Cleome, a genus closely related to Arabidopsis, contains species spanning a developmental progression from C3 to C4 photosynthesis

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Cleome, a genus closely related to Arabidopsis, contains species spanning a developmental progression from C(3) to C(4) photosynthesis.

C(4) photosynthesis involves alterations to leaf development, cell biology and biochemistry. Different lineages of C(4) plants use varying mechanisms to generate the C(4) pathway. Although the biochemistry of C(4) photosynthesis was described around 20 years ago, the phylogenetic distance between Arabidopsis and the traditional C(4) models has not facilitated the transfer of knowledge from Arab...

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An mRNA Blueprint for C4 Photosynthesis Derived from Comparative Transcriptomics of Closely Related C3 and C4 Species 1[W][OA]

Institute of Plant Biochemistry (A.B., J.W., M.S., D.G., K.L.W., A.P.M.W.), Institute of Plant Molecular and Developmental Biology (U.G., P.W.), and Institute of Informatics (J.M., M.J.L.), Heinrich-Heine University, 40225 Duesseldorf, Germany; Department of Plant Sciences, University of Cambridge, Cambridge CB2 3EA, United Kingdom (K.K., J.M.H.); and Bioinformatics Core, Research Technology Su...

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An mRNA blueprint for C4 photosynthesis derived from comparative transcriptomics of closely related C3 and C4 species.

C(4) photosynthesis involves alterations to the biochemistry, cell biology, and development of leaves. Together, these modifications increase the efficiency of photosynthesis, and despite the apparent complexity of the pathway, it has evolved at least 45 times independently within the angiosperms. To provide insight into the extent to which gene expression is altered between C(3) and C(4) leave...

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Identification and characterization of miRNAs in two closely related C4 and C3 species of Cleome by high-throughput sequencing

Cleome gynandra and Cleome hassleriana, which are C4 and C3 plants, respectively, are two species of Cleome. The close genetic relationship between C. gynandra and C. hassleriana provides advantages for discovering the differences in leaf development and physiological processes between C3 and C4 plants. MicroRNAs (miRNAs) are a class of important regulators of various biological processes. In t...

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Photosynthesis in C3-C4 intermediate Moricandia species.

Evolution of C4 photosynthesis is not distributed evenly in the plant kingdom. Particularly interesting is the situation in the Brassicaceae, because the family contains no C4 species, but several C3-C4 intermediates, mainly in the genus Moricandia Investigation of leaf anatomy, gas exchange parameters, the metabolome, and the transcriptome of two C3-C4 intermediate Moricandia species, M. arven...

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ژورنال

عنوان ژورنال: The Plant Journal

سال: 2007

ISSN: 0960-7412,1365-313X

DOI: 10.1111/j.1365-313x.2007.03188.x