TRIOPS LONGICAUDATUS 5000 eggs 100 capsule

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TRIOPS LONGICAUDATUS 5000 eggs 100 capsule Free shipping to worldwide

Triops longicaudatus (commonly called longtail tadpole shrimp, American tadpole shrimp or rice tadpole shrimp) is a freshwater crustacean of the order Notostraca, resembling a miniature horseshoe crab. It is characterized by an elongated, segmented body, flattened shield-like brownish carapace covering two thirds of the thorax and two long filaments on the abdomen. Triops refers to its three eyes, and longicaudatus refers to the elongated tail structures. Triops longicaudatus is found in freshwater ponds and pools, often in places where few higher forms of life can exist. Like its relative Triops cancriformis, the longtail tadpole shrimp is considered a living fossil because its basic morphology has changed little in the last 70 million years. Triops longicaudatus is one of the oldest animal species still in existence.

Triops longicaudatus is a member of the crustacean class Branchiopoda, which contains primarily freshwater animals with gills on their legs. The class Branchiopoda is divided into the subclasses Sarsostraca, containing fairy shrimp, and Phyllopoda, containing all other members (cladocerans, clam shrimps and the tadpole shrimps). The subclass name, literally meaning leaf-footed, is derived from their flat, leaflike appendages. Notostracans are placed in the infraclass Calamanostraca, which also contains the extinct kazacharthrans.


Triops longicaudatus is usually greyish-yellow or brown in color, and differs from many other species by the absence of the second maxilla. Apart from Triops cancriformis, it is the only tadpole shrimp species whose individuals display as many as three reproductive strategies: bisexual, unisexual (parthenogenetic) and hermaphroditic; Triops cancriformis is easily recognizable by its yellow carapace with dark spots, whilst T. longicaudatus individuals have a uniform carapace. The species also appeared about 50 million years later, and, as its name suggests, its elongated tail structures are often nearly as long as the rest of the body, which has been recorded to reach 5 cm (2 in) in length.
External anatomy of Triops longicaudatus. The head of Triops longicaudatus is typical of crustaceans and consists of five segments, but there is a tendency to reduction of cephalic appendages. The trunk is not distinctly divided into thorax and abdomen. Most trunk segments bear appendages.Zoologists find it difficult to decide where the thorax stops and the abdomen begins; the debate is seemingly endless. The first 11 trunk segments each bear a single pair of limbs. They are followed by segments that are fused similarly to those of millipedes, and as a result, each segment bears up to six pairs of limbs. The trunk ends with a region of limbless segments. Some zoologists consider the thorax to consist of the two regions with appendages, and the abdomen the region without appendages. Others believe the region of fused segments to be part of the abdomen.

There is a carapace present, but no cephalothorax, since no thoracic segment is fused with the head. The terms carapace and cephalothorax are often confused, but should not be. The carapace of crustaceans is a fold of the body wall of the fifth head segment.


The head bears a pair of dorsal compound eyes that lie close to each other, and are nearly fused together. The compound eyes are generally sessile (not stalked). In addition, there is a naupliar ocellus in between. The compound eyes are on the surface of the head, but the ocellus is deep within the head. All the eyes, however, are easily visible through the shell covering of the head. A distinct horizontal groove, known as the mandibular groove, marks the division between the anterior three head segments and the posterior two. Posterior to it is the cervical groove, marking the division between the head and the thorax.

On the ventral side of the head is a lenslike window, admitting light to the naupliar eye, which is aimed both dorsally and ventrally. The first antennae (antennules) are small, slender filaments on the ventral surface of the head, at about the same level as the eyes. The second antennae are similar and lie laterally to the first. They are nonfunctioning. The large, well-developed mandibles oppose each other across the ventral midline. The opposing surfaces bear strong brownish teeth. As the crustacean periodically opens and closes the mandibles the teeth move apart and close together. Of the usual crustacean head appendages, only the mandibles are well developed. In Triops longicaudatus, the larger second maxillae are absent, only maxillules being present.


The anterior thorax consists of 11 segments, each bearing a pair of appendages, called thoracopods or pereiopods. None of the thoracopods are modified into maxillipeds for feeding. The posterior thorax consists of 16-25 segments, incompletely separated to form rings. Each ring may consist of as many as six fused segments and bear up to six pairs of appendages (there are 54-66 limbs altogether).

Most of the thoracic appendages resemble each other but the first 11 pairs are best developed. There is a slight tendency to regional specialization and the first pair of legs is unlike the rest. It is an elongated, cheliped-like structure with a sensory function, while all the other appendages aid in feeding, respiration and locomotion. In females, the 11th pair of legs is modified into brood pouches. The many legs posterior to the 11th pair move the spent feeding and respiratory currents away.[4]

The posterior 5-14 rings at the end of the body do not bear appendages. At the end of the body is a pleotelson (fusion of the last abdominal segment and the telson) connected to long, multisegmented uropods.

Feeding behavior
The feeding method of tadpole shrimps is similar to that proposed for the ancestral crustacean. The anterior appendages (second pair to tenth pair) stir sediments and swirl muddy water into the wide, midventral food groove. The gnathobases (inward-facing lobes at the base of the leg) guide food anteriorly to the mouth. The large flat exopods (outward-facing lobes at the end of the leg) stir and lift the sediments. Fine silt particles and water escape easily, but large, coarse food particles are torn into smaller pieces by the blade-like, inward-facing lobes called endopods at the end of the leg.

Internal anatomy
The heart of tadpole shrimps is a long dorsal tube in the anterior 11 trunk segments. It has a pair of ostia in each of these segments. Hemoglobin is sometimes present in the blood and the crustacean may be pink as a result. The excretory organs are the paired maxillary glands, located on the segment of the second maxilla. The long looped ducts of these glands can be seen in the carapace. The role of the maxillary glands is primarily osmoregulatory. Nitrogen, in the form of ammonia, is lost by diffusion across the gill surfaces.

Reproduction and development

Triops longicaudatus displays several reproductive strategies. Individuals may reproduce sexually, but this is rare, as most populations are highly male- or female-biased. Parthenogenesis (development from unfertilized eggs) is the most common reproductive strategy. Some populations, however, consist of hermaphrodites who fertilize each other. It has been noted that different populations display different strategies or combinations of strategies, and may therefore be considered separate species or subspecies in the future.

In females, the eleventh pair of legs is modified into egg sacs, where the eggs are carried for several hours. The eggs are released in batches and have a thick shell and can stand freezing temperatures as well as drought, enabling the population to survive from one season to the next. The eggs have to dry out completely before being submerged in water again in order to successfully hatch; they may remain in a state of diapause for up to 20 years. These eggs may have helped Triops longicaudatus, as well as other notostracans, to survive the natural disasters that may have killed the dinosaurs 65 million years ago.

Life cycle

A typical vernal pool during the wet season. Another vernal pool, this one dried out.

A tadpole shrimp digging in sand. At right an exuvia can be seen.To complete their lives, tadpole shrimps depend on the changing nature of the temporary waters they inhabit. During the dry season (summer and fall), they stay inside the eggs. As the pool fills with rainwater during the winter and spring, they hatch and feed on fairy shrimps and other invertebrates. The first larval stage (the metanauplius) is orange in color. It has a single eye and six legs, and develops through instars (growth stages). Each instar ends with shedding the exoskeleton. The number of segments and appendages increases as Triops grow, and they slowly change to greyish-brown. In approximately eight days, they reach maturity and lay eggs. Adult Triops die as the pools dry up. Triops generally live for about 20-90 days if the pool doesn’t dry up.

How to Care the Triops
1. Fill your tank with about 1 litre (1/4 of gallon) distilled or bottled spring water. Make sure the water is 22 degrees Celsius (73 degrees Farenheit) and there is a light before adding the eggs. Put a piece of black paper behind the tank. If you bought a kit and it came with detritus, follow the instructions and add this.

2. Stir in your packet of triop eggs and wait for at least 18 hours. After this time, look closely at the tank. You should be able to see little white specks swimming over the black backround. Some of these are your triops! The other creatures (Fairy Shrimp, Cyclops, Water Fleas, etc.) will probably be eaten by the triops, so don’t worry.

3. Wait another 3 days AFTER the majority of triops have hatched. After that waiting period, you can raise the water temperature to 25 degrees Celsius (77 degrees Farenheit)and have them on a day/night schedule. Feed them the food the kit gave you or use tropical fish pellets, not goldfish pellets. Crush them between two spoons, then add half of this to the tank.

4. Continue to feed once a day till they are 5 days old,then they eat 2-3 times a day. At 7 days and over, feed them a full pellet to each triops 2-3 times a day. Keep feeding till they don’t eat anymore, then take out the excess food they don’t eat. Have fun!

Don’t be disheartened if you can’t see triops after 18 hours. Have patience.
Be careful not to overfeed your triops, as this will make the water cloudier and disgusting. In addition, over feeding will drastically reduce the oxygen levels, meaning your triops will not grow and die, so clean that tank!
Cleaning the tank: Triops naturally live in puddles, so they don’t need clean water like aquarium fish. However, you can change the water after a week so the water doesn’t get too dirty or smelly.
Carefully pour away half the tank. Then top up with the water you have chosen at the same temperature as the tank your triops are in. This can be repeated several times if you aren’t satisfied with the clarity of the water. Make sure it’s the same water you used before.
Always wash your hands after handling the tank. They swim in their own crap, and are covered in bacteria and fungi!
Put in some sand or small gravel after 11 days with your triops so they can burrow and lay eggs in the substrate, but you don’t have to as they lay 10-30 eggs a day!
Try to use distilled or spring water. *Don’t use tap water as councils add chemicals like fluoride and chlorine to it. Although this is good from a human’s point of view, it’s not for triops!
Another major problem with tap water from some localities is the dissolved minerals it may contain. These salts can be a mixture of calcium, magnesium and sodium with less quantities of other minerals. These have been proven to reduce hatching in triops. When choosing water, it is advisable to obtain water that is as pure as possible and free from bacteria. Demineralised water (also known as de-ionised) is recommended. It is commonly available from supermarkets for putting in irons and topping up car batteries, as the previously mentioned salts found in tap water can damage these items as well. There are now many drinking waters available that are relatively pure. Simply refer to the bottles label to find out what is in it and avoid ones that contain any chlorine, chloromine or ozone.

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