TLS Online TPP Program

#Question id: 4633


Natural selection is based on all of the following except

#Zoology
  1. individuals adapt to their environments and, thereby, evolve.

  2. the best-adapted individuals tend to leave the most offspring.

  3. individuals who survive longer tend to leave more offspring than those who die young.

  4. populations tend to produce more individuals than the environment can support.

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TLS Online TPP Program

#Question id: 37967

#Plant Biotechnology

Assertion (A): Responsive pollen in culture always develops directly into a globular embryo. 
Reason (R): The developmental fate (embryo vs. callus) depends on the plant species.

Select the correct option from:

TLS Online TPP Program

#Question id: 37968

#Plant Biotechnology

Assertion (A): In cereals like rice and wheat, the choice between embryo or callus formation can be manipulated. 
Reason (R): Modifying the medium composition in these species can induce either embryos or calli.

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TLS Online TPP Program

#Question id: 37969

#Plant Biotechnology

Statement I: Cold treatment (3–6°C) helps in retarding the aging of the anther wall, thereby allowing more microspores to switch from gametophytic to sporophytic development.
Statement II: Maize responds best to standard cold treatment temperatures of 3–6°C rather than higher temperatures like 14°C

TLS Online TPP Program

#Question id: 37970

#Plant Biotechnology

Statement I: Hot treatment (e.g., 30°C for 24h) in Brassica stimulates embryogenesis by causing the dissolution of microtubules and displacement of the spindle.
Statement II: This thermal shock leads to normal division of the microspore nucleus.

TLS Online TPP Program

#Question id: 37971

#Plant Biotechnology

Statement I: Ethrel (2-chloroethylphosphonic acid) treatment increases haploid production by inducing multinucleated pollen grains.
Statement II: Pollen grains induced by Ethrel treatment are characterized by having a high density of starch grains.

TLS Online TPP Program

#Question id: 37972

#Plant Biotechnology

Statement I: Commitment to androgenesis is achieved mainly by the overexpression of pollen maturation ('late') genes.
Statement II: In wheat, the synthesis of a metallothionein-like protein during induction is regulated by Abscisic Acid (ABA).