Skip to main content
Fig Marguerites
Photo: Sara Cervera

Fig Marguerites

9 ingredients 1 steps fandom
Share this recipe

Estimated Nutrition (whole recipe, rough)

227
Calories
7g
Protein
11g
Fat
24g
Carbs

Counts 5 of 8 ingredients — the other 3 aren't in our nutrition table and contribute nothing above, so the real totals are higher.

What these numbers assume — 5 portions →
Ingredient Portion assumed kcal
Egg 1 large egg (50g) 78
Cream 1 tbsp (15ml) heavy 51
Sugar 1 tbsp (12.5g) granulated 49
Fig 1 medium (50g) 37
Vanilla 1 tsp extract (4ml) 12
Water not in our table 0
Pastry not in our table 0
Marshmallow not in our table 0

Totals for the whole recipe, adding one typical portion per ingredient — listed above. Quantities in the recipe are not counted, so this is a rough guide only — not suitable for medical or dietary planning.

Ingredients

  • =
  • Put in top of double boiler
  • 7/8 cup sugar and
  • 3 tablespoons water. Stir until sugar is dissolved as much as possible. There will still be small sugar crystals remaining. Wash sugar crystals from inside of double boiler with pastry brush dipped in cold water. Add
  • 1 egg white, unbeaten. Place over hot water and cook, beating constantly with egg beater for 7 to 12 minutes or until mixture will hold its shape. Add
  • 1 tablespoon marshmallow cream and
  • ¼ teaspoon vanilla, and fold over and over until again stiff enough to hold its shape. Add
  • 1/3 cup (3) figs cut in small pieces. Pile on
  • =

Directions

1

To prepare this Fig Marguerites Recipe, first small round crackers and bake at 375 degrees F. for 10 minutes or until delicately brown. This rule will cover 3 dozen small crackers. Should frosting be too soft to hold its shape after adding marshmallow cream, it may be again placed over hot water, and folded gently over and over, until it becomes slightly granular around the edges. Remove from hot water, and continue folding over gently until of the desired stiffness.

Recipe sourced from fandom

Curious what else pairs well?

Use our flavor tools to explore molecular pairings, find substitutes, and discover novel combinations.