共 3 条
Pigment Complex, Growth and Chemical Composition Traits of Boreal Sphagnum Mosses (Mire System "Ilasskoe", North-West of European Russia)
被引:1
|作者:
Shtang, Anastasiya
[1
]
Ponomareva, Tamara
[1
]
Skryabina, Alexandra
[1
]
机构:
[1] Russian Acad Sci, N Laverov Fed Ctr Integrated Arctic Res, Ural Branch, Nikolsky Ave 20, Arkhangelsk 163000, Russia
来源:
PLANTS-BASEL
|
2024年
/
13卷
/
17期
关键词:
genus Sphagnum;
linear increment;
productivity;
chemical composition;
elemental composition;
chlorophyll;
carotenoids;
WATER;
PEAT;
DESICCATION;
CHLOROPHYLL;
TOLERANCE;
PATTERNS;
PLANTS;
D O I:
10.3390/plants13172478
中图分类号:
Q94 [植物学];
学科分类号:
071001 ;
摘要:
Sphagnum mosses play a significant role in peat formation and carbon sequestration in mire ecosystems. It is critical to investigate the productivity and chemical composition of different Sphagnum species in order to assess their role in the global carbon cycle and potential in light of climate change. The data on productivity and growth characteristics during the growing season, group chemical composition and elemental composition at the beginning and end of the growing season, as well as aspects of the pigment complex operation, were collected for four Sphagnum species: Sphagnum lindbergii Schimp., S. fuscum (Schimp.) Klinggr., S. divinum Flatberg & K. Hassel, and S. squarrosum Crome. High cover density and productivity, low ability to decompose, and constancy of the pigment complex of S. fuscum reflect a high degree of adaptation to the specific conditions of ridges. A constant chemical composition of S. lindbergii during the growing season can be explained by stable conditions of hollows that allow it to maintain its metabolic processes, but the light conditions in hollows bring the reaction of the pigment apparatus of this species closer to shaded S. divinum and S. squarrosum. S. lindbergii and S. squarrosum contain more nitrogen than other species and have a greater ability to decompose.
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页数:15
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