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. Cyanobacteria |
d. Biparental inheritance |
| 2. Alfaalfa |
a. Plastid genome loss |
| 3. Rafflesia |
b. Secondary endosymbioants |
| 4. Haptophyta algae |
c. Phycobilisomes |
-
|
|
| 1. Cyanobaceria |
a. Plastid genome loss |
| 2. Alfaalfa |
c. Phycobilisomes |
| 3. Rafflesia |
b. Secondary endosymbiosis |
| 4. Haptophyta algae |
d. Biparental inheritance |
-
|
|
| 1. Cyanobacteria |
c. Phycobilisomes |
| 2. Alfa alfa |
d. Biparental inheritance |
| 3. Rafflesia |
a. Plastid loss |
| 4. Haptophyta algae |
b. Secondary endosymbiosis |
-
|
|
| 1. Cyanobacteria |
b. Secondary endosymbiosis |
| 2. Alfaalfa |
c. Phycobilisomes |
| 3. Rafflesia |
d. Biparental inheritance |
| 4. Haptophyta alga |
a. Plastid loss |
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.