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不同种质箬竹叶片性状变异及其对环境响应的研究
Variation in Leaf Traits among Different Indocalamus Germplasms and Their Responses to Environmental Factors
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摘要: 为探究不同种质箬竹叶片功能性状及生态化学计量特征的变异规律,揭示其对地理环境因子的适应机制,选取西南山地区域12份野生箬竹种质作为研究对象,采样范围覆盖重庆市渝东北大巴山、渝东南武陵山区以及陕西镇巴、湖南桑植等区域,包括11种箬竹及1份同种异地种质,采集成熟健康叶片,测定叶面积、比叶面积、叶干物质含量、叶形指数等功能性状,以及叶片碳、氮、磷含量及其化学计量比,并采用方差分析、相关分析、主成分分析和冗余分析解析性状变异及环境驱动机制。结果表明,不同箬竹种质叶片功能性状和化学计量特征均存在极显著差异。叶片功能性状中,叶面积变异幅度较大,最大变异系数为25.38%;比叶面积在种质间差异最为显著,叶形指数变异较小;化学计量特征中,碳含量最稳定,变异系数为0.33%~2.71%,磷含量变异较大,其中箬叶竹磷含量变异系数达到22.98%。不同种质间叶片性状差异明显,其中簝尖竹叶面积最大,鄂西箬竹最小;簝竹子碳含量最高,巫溪箬竹磷含量最高。相关分析表明,叶面积与比叶面积呈显著正相关,比叶面积与叶干物质含量呈显著负相关。冗余分析显示,海拔是影响箬竹叶片性状和化学计量特征的主要环境因子,解释度达到60.1%,与叶片碳氮磷含量及叶干物质含量升高呈正相关;气温升高则促进比叶面积和叶形指数增加。Abstract: To investigate the variation patterns in leaf functional traits and ecological stoichiometric characteristics among different Indocalamus germplasms and to elucidate their adaptive mechanisms to geographical environmental factors, 12 wild Indocalamus germplasms collected from mountainous regions of southwestern China were selected for this study. The sampling sites covered the Daba Mountains in northeastern Chongqing, the Wuling Mountains in southeastern Chongqing, as well as Zhenba County in Shaanxi Province and Sangzhi County in Hunan Province. The materials comprised 11 Indocalamus species and one conspecific germplasm originating from a different geographical population. Mature and healthy leaves were collected to determine leaf functional traits, including leaf area, specific leaf area, leaf dry matter content, and leaf shape index, as well as leaf carbon (C), nitrogen (N), and phosphorus (P) concentrations and their stoichiometric ratios. Analysis of variance, correlation analysis, principal component analysis, and redundancy analysis were employed to examine trait variation and the environmental drivers underlying these variations. The results showed that both leaf functional traits and ecological stoichiometric characteristics differed highly significantly among the Indocalamus germplasms (P<0.01). Among the leaf functional traits, leaf area exhibited relatively large variation, with a maximum coefficient of variation of 25.38%. Specific leaf area showed the most pronounced differences among germplasms, whereas leaf shape index exhibited relatively limited variation. Among the ecological stoichiometric characteristics, leaf C concentration was the most stable, with coefficients of variation ranging from 0.33% to 2.71%, whereas leaf P concentration showed relatively large variation, with the coefficient of variation reaching 22.98% in I. tessellatus. Marked differences in leaf traits were observed among germplasms. I. longiauritus exhibited the largest leaf area (271.70 cm2), whereas I. henryi had the smallest leaf area (45.83 cm2). I. hispidus showed the highest leaf C concentration (401.80 g kg−1), while I. wuxiensis exhibited the highest leaf P concentration (1.87 g kg−1). Correlation analysis revealed a significant positive correlation between leaf area and specific leaf area (P<0.05), whereas specific leaf area was significantly negatively correlated with leaf dry matter content (P<0.05). Redundancy analysis indicated that altitude was the primary environmental factor influencing leaf traits and ecological stoichiometric characteristics, explaining 60.1% of the variation, and was positively associated with increases in leaf C, N, and P concentrations and leaf dry matter content. In contrast, increasing temperature promoted increases in specific leaf area and leaf shape index.
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