Microplastics found in fish stocks from North and Baltic Seas

environmentmarine lifemarine conservationoceanmicroplastics

Seabirds aren't the only animals that are threatened by the bane of microplastics. In two separate studies, scientists at the Alfred Wegener Institute, Helmholtz Centre for Polar and Marine Research (AWI) have shown that other organisms and plants are also affected.

Discarded plastic materials become weathered down by the elements over time. Through sunlight, ultraviolet rays, wind and waves, it breaks down into smaller fragments. Once these fragments are smaller than five millimetres, they are known as microplastics, which are found in practically every ocean in the world today.

As the scientists at AWI explore the quantity and spread of microplastics in the sea, they come across evidence of their impact on marine life and the ecosystem. Two of their recent studies have identified specific groups of organisms and plants that are affected by microplastics.

Mackerel mistake microplastics as prey

In one of the studies, they examined the stomach contents of 290 mackerel, flounder, herring, cod and righteye flounders taken from the North and Baltic Seas. They discovered that the mackerel consumed more plastics than those fish that spent more time close to the seafloor, like flounder and yellowfin sole. In addition, the mackerel consumed microplastics 13 to 30 percent more of the time, depending on where they had been caught.

On the other hand, herring had no microplastics in their system during certain seasons. "The reason for that may have to do with the feeding behaviour of the fish," said Dr Gunnard Gerdts, AWI biologist and lead author of the study.

Elaborating, Dr Gerdts explained that the mackerel may have mistaken the microplastics floating on the water surface for prey, particularly newly-born pipefish, which are commonly found at the water surface, and are somewhat similar in shape and colour to microplastics.

Currently, little is known about the effects of microplastic consumption in fish. Nevertheless, Dr Gerdts described a cod which had an approximately 50cm rubber band in its stomach. Because it had been unable to spit it out, the fish had starved to death. Could swallowing microplastics also have such serious consequences in fish? According to Dr Gerdts, their own study at least had not shown any indication of this possibility.

Microplastics on seaweed, eaten by sea snails

the kelp forest.

Gutow said that it was surprising that rocky coasts and the organisms that live there have hardly been studied for microplastics, as it is in such places that the larger plastic pieces are grated into smaller particles.

"Our experiments show that microplastic particles adhere particularly well to the structured and sticky surface of bladderwrack," said Gutow.

To check on this assumption, the researchers studied seaweed samples and snails taken from the North Sea coast. First, they investigated how much microplastic particles had been deposited on the surface of the bladderwrack. Then, they attached fluorescent plastic fragments to the seaweed and fed the seaweed to the snails.

The results showed that the higher the concentration of microplastics in the water, the more particles were found on the surface of the algae. However, there was no trace of the flourescent particles in the snails' tissues or bloodstream.

According to Gutow, scientists had so far focussed their attention on endangered species, particularly those that burrowed through the seabed or lived in filtered seawater. His research has shown that the range of species affected by microplastics is much larger, covering marine herbivores as well; in addition, the environment and creatures of the rocky coasts need to be taken into account as well.


이 기사는 자동 번역되었으며 약간의 오류가 포함될 수 있습니다. 의심스러운 점이 있으면 원문 영어 버전을 참조하십시오.

더

Scuba Diving for Veterans: How Diving for All Supports Healing After Trauma
AI KB

재향군인을 위한 스쿠버 다이빙: ‘다이빙 포 올(Diving for All)’이 트라우마 치유에 어떻게 기여하는가

독일의 ‘Diving for All’ 이니셔티브와 SSI Classified Diving을 통해 재향 군인을 위한 스쿠버 다이빙이 어떻게 자신감과 유대감을 높이는 데 도움이 되는지 알아보세요.

CREMA
Sea Turtle Research: Three Days in the Gulf of Papagayo, Costa Rica
AI KB

바다거북 연구: 코스타리카 파파가요 만에서의 3일

코스타리카 파파가요 만에서 진행된 바다거북 연구 3일간의 여정을 따라가 보세요. 태그 부착과 모니터링부터 현장 데이터 수집까지의 과정을 살펴보세요.

zoggs
Swimming Endurance: How to Swim Longer Without Getting Exhausted
AI KB

수영 지구력: 지치지 않고 더 오래 수영하는 방법

더 나은 페이스 조절, 호흡법, 테크닉, 인터벌 트레이닝, 회복법을 통해 수영 지구력을 향상시켜 피로감 없이 더 오래 수영할 수 있도록 하세요.

Overhead Environment Diving: New SSI Cavern & Mine Programs
AI KB

오버헤드 환경 다이빙: 새로운 SSI 동굴 및 광산 프로그램

SSI 동굴 다이빙(Cavern Diving) 및 Limited Mine Diving을 통해 일광 구역 스킬, 기체 계획, 훈련 과정을 포함한 오버헤드 환경 다이빙을 탐험해 보세요.

iStock-MadKruben
Weirdest Sea Creatures: 8 Ocean Oddballs That Look Unreal
AI KB

가장 기이한 해양 생물: 믿기 힘들 정도로 기묘한 바다의 괴짜 8가지

새총처럼 튕겨 나오는 턱을 가진 고블린 상어부터 투명한 머리를 가진 물고기, 헤엄치는 해삼에 이르기까지, 가장 기묘한 해양 생물 8종을 만나보세요.