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Direct and Indirect Effects of UV-B Exposure on Litter Decomposition: A Meta-Analysis

机译:UV-B暴露对凋落物分解的直接和间接影响:荟萃分析

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摘要

Ultraviolet-B (UV-B) exposure in the course of litter decomposition may have a direct effect on decomposition rates via changing states of photodegradation or decomposer constitution in litter while UV-B exposure during growth periods may alter chemical compositions and physical properties of plants. Consequently, these changes will indirectly affect subsequent litter decomposition processes in soil. Although studies are available on both the positive and negative effects (including no observable effects) of UV-B exposure on litter decomposition, a comprehensive analysis leading to an adequate understanding remains unresolved. Using data from 93 studies across six biomes, this introductory meta-analysis found that elevated UV-B directly increased litter decomposition rates by 7% and indirectly by 12% while attenuated UV-B directly decreased litter decomposition rates by 23% and indirectly increased litter decomposition rates by 7%. However, neither positive nor negative effects were statistically significant. Woody plant litter decomposition seemed more sensitive to UV-B than herbaceous plant litter except under conditions of indirect effects of elevated UV-B. Furthermore, levels of UV-B intensity significantly affected litter decomposition response to UV-B (P<0.05). UV-B effects on litter decomposition were to a large degree compounded by climatic factors (e.g., MAP and MAT) (P<0.05) and litter chemistry (e.g., lignin content) (P<0.01). Results suggest these factors likely have a bearing on masking the important role of UV-B on litter decomposition. No significant differences in UV-B effects on litter decomposition were found between study types (field experiment vs. laboratory incubation), litter forms (leaf vs. needle), and decay duration. Indirect effects of elevated UV-B on litter decomposition significantly increased with decay duration (P<0.001). Additionally, relatively small changes in UV-B exposure intensity (30%) had significant direct effects on litter decomposition (P<0.05). The intent of this meta-analysis was to improve our understanding of the overall effects of UV-B on litter decomposition.
机译:凋落物分解过程中的紫外线-B(UV-B)暴露可能会通过改变凋落物中光降解或分解剂的状态而对分解速率产生直接影响,而生长期中的紫外线-B暴露可能会改变植物的化学组成和物理特性。因此,这些变化将间接影响土壤中后续的凋落物分解过程。尽管可以进行UV-B暴露对凋落物分解的正面和负面影响(包括没有可观察到的影响)的研究,但仍无法解决导致充分理解的全面分析。通过对六个生物群落的93项研究的数据,该介绍性的荟萃分析发现,升高的UV-B直接将垃圾分解率提高了7%,间接提高了12%,而衰减的UV-B直接将垃圾分解率降低了23%,并间接增加了垃圾分解率提高了7%。但是,正面和负面影响均无统计学意义。木本植物凋落物分解似乎比草本植物凋落物对UV-B更为敏感,除了在升高的UV-B间接影响的条件下。此外,UV-B强度水平显着影响垃圾对UV-B的分解反应(P <0.05)。 UV-B对凋落物分解的影响在很大程度上与气候因素(例如MAP和MAT)(P <0.05)和凋落物化学性质(例如木质素含量)(P <0.01)加在一起。结果表明,这些因素可能与掩盖UV-B在垃圾分解中的重要作用有关。在研究类型(田间实验与实验室培养),凋落物形态(叶与针)和腐烂持续时间之间,未发现UV-B对凋落物分解的显着差异。 UV-B升高对凋落物分解的间接影响随着腐烂持续时间的增加而显着增加(P <0.001)。此外,UV-B暴露强度的相对较小变化(30%)对凋落物分解具有显着的直接影响(P <0.05)。这项荟萃分析的目的是增进我们对UV-B对垃圾分解的总体影响的理解。

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