Multiple choice

Match the columns ||| |---|---| |Side A|Side B| |1. Cyanobacteria|a. Plastid loss| |2. Alfaalfa|b. Secondary endosymbiosis| |3. Rafflesia|c. Phycobilisomes| |4. Haptophyta algae|d. Biparental inheritance|

  1. 1. Cyanobacteria d. Biparental inheritance
    2. Alfaalfa a. Plastid genome loss
    3. Rafflesia b. Secondary endosymbioants
    4. Haptophyta algae c. Phycobilisomes
  2. 1. Cyanobaceria a. Plastid genome loss
    2. Alfaalfa c. Phycobilisomes
    3. Rafflesia b. Secondary endosymbiosis
    4. Haptophyta algae d. Biparental inheritance
  3. 1. Cyanobacteria c. Phycobilisomes
    2. Alfa alfa d. Biparental inheritance
    3. Rafflesia a. Plastid loss
    4. Haptophyta algae b. Secondary endosymbiosis
  4. 1. Cyanobacteria b. Secondary endosymbiosis
    2. Alfaalfa c. Phycobilisomes
    3. Rafflesia d. Biparental inheritance
    4. Haptophyta alga a. Plastid loss
Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

This is the correct match. Phycobilisomes are found in plastids of cyanobacteria, Alfaalfa show bi-parental inheritance of plastids. In Rafflesia plastid, genome loss was evidenced in 2014 and Haptophyta algae have complex plastids derived by secondary endosymbiosis of a red alga.