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Lignocellulose Mineralization by Arctic Lake Sediments in Response to Nutrient Manipulation

机译:营养处理对北极湖沉积物中木质纤维素的矿化作用

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摘要

Mineralization of specifically labeled 14C-cellulose- and 14C-lignin-labeled lignocelluloses by Toolik Lake, Alaska, sediments was examined in response to manipulation of various environmental factors. Mineralization was measured by quantifying the amount of labeled CO2 released from the specifically labeled substrates. Nitrogen (NH4NO3) and, to a greater degree, phosphorus (PO4?3) additions enhanced the mineralization of white pine (Pinus strobus) cellulose during the summer of 1978. Nitrogen and phosphorus together had no cumulative effect. During the summer of 1979, nitrogen or phosphorus alone had only a slight stimulatory effect on the mineralization of a sedge (Carex aquatilis) cellulose; however, together, they had a dramatic effect. This variable response of mineralization to nutrient addition between 1978 and 1979 was probably attributable to year-to-year variation in nutrient availability within the lake. Cellobiose addition and oxygen depletion inhibited the amount of pine cellulose mineralized. Whereas addition of nitrogen to oxygen-depleted treatments had limited effect, addition of phosphorus resulted in mineralizations equal to or greater than that of the controls. Nitrogen had no effect on mineralization of pine or Carex lignins. Phosphorus, however, inhibited mineralization of both lignins. With Carex lignin, the phosphorus inhibition occurred at a concentration as low as 0.1 μM. The antagonistic role of phosphorus in cellulose and lignin mineralizations may be of significance in understanding the increased proportion of lignin relative to cellulose in decomposing litter.
机译:响应各种环境因素的影响,检查了阿拉斯加Toolik Lake沉积物对特定标记的14C-纤维素和14C-木质素标记的木质纤维素的矿化作用。通过量化从特定标记底物释放的标记二氧化碳的量来测量矿化度。 1978年夏季,氮(NH4NO3)和磷(PO4?3)的添加增强了白松(Pinus strobus)纤维素的矿化作用。氮和磷在一起没有累积作用。 1979年夏季,仅氮或磷对莎草(Carex aquatilis)纤维素矿化的影响很小。但是,它们在一起产生了巨大的影响。 1978年至1979年间,矿化对养分添加的不同响应可能是由于湖中养分的可获得性逐年变化所致。纤维二糖的添加和氧气的消耗抑制了矿化的松树纤维素的量。在贫氧处理中添加氮的效果有限,而添加磷导致的矿化程度等于或大于对照。氮对松树或Carex木质素的矿化没有影响。然而,磷抑制了两种木质素的矿化。使用Carex木质素时,磷的抑制发生在低至0.1μM的浓度。磷在纤维素和木质素矿化中的拮抗作用可能对于理解木质素相对于纤维素在分解垫料中所占比例的增加具有重要意义。

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