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藻类聚糖的结构和功能决定了它们在海洋中封存碳的能力。

Structures and functions of algal glycans shape their capacity to sequester carbon in the ocean.

作者信息

Bligh Margot, Nguyen Nguyen, Buck-Wiese Hagen, Vidal-Melgosa Silvia, Hehemann Jan-Hendrik

机构信息

Max Planck Institute for Marine Microbiology, Bremen, Germany; University of Bremen, MARUM Centre for Marine Environmental Sciences Bremen, Germany.

Max Planck Institute for Marine Microbiology, Bremen, Germany; University of Bremen, MARUM Centre for Marine Environmental Sciences Bremen, Germany.

出版信息

Curr Opin Chem Biol. 2022 Dec;71:102204. doi: 10.1016/j.cbpa.2022.102204. Epub 2022 Sep 22.

Abstract

Algae synthesise structurally complex glycans to build a protective barrier, the extracellular matrix. One function of matrix glycans is to slow down microorganisms that try to enzymatically enter living algae and degrade and convert their organic carbon back to carbon dioxide. We propose that matrix glycans lock up carbon in the ocean by controlling degradation of organic carbon by bacteria and other microbes not only while algae are alive, but also after death. Data revised in this review shows accumulation of algal glycans in the ocean underscoring the challenge bacteria and other microbes face to breach the glycan barrier with carbohydrate active enzymes. Briefly we also update on methods required to certify the uncertain magnitude and unknown molecular causes of glycan-controlled carbon sequestration in a changing ocean.

摘要

藻类合成结构复杂的聚糖以构建保护屏障——细胞外基质。基质聚糖的一个功能是减缓试图通过酶促作用进入活藻并将其有机碳降解并转化回二氧化碳的微生物。我们提出,基质聚糖不仅在藻类存活期间,而且在其死后,通过控制细菌和其他微生物对有机碳的降解,将碳锁定在海洋中。本综述中修订的数据显示海洋中藻类聚糖的积累,突出了细菌和其他微生物用碳水化合物活性酶突破聚糖屏障所面临的挑战。简要地说,我们还更新了在不断变化的海洋中确定聚糖控制的碳固存的不确定规模和未知分子原因所需的方法。

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