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13 results for “Cleomaceae”
Figura 4 in Entomofauna asociada a tres especies arvenses del género Cleome Linnaeus, 1753 (Brassicales: Cleomaceae) y sus relaciones potenciales con cultivos agrícolas
Figura 4. Valores de similitud entre las áreas a partir de la entomofauna asociadas a las arvenses. / Similarity values between the areas based on the entomofauna associated with the weeds.
Figuras 1-3 in Entomofauna asociada a tres especies arvenses del género Cleome Linnaeus, 1753 (Brassicales: Cleomaceae) y sus relaciones potenciales con cultivos agrícolas
Figuras 1-3. Composición general de gremios tróficos asociados a Cleome spp. 1. C. viscosa. 2. C. gynandra. 3. C. spinosa. / General composition of trophic guilds associated with Cleome spp. 1. C. viscosa. 2. C. gynandra. 3. C. spinosa.
Full-resolution photos of seeds from the plant family Cleomaceae
<p>Full resolution seed images, including raw stacked images and final edited images with scalebar, from the plant family Cleomaceae. Images are in association with the publication (10.1002/ajb2.16399) in the <em>American Journal of Botany</em> as "Tangled webs and spider‐flowers: Phylogenomics, biogeography, and seed morphology inform the evolutionary history<br>of Cleomaceae."</p>
FIGURE. 1 in A revision of generic boundaries and nomenclature in the North American cleomoid clade (Cleomaceae)
FIGURE. 1. Summary of relationships between Brassicaceae, Capparaceae, and Cleomaceae and within Cleomaceae based on Patchell et al. (2014). Asterices (*) indicates branches with low to no support. Stars on clade names indicate those with species currently circumscribed in Cleome.
FIGURE. 2 in A revision of generic boundaries and nomenclature in the North American cleomoid clade (Cleomaceae)
FIGURE. 2. Tree summarizing relationships among North American cleomoids based on molecular phylogenetic analyses (redrawn after Riser et al. 2013: Fig. 1). Indicated to the right of the tree are three alternative generic delimitations. Option C is advocated in this paper.
FIGURE 1. a‒e in Cleoserrata (Cleomaceae): taxonomic considerations and a new species
FIGURE 1. a‒e: Cleoserrata bahiana Iltis & M.B. Costa-e-Silva ex Soares Neto & Roalson. a. flowering and fruiting branch; b. a foliolate highlighting the margin serrulate; c. detail of flower; d. fruit; e. detail of seed smooth and glabrous.
FIGURE 4. a‒c in Two new species of Tarenaya (Cleomaceae) from Brazil
FIGURE 4. a‒c: Tarenaya pernambucensis. a. Flowering branch; b. Details of flowering and fruiting branch, highlighting the deflexed fruits; c. Seed.
FIGURE 2. a‒d in Two new species of Tarenaya (Cleomaceae) from Brazil
FIGURE 2. a‒d: Tarenaya curvispina. a. Overview of the habit; b. Detail of inflorescence highlighting the flowers and the foliaceous bracts; c. Fruits branching; d. Open silique with seeds in maturation.
Data from: Comparative transcriptome atlases reveal altered gene expression modules between two Cleomaceae C3 and C4 plant species
C4 photosynthesis outperforms the ancestral C3 state in a wide range of natural and agro-ecosystems by affording higher water-use and nitrogen-use efficiencies. It therefore represents a prime target for engineering novel, high-yielding crops by introducing the trait into C3 backgrounds. However, the genetic architecture of C4 photosynthesis remains largely unknown. To define the divergence in gene expression modules between C3 and C4 photosynthesis during leaf ontogeny, we generated comprehensive transcriptome atlases of two Cleomaceae species, Gynandropsis gynandra (C4) and Tarenaya hassleriana (C3), by RNA sequencing. Overall, the gene expression profiles appear remarkably similar between the C3 and C4 species. We found that known C4 genes were recruited to photosynthesis from different expression domains in C3, including typical housekeeping gene expression patterns in various tissues as well as individual heterotrophic tissues. Furthermore, we identified a structure-related module recruited from the C3 root. Comparison of gene expression patterns with anatomy during leaf ontogeny provided insight into genetic features of Kranz anatomy. Altered expression of developmental factors and cell cycle genes is associated with a higher degree of endoreduplication in enlarged C4 bundle sheath cells. A delay in mesophyll differentiation apparent both in the leaf anatomy and the transcriptome allows for extended vein formation in the C4 leaf.
FIGURE 2 in Cleoserrata (Cleomaceae): taxonomic considerations and a new species
FIGURE 2. Distribution map of Cleoserrata bahiana.
FIGURE 3 in Two new species of Tarenaya (Cleomaceae) from Brazil
FIGURE 3. Geographic distribution map of Tarenaya curvispina and T. pernambucensis.
FIGURE 1. a‒b in Two new species of Tarenaya (Cleomaceae) from Brazil
FIGURE 1. a‒b: Tarenaya curvispina. a. Flowering and fruiting branch; b. Seed.
Data from: Comparative transcriptome atlases reveal altered gene expression modules between two Cleomaceae C3 and C4 plant species
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