Botany MCQs for NEET — Practice Questions with Answers

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In which one of the following processes CO2 is not released?

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Which of the metabolites is common to respiration mediated breakdown of fats, carbohydrates and proteins?

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Explanation

Acetyl Co-A is common to respiration mediated breakdown of fats, carbohydrates and proteins. Glucose and fructose are phosphorylated to give rise to glucose-6-phosphate by the activity of the enzyme hexokinase.

Glucose-6-phosphate then converts into fructose 6 phosphate and further to fructose 1-6-bisphosphate. Pyruvic acid is the end product of glycolysis. 

The energy-releasing metabolic process in which substrate is oxidised without an external electron acceptor is called

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Explanation

(b) In fermentation, the incomplete oxidation of glucose is achieved under anaerobic conditions by set of reactions, where pyruvic acid is converted to CO2 and ethanol. The enzyme pyruvic acid, decarboxylase and alcohol dehydrogenase catalyse these reactions. In animal cells also, like muscles during exercise, where oxygen is inadequate for cellular respiration, pyruvic acid is reduced to lactic acid by lactate dehydrogenase. The reducing agent is NADH + H+, which is reoxidised to NAD+, in both the processes

Aerobic respiratory pathway is appropriately termed 

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Explanation

An amphibolic pathway is a biochemical pathway that serves both anabolic and catabolic processes. An important example of an amphibolic pathway is the Krebs cycle, which involves both the catabolism of carbohydrates and fatty acid and the synthesis of anabolic precursors for amino acid synthesis. eg, α-ketoglutarate and oxaloacetate.

The chemiosmotic coupling hypothesis of oxidative phosphorylation proposes that Adenosine Triphosphate (ATP) is formed because

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Explanation

The production of ATP with the help of energy liberated during oxidation of reduced coenzymes and terminal oxidation is called oxidative phosphorylation. Peter Mitchell (1961) put forward a hypothesis known as chemiosmotic hypothesis for ATP synthesis. According to this when electrons flow from dual proton, electron carrier to a non-hydrogen carrier the H+ are released and expelled into the intermembrane space and thus, creates a proton gradient with higher concentration of H+ in the inter membranous space than the matrix. Due to proton motive force the protons flow back and energy liberated during this back flow of protons activate ATPase present in F1 head to synthesize ATP. 

Which one of the following mammalian cells is not capable of metabolising glucose to carbon-dioxide aerobically?

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Explanation

(d) Cell organelles and nucleus are absent in mature red blood cells, therefore, aerobic respiration do not take place.

All enzymes of TCA cycle are located in the mitochondrial matrix except one which is located in inner mitochondrial membranes in eukaryotes and in cytosol in prokaryotes. This enzyme is

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Explanation

(d) Succinate dehydrogenase enzyme is present on inner membrane of mitochondria and catalysed the oxidation of succinate to fumarate.

The overall goal of glycolysis, Krebs cycle and the electron transport system is the formation of:

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Explanation

(a) Glycolysis, Krebs cycle and electron transport system are meant for ATP synthesis in different steps. ATP is the energy currency of cell.

How many ATP molecules could maximally be generated from one molecule of glucose, if the complete oxidation of one mole of glucose to CO2 and H2O yields 686 kcal and the useful chemical energy available in the high energy phosphate bond of one mole of ATP is 12 Kcal?

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Explanation

One mole of ATP liberates 12 kcal of energy. So 686 kcal will liberate 686/12 = 57.1 ATP molecules.

The TCA cycle is considered as an aerobic pathway because

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Explanation

(c): TCA cycle is the cyclic biochemical catabolic pathway for the oxidation of fuel molecule through acetyl CoA which is completely oxidized to carbon dioxide and water. Kreb's cycle operates in the mitochondrial matrix because it contains complex mixture of soluble enzymes that catalyse the respiration of pyruvic acid and other smali molecules. The cycle consists of 9 enzymatic steps, four of which are dehydrogenations

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