木质素
碳循环
陆生植物
自行车
生态系统
陆地生态系统
环境科学
碳纤维
营养循环
生态学
营养物
植物
环境化学
生物
化学
材料科学
地理
林业
复合数
复合材料
作者
Thimo Klotzbücher,Anika Klotzbücher,Klaus Kaiser,Doris Vetterlein,Reinhold Jahn,Robert Mikutta
摘要
Abstract Current climate and land‐use changes affect regional and global cycles of silicon (Si), with yet uncertain consequences for ecosystems. The key role of Si in marine ecology by controlling algae growth is well recognized but research on terrestrial ecosystems neglected Si since not considered an essential plant nutrient. However, grasses and various other plants accumulate large amounts of Si, and recently it has been hypothesized that incorporation of Si as a structural plant component may substitute for the energetically more expensive biosynthesis of lignin. Herein, we provide evidence supporting this hypothesis. We demonstrate that in straw of rice ( Oryza sativa ) deriving from a large geographic gradient across South‐East Asia, the Si concentrations (ranging from 1.6% to 10.7%) are negatively related to the concentrations of carbon (31.3% to 42.5%) and lignin‐derived phenols (32 to 102 mg/g carbon). Less lignin may explain results of previous studies that Si‐rich straw decomposes faster. Hence, Si seems a significant but hardly recognized factor in organic carbon cycling through grasslands and other ecosystems dominated by Si‐accumulating plants.
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