RuBisCO under carboxylase activity catalyses \({C_3}\) cycle/ Calvin cycle. When acting as an oxygenase, it carries out Photorespiration/ \({C_2}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337051
Why Calvin cycle is called \({C_3}\)-cycle?
1 Primary \(C{O_2}\) acceptor is \({C_3}\) compound
2 Many intermediate compounds are \({C_3}\) compound
3 1st stable product is 3 PGA which is a \({C_3}\) compound
4 3 molecules of sugar are formed
Explanation:
The first product formed in Calvin Cycle was 3-phosphoglyceric acid or in short PGA. It is a three carbon containing or \({C_3}\) acid. Hence, calvin cycle is also known as \({C_3}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337028
In stroma
1 ATP and \(NADP{H_2}\) are formed and \({H_2}O\) and \({O_2}\) come out.
2 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
3 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms cellulose immediately
4 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to ATP and \(NAD{H_2}\) formation
Explanation:
Dark reaction is carried out in the stroma of chloroplast. Here, enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
RuBisCO under carboxylase activity catalyses \({C_3}\) cycle/ Calvin cycle. When acting as an oxygenase, it carries out Photorespiration/ \({C_2}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337051
Why Calvin cycle is called \({C_3}\)-cycle?
1 Primary \(C{O_2}\) acceptor is \({C_3}\) compound
2 Many intermediate compounds are \({C_3}\) compound
3 1st stable product is 3 PGA which is a \({C_3}\) compound
4 3 molecules of sugar are formed
Explanation:
The first product formed in Calvin Cycle was 3-phosphoglyceric acid or in short PGA. It is a three carbon containing or \({C_3}\) acid. Hence, calvin cycle is also known as \({C_3}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337028
In stroma
1 ATP and \(NADP{H_2}\) are formed and \({H_2}O\) and \({O_2}\) come out.
2 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
3 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms cellulose immediately
4 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to ATP and \(NAD{H_2}\) formation
Explanation:
Dark reaction is carried out in the stroma of chloroplast. Here, enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
RuBisCO under carboxylase activity catalyses \({C_3}\) cycle/ Calvin cycle. When acting as an oxygenase, it carries out Photorespiration/ \({C_2}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337051
Why Calvin cycle is called \({C_3}\)-cycle?
1 Primary \(C{O_2}\) acceptor is \({C_3}\) compound
2 Many intermediate compounds are \({C_3}\) compound
3 1st stable product is 3 PGA which is a \({C_3}\) compound
4 3 molecules of sugar are formed
Explanation:
The first product formed in Calvin Cycle was 3-phosphoglyceric acid or in short PGA. It is a three carbon containing or \({C_3}\) acid. Hence, calvin cycle is also known as \({C_3}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337028
In stroma
1 ATP and \(NADP{H_2}\) are formed and \({H_2}O\) and \({O_2}\) come out.
2 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
3 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms cellulose immediately
4 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to ATP and \(NAD{H_2}\) formation
Explanation:
Dark reaction is carried out in the stroma of chloroplast. Here, enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
RuBisCO under carboxylase activity catalyses \({C_3}\) cycle/ Calvin cycle. When acting as an oxygenase, it carries out Photorespiration/ \({C_2}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337051
Why Calvin cycle is called \({C_3}\)-cycle?
1 Primary \(C{O_2}\) acceptor is \({C_3}\) compound
2 Many intermediate compounds are \({C_3}\) compound
3 1st stable product is 3 PGA which is a \({C_3}\) compound
4 3 molecules of sugar are formed
Explanation:
The first product formed in Calvin Cycle was 3-phosphoglyceric acid or in short PGA. It is a three carbon containing or \({C_3}\) acid. Hence, calvin cycle is also known as \({C_3}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337028
In stroma
1 ATP and \(NADP{H_2}\) are formed and \({H_2}O\) and \({O_2}\) come out.
2 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
3 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms cellulose immediately
4 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to ATP and \(NAD{H_2}\) formation
Explanation:
Dark reaction is carried out in the stroma of chloroplast. Here, enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
RuBisCO under carboxylase activity catalyses \({C_3}\) cycle/ Calvin cycle. When acting as an oxygenase, it carries out Photorespiration/ \({C_2}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337051
Why Calvin cycle is called \({C_3}\)-cycle?
1 Primary \(C{O_2}\) acceptor is \({C_3}\) compound
2 Many intermediate compounds are \({C_3}\) compound
3 1st stable product is 3 PGA which is a \({C_3}\) compound
4 3 molecules of sugar are formed
Explanation:
The first product formed in Calvin Cycle was 3-phosphoglyceric acid or in short PGA. It is a three carbon containing or \({C_3}\) acid. Hence, calvin cycle is also known as \({C_3}\) cycle.
BIOXI13: PHOTOSYNTHESIS IN HIGHER PLANTS
337028
In stroma
1 ATP and \(NADP{H_2}\) are formed and \({H_2}O\) and \({O_2}\) come out.
2 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch
3 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms cellulose immediately
4 Enzymatic reactions incorporate \(C{O_2}\) into the plant leading to ATP and \(NAD{H_2}\) formation
Explanation:
Dark reaction is carried out in the stroma of chloroplast. Here, enzymatic reactions incorporate \(C{O_2}\) into the plant leading to the synthesis of sugar, which in turn, forms starch