Chen Yun, Niu Shuai, Li Peikun, Jia Hongru, Wang Hailiang, Ye Yongzhong, Yuan Zhiliang
College of Forestry, Henan Agricultural UniversityZhengzhou, China.
College of Life Sciences, Henan Agricultural UniversityZhengzhou, China.
Front Plant Sci. 2017 May 26;8:874. doi: 10.3389/fpls.2017.00874. eCollection 2017.
Elucidating the major drivers of bryophyte distribution is the first step to protecting bryophyte diversity. Topography, forest, substrates (ground, tree trunks, roots, rocks, and rotten wood), and spatial factor, which factors are the major drivers of bryophyte distribution? In this study, 53 plots were set in 400 m along the elevation gradient in Xiaoqinling, China. All bryophytes in the plots were collected and identified. Regression analysis was used to examine the relationship between bryophyte and substrate diversity. We compared the patterns of overall bryophyte diversity and diversity of bryophytes found on the ground, tree, and rock along elevational gradients. Canonical correspondence analysis was applied to relate species composition to selected environmental variables. The importance of topography, forest, substrates, and spatial factors was determined by variance partitioning. A total of 1378 bryophyte specimens were collected, and 240 species were identified. Bryophyte diversity was closely related to substrate diversity. The overall bryophyte diversity significantly increased with elevation; however, the response varied among ground, tree, and rock bryophytes. Tree diversity and herb layer were considered important environmental factors in determining bryophyte distribution. Species abundance was best explained by stand structure (17%), and species diversity was best explained by stand structure (35%) and substrate (40%). Results directly indicated that substrate diversity can improve bryophyte species diversity. The effects of micro-habitat formed by stand structure and substrate diversity were higher than those of spatial processes and topography factors on bryophyte distribution. This study proved that the determinant factors influencing bryophyte diversity reflect the trends in recent forest management, providing a real opportunity to improve forest biodiversity conservation.
阐明苔藓植物分布的主要驱动因素是保护苔藓植物多样性的第一步。地形、森林、基质(地面、树干、树根、岩石和朽木)以及空间因素,哪些因素是苔藓植物分布的主要驱动因素呢?在本研究中,沿着中国小秦岭海拔梯度在400米范围内设置了53个样地。采集并鉴定了样地内所有的苔藓植物。采用回归分析来检验苔藓植物与基质多样性之间的关系。我们比较了沿海拔梯度的总体苔藓植物多样性以及在地面、树木和岩石上发现的苔藓植物多样性模式。应用典范对应分析将物种组成与选定的环境变量联系起来。通过方差分解确定地形、森林、基质和空间因素的重要性。共采集了1378份苔藓植物标本,鉴定出240个物种。苔藓植物多样性与基质多样性密切相关。总体苔藓植物多样性随海拔显著增加;然而,地面、树木和岩石苔藓植物的响应各不相同。树木多样性和草本层被认为是决定苔藓植物分布的重要环境因素。林分结构对物种丰富度的解释力最强(17%),林分结构(35%)和基质(40%)对物种多样性的解释力最强。结果直接表明,基质多样性可以提高苔藓植物物种多样性。林分结构和基质多样性形成的微生境对苔藓植物分布的影响高于空间过程和地形因素。本研究证明,影响苔藓植物多样性的决定因素反映了近期森林经营的趋势,为改善森林生物多样性保护提供了切实机会。