wang Y, Sun Q, van Wijk K
Plant J . 2014 Feb; 78(3):424-40. PMID: 24547885
To help understand regulation of maize leaf blade development, including sink-source transitions and induction of C4 photosynthesis, we compared large-scale quantitative proteome and transcriptomes collected at specific stages along the...
13.
Nishimura K, Asakura Y, Friso G, Kim J, Oh S, Rutschow H, et al.
Plant Cell . 2013 Jul; 25(6):2276-301. PMID: 23898032
Whereas the plastid caseinolytic peptidase (Clp) P protease system is essential for plant development, substrates and substrate selection mechanisms are unknown. Bacterial ClpS is involved in N-degron substrate selection and...
14.
Lundquist P, Poliakov A, Giacomelli L, Friso G, Appel M, McQuinn R, et al.
Plant Cell . 2013 May; 25(5):1818-39. PMID: 23673981
Plastoglobules (PGs) are plastid lipid-protein particles. This study examines the function of PG-localized kinases ABC1K1 and ABC1K3 in Arabidopsis thaliana. Several lines of evidence suggested that ABC1K1 and ABC1K3 form...
15.
Kim J, Olinares P, Oh S, Ghisaura S, Poliakov A, Ponnala L, et al.
Plant Physiol . 2013 Apr; 162(1):157-79. PMID: 23548781
The plastid ClpPRT protease consists of two heptameric rings of ClpP1/ClpR1/ClpR2/ClpR3/ClpR4 (the R-ring) and ClpP3/ClpP4/ClpP5/ClpP6 (the P-ring) and peripherally associated ClpT1/ClpT2 subunits. Here, we address the contributions of ClpP3 and...
16.
Lin C, Den Bakker H, Suzuki H, Lefebure T, Ponnala L, Sun Q, et al.
Genome Announc . 2013 Mar; 1(1). PMID: 23469345
Reported herein is the complete genome sequence of strain P43/6/78, isolated from a pig with clinical disease. This sequence will aid in the study of genome-wide comparison among species.
17.
Takacs E, Li J, Du C, Ponnala L, Janick-Buckner D, Yu J, et al.
Plant Cell . 2012 Aug; 24(8):3219-34. PMID: 22911570
The maize (Zea mays) shoot apical meristem (SAM) arises early in embryogenesis and functions during stem cell maintenance and organogenesis to generate all the aboveground organs of the plant. Despite...
18.
Ward J, Ponnala L, Weber C
Am J Bot . 2012 Feb; 99(2):267-76. PMID: 22301897
Even with recent reductions in sequencing costs, most plants lack the genomic resources required for successful short-read transcriptome analyses as performed routinely in model species. Several approaches for the analysis...
19.
Majeran W, Friso G, Asakura Y, Qu X, Huang M, Ponnala L, et al.
Plant Physiol . 2011 Nov; 158(1):156-89. PMID: 22065420
Plastids contain multiple copies of the plastid chromosome, folded together with proteins and RNA into nucleoids. The degree to which components of the plastid gene expression and protein biogenesis machineries...
20.
Matas A, Yeats T, Buda G, Zheng Y, Chatterjee S, Tohge T, et al.
Plant Cell . 2011 Nov; 23(11):3893-910. PMID: 22045915
Tomato (Solanum lycopersicum) is the primary model for the study of fleshy fruits, and research in this species has elucidated many aspects of fruit physiology, development, and metabolism. However, most...