Brown algae in the middle hot spring can grow with geothermal energy and minerals in water. This ecological circle bears the producer niche.

Stone-sucking insects are similar in shape to corals, but they belong to autotrophic animals, and they also belong to producer niche in this ecosystem.
Red jellyfish suck the food of stone worm larvae, while hydra eat hot springs and brown algae, occupying the niche of primary consumers.
Finally, red jellyfish, stone-sucking larvae and hydrozoa are the top consumers in this ecosystem.
Those microbes bear the decomposer niche.
However, the fluorescing fungi do not seem to adapt to this environment, and no fluorescing fungi have been found in this ecosystem.
It is also expected that in a series of studies, fluorescent fungi will not reproduce in a closed liquid water environment
That is to say, fluorescent fungi don’t like the marine environment. They like the environment to be relatively wet on the surface, but not too wet.
In the hundreds of surveys on the surface of Mars, federal scientists found that the areas where fluorescent fungi grow are often ground gullies, ravines, fault valleys and other areas.
They usually hide 35~5 meters from the surface to the ground, and when the sun is strongest at noon in summer, hyphae will emerge for photosynthesis.
There is nothing wrong with fluorescent fungi. They have organelles similar to chloroplasts, which is one of their means.
The reproduction for fluorescing fungi is the deep water absorbed by the hyphae when the sunshine is fierce at noon every summer. On one side, a tan carpet grows on the surface for photosynthesis.
However, photolysis of fluorescent fungi does not produce oxygen.
Their photosynthetic mode is to absorb carbon dioxide in the Martian atmosphere and generate organic matter and oxygen by weak solar energy.
This is the first step.
When organic matter and oxygen are produced, the fluorescent fungi do not directly release oxygen, but continue to absorb sulfur dioxide and methane in the gas, which is similar to the oxidation reaction and consumes oxygen.
Fluorescent fungus is a kind of self-produced, self-selling and autotrophic organism.
After all, the ecological environment on the surface of Mars is very bad, and many microorganisms have evolved unique abilities to realize gene continuation.
If you really want to be like the Blue Star Ecosphere, the Martian microbes are estimated to be finished.
Not a large number of producers and consumers of Martian microorganisms can choose the production mode of self-production and self-marketing to become autotrophic organisms.
While Huang Kaixuan, Zhang Maosheng and others were busy studying the drilling data of No.15 probe.
Next door, the crew responsible for the Mars 33 probe also exhibited the drilling industry in the middle section of the Mariner Grand Canyon.
Mars-33 probe is the heaviest one launched to Mars at present, weighing 536 tons, and all kinds of instruments and equipment are also very advanced.
This probe was only launched from the lunar area last month.
Although the No.33 detector crew also wants to conduct an extreme drilling to see if the formation of Mariner Grand Canyon is similar to the hot spring ecosystem.
However, the work arrangement of No.33 detector has not yet reached the final stage, and it is not yet possible to carry out extreme drilling.
After all, in case the drill bit gets stuck in the rock stratum or the machine fails during drilling, this detector will be half useless.
Therefore, probe 33 can now do some shallow surface drilling.
When that crew of detector No.33 was tal in various ways
Suddenly the detector radiator sent out an automatic alarm signal through the sensor.
Because Mars is too far away from Blue Star and the communication delay is long, the super brain emergency system started the radiator of the nuclear reserve pool and sent a feedback message to the Mars low earth orbit communication relay satellite.
The relay satellite forwards the feedback information back to Blue Star.
Ten minutes have passed by when the blue star crew of detector 33 received this feedback.
"Huh?" One leng, the workers carefully read the feedback information and then informed the group leader Wang Anmin.
Wang Anmin looked at the feedback information from the page, and the information was puzzled. He turned his head and asked.
"Haitao, what do you think?"
Chang Haitao, a mechanical engineer in the group, also looked puzzled. "Why did the nuclear pool radiator suddenly break down?" This is a high-performance hot material manufacturing, which is logically equivalent to pure mechanical equipment, and it is difficult to break down. "
As Chang Tan said.
There are no precise mechanical parts and no components in the radiator body made of hot materials.
According to the statistics of the Ministry of Space, the radiator failure did not happen once.
This abnormal situation caused the No.33 detector team to pay great attention to it and re-check the No.33 detector through remote control; On the other hand, inform the radiator manufacturer, Dragon Totem Company, to ask Dragon Totem Company to send engineers.
Fourteen hours later, Dragon Totem Company dispatched five engineers from Texas Branch to arrive at Dasha Space City in Australia by plane.
After coming to Dasha Space City, the group went straight to the office of the Mars 33 detector crew.
There is not much exchange of pleasantries between the two sides, and immediately get to the point.
Five engineers have actually analyzed the phase data sent by the engineering team during the flight, but they are also at a loss.
After all, this kind of equipment with pure mechanical structure is often difficult to break down, although the technology of thermal composite radiator is very high, and the nano-level processing technology is adopted.
However, the life of this integrated composite layer will not be less than 15 years even if it is exposed to solar radiation.
What’s more, Mars still has a weak atmosphere and is far away from the sun. The radiation intensity is not too strong.
If the nanostructure is destroyed due to long-term radiation, it is indeed possible that the heat dissipation performance of thermal materials will be degraded.
However, there are no problems with dozens of artificial satellite surface radiators in Mars near-earth orbit and synchronous orbit, and it is impossible to radiate less. The Mars surface detector will malfunction due to radiation.