Consider the following statements regarding the effect of temperature ...
Effect of Temperature on Plants
Statement 1: Excessive high-temperature results in the death of plant due to coagulation of protoplasmic proteins.
Explanation:
When plants are exposed to excessive high temperatures, it can have detrimental effects on their growth and survival. One of the major impacts is the coagulation of protoplasmic proteins. Protoplasm is the living substance within a plant cell that includes the cytoplasm and nucleus. It consists of various proteins that perform essential functions for the plant's survival.
When the temperature rises above a certain threshold, the protoplasmic proteins may undergo denaturation or coagulation. Denaturation refers to the alteration of the protein's structure, leading to loss of its biological activity. In the case of coagulation, the proteins may become insoluble and clump together, rendering them dysfunctional. This disruption of protein structure and function can ultimately result in the death of the plant.
Therefore, statement 1 is correct as excessive high-temperature can indeed lead to the death of plants due to the coagulation of protoplasmic proteins.
Statement 2: It disturbs the balance between respiration and photosynthesis, thereby causing depletion of food resulting in greater susceptibility to fungal and bacterial attack.
Explanation:
Temperature plays a crucial role in the balance between respiration and photosynthesis in plants. Both these processes are essential for the plant's energy metabolism and nutrient production.
Photosynthesis is the process by which plants convert sunlight, water, and carbon dioxide into glucose (food) and oxygen. It is an energy-capturing process that occurs in the presence of chlorophyll. Higher temperatures can enhance the rate of photosynthesis up to a certain limit. However, excessive high temperatures can disrupt the balance of this process. The enzymes involved in photosynthesis may become less efficient, leading to a decreased rate of photosynthesis. This can result in a depletion of food production in the plant.
Simultaneously, high temperatures can also increase the rate of respiration in plants. Respiration is the process by which plants break down glucose to release energy for various cellular activities. When the rate of respiration exceeds the rate of photosynthesis, it can lead to a net loss of food reserves in the plant.
Furthermore, the depletion of food reserves due to disturbed balance between respiration and photosynthesis can make plants more susceptible to fungal and bacterial attacks. This is because plants with reduced food reserves have weakened defense mechanisms, making them more vulnerable to pathogens.
Therefore, statement 2 is correct as high temperatures can disturb the balance between respiration and photosynthesis, leading to a depletion of food reserves and increased susceptibility to fungal and bacterial attacks.
Conclusion:
Both statement 1 and statement 2 are correct. Excessive high temperatures can cause the death of plants due to the coagulation of protoplasmic proteins. It can also disturb the balance between respiration and photosynthesis, resulting in a depletion of food reserves and greater susceptibility to fungal and bacterial attacks.
Consider the following statements regarding the effect of temperature ...
Effects of Snow on plants - Snow influences the distribution of deodar, fir and spruce.
- Snow acts as a blanket, prevents a further drop in temperature and protects seedlings from excessive cold and frost.
- It results in mechanical bending of the tree stem.
- Shortens the period of vegetative growth also uproots the trees. Effect of temperature on plants
- Excessive high-temperature results in the death of plant due to coagulation of protoplasmic proteins. It disturbs the balance between respiration and photosynthesis, thereby causes depletion of food resulting in greater susceptibility to fungal and bacterial attack.
- It also results in desiccation of plant tissues and lack of moisture.