Leaf development in C4 plants such as maize involves the differentiation of two photosynthetic cell types [bundle sheath (BS) and mesophyll (M)] to form Kranz-type leaf anatomy. This cellular dimorphism partitions photosynthetic activities so that each enzyme of the C4 pathway accumulates only in the appropriate cell type. We have exploited this property to study BS and M cell interactions in developing maize leaves. Our previous studies showed that C4 proteins appear concurrently with the appearance of Kranz anatomy. To look at earlier events in BS and M cell development we have used three of the corresponding C4 mRNAs as cell-specific markers. We have followed, in situ, the accumulation of malic enzyme (ME), phosphoenolpyruvate carboxylas...
C4 plants like maize adopt physiological and anatomical modifications for the establishment and main...
Within the maize leaf primordium, coordinated cell division and differentiation patterns result in t...
Photosynthesis underpins the viability of most ecosystems, with C 4 plants that exhibit 'Kranz' anat...
Photosynthesis in C4-type grasses such as maize involves the interaction of two cell types (bundle s...
Photosynthesis in C4-type grasses such as maize involves the interaction of two cell types (bundle s...
C4 plants such as maize partition photosynthetic activities in two morphologically distinct cell typ...
C4 plants such as maize partition photosynthetic activities in two morphologically distinct cell typ...
The C4 photosynthetic pathway acts to concentrate CO2 around the enzyme Ribulose-1,5-bisphosphate ca...
The C4 photosynthetic pathway acts to concentrate CO2 around the enzyme Ribulose-1,5-bisphosphate ca...
In Zea mays (maize), photosynthetic activities are partitioned between two morphologically and bioch...
The highly efficient C4 photosynthetic pathway is facilitated by ‘Kranz’ leaf anatomy. In Kranz leav...
Photosynthesis underpins the viability of most ecosystems, with C4 plants that exhibit 'Kranz' anato...
The highly efficient C4 photosynthetic pathway is facilitated by ‘Kranz’ leaf anatomy. In Kranz leav...
The mature maize leaf is characterised by a series of parallel veins that are surrounded by concentr...
C4 plants like maize adopt physiological and anatomical modifications for the establishment and main...
C4 plants like maize adopt physiological and anatomical modifications for the establishment and main...
Within the maize leaf primordium, coordinated cell division and differentiation patterns result in t...
Photosynthesis underpins the viability of most ecosystems, with C 4 plants that exhibit 'Kranz' anat...
Photosynthesis in C4-type grasses such as maize involves the interaction of two cell types (bundle s...
Photosynthesis in C4-type grasses such as maize involves the interaction of two cell types (bundle s...
C4 plants such as maize partition photosynthetic activities in two morphologically distinct cell typ...
C4 plants such as maize partition photosynthetic activities in two morphologically distinct cell typ...
The C4 photosynthetic pathway acts to concentrate CO2 around the enzyme Ribulose-1,5-bisphosphate ca...
The C4 photosynthetic pathway acts to concentrate CO2 around the enzyme Ribulose-1,5-bisphosphate ca...
In Zea mays (maize), photosynthetic activities are partitioned between two morphologically and bioch...
The highly efficient C4 photosynthetic pathway is facilitated by ‘Kranz’ leaf anatomy. In Kranz leav...
Photosynthesis underpins the viability of most ecosystems, with C4 plants that exhibit 'Kranz' anato...
The highly efficient C4 photosynthetic pathway is facilitated by ‘Kranz’ leaf anatomy. In Kranz leav...
The mature maize leaf is characterised by a series of parallel veins that are surrounded by concentr...
C4 plants like maize adopt physiological and anatomical modifications for the establishment and main...
C4 plants like maize adopt physiological and anatomical modifications for the establishment and main...
Within the maize leaf primordium, coordinated cell division and differentiation patterns result in t...
Photosynthesis underpins the viability of most ecosystems, with C 4 plants that exhibit 'Kranz' anat...