植物生态学报 ›› 2026, Vol. 50 ›› Issue (5): 0-.DOI: 10.17521/cjpe.2025.0114

• •    下一篇

豆科蝶形花总状花序面积的测量方法

李裕康, 李雨欣, 张喆, 唐艳鸿   

  1. 北京大学城市与环境学院, 北京 100871
  • 收稿日期:2025-03-27 修回日期:2025-09-19 接受日期:2025-09-22 出版日期:2026-05-20 发布日期:2026-07-25
  • 基金资助:
    国家重点研发计划项目(2022YFF0801802)

Measurement methods of raceme area in papilionoideae

LI Yu-Kang, LI Yu-Xin, ZHANG Zhe, TANG Yan-Hong   

  1. , College of Urban and Environmental Sciences, Peking University 100871,
  • Received:2025-03-27 Revised:2025-09-19 Accepted:2025-09-22 Online:2026-05-20 Published:2026-07-25
  • Supported by:
    National Key Research and Development Program Project(2022YFF0801802)

摘要: 本研究以五种豆科蝶形花亚科植物为研究对象,比较了总状花序的三种花序面积测定方法—全展开面积、柱面积和投影面积—之间的差异,并分析了面积指标与花序碳经济学相关性状及生理指标之间的关系,旨在为植物功能性状和繁殖策略分析提供方法学参考。研究结果表明:(1)三种测定方法所得数值存在显著差异,花序面积大小依次为:全展开面积>柱面积≈投影面积,线性回归结果表明任意两种面积间均呈现显著正相关(p<0.001),不同面积之间的关系分别为:投影面积(cm2)= 0.20 × 全展开面积(cm2);投影面积(cm2)= 0.67 × 柱面积(cm2);柱面积(cm2)= 0.27 × 全展开面积(cm2);(2)全展开面积和投影面积均与花序干重(p<0.001;p = 0.006)及总呼吸速率(p<0.001;p<0.001)显著正相关,而柱面积与花序干重、总蒸腾速率和总呼吸速率之间的相关性不显著(p>0.05)。从操作效率看,投影面积快速、简便、重复性高。综合考虑指标的简便性与代表性,本研究建议将投影面积作为豆科蝶形花总状花序面积的标准化测定指标。本研究不仅明确了不同面积指标之间的换算关系,也验证了投影面积在表征豆科蝶形花植物花序碳经济与代谢活动的有效性,为后续繁殖器官功能性状研究提供了可行路径。

关键词: 蝶形花亚科, 总状花序面积, 比花质量, 蒸腾作用, 呼吸作用

Abstract: Aims This study compares different inflorescence area measurement methods in Fabaceae (subfamily Papilionoideae), aiming to provide methodological references for studies on plant functional traits and reproductive strategies.
Methods Five species of Papilionoideae were selected as research subjects, and the differences among three measurement methods—fully unfolded area, column area, and projected area—were measured and analyzed, along with their correlations with carbon economics and physiological indicators.
Important findings The results demonstrate that: (1) Inflorescence areas obtained by different measurement methods is in the order of fully unfolded area > column area ≈ projected area. Linear regression reveals a significant positive correlation between any two types of areas (p < 0.001). The conversion equation for different areas is: projected area (cm2) = 0.20 × fully unfolded area (cm2); projected area (cm2) = 0.67 × column area (cm2); column area (cm2) = 0.27 × fully unfolded area (cm2); (2) Both fully unfolded area and projected area show significant positive correlations with inflorescence dry weight (p < 0.001; p = 0.006) and total respiration rate (p < 0.001; p = 0.006), whereas column area exhibits no significant correlation with inflorescence dry weight, total transpiration rate, or total respiration rate (p > 0.05). Projected inflorescence area can be measured easily and quickly using image-based methods, making it a convenient and highly repeatable indicator. We therefore recommend projected area as the preferred standard for quantifying inflorescence area. By establishing the conversion relationships between different area indices and verifying the effectiveness of projected area in representing carbon investment and metabolic activity in reproductive organs, this study provides a viable pathway for building trait databases and conducting comparative ecological analyses.

Key words: papilionoideae, raceme area, flower mass per area (FMA), transpiration, respiration