J Plant Ecol ›› 2025, Vol. 18 ›› Issue (4): rtaf057.DOI: 10.1093/jpe/rtaf057

• Research Articles •    

Stem photosynthesis is an important factor in the regulation of biomass accumulation and allocation in Rosa chinensis

Hui-Ying Ye1, Zheng-Bing Yan2, Su-Hui Ma1, Xue-Mei Yang1, Chen Yang1, Dan-Hua Zhang1, Jiang-Ling Zhu1, Cheng-Jun Ji1,* and Jing-Yun Fang1   

  1. 1Institute of Ecology, College of Urban and Environmental Sciences, and Key Laboratory for Earth Surface Processes of the Ministry of Education, Peking University, Beijing 100871, China
    2State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China

    *Correspondence: Cheng-Jun Ji
    Email: jicj@pku.edu.cn
    Tel: +86 10 62765578
    Fax: + 86 10 62756560
  • Received:2024-09-04 Accepted:2025-04-15 Online:2025-05-17 Published:2025-08-01
  • Supported by:
    This work was supported by the National Natural Science Foundation of China (32271668) and the National Key R&D Program of China (2022YFF0802304).

茎光合作用调节月季生物量积累和分配

Abstract: Green stem photosynthesis is well known, but the effect of stem photosynthesis on plant growth and development remains uncertain. In this study, green stems of semiannual Rosa chinensis were subjected to a shading treatment to explore the effect of stem photosynthesis on the growth and biomass accumulation. The results showed that (1) Stem photosynthesis affected biomass accumulation and allocation in R. chinensis. The stem shading treatment decreased the biomass of R. chinensis by approximately 18.7%. The proportion of biomass allocated to the stems increased while the proportion of biomass allocated to the leaves and roots decreased. (2) Stem photosynthesis facilitates an increase in nonstructural carbohydrate concentration, chlorophyll a concentration and chlorophyll a/b of R. chinensis. (3) The net photosynthesis in the stems of R. chinensis was negative, and biomass accumulation was significantly positively correlated with the dark respiration rate in stems, indicating that stem photosynthesis fixed CO2 released internally by respiration. This study reveals that stem photosynthesis in R. chinensis enhances biomass accumulation by promoting chlorophyll fluorescence and dark respiration rates in the stems. Furthermore, stem photosynthesis contributes to the balanced allocation of biomass by enhancing the proportional distribution of biomass to leaves and roots.

Key words: Stem photosynthesis, Biomass accumulation, CO2 refixation, Rosa chinensis, Chlorophyll concentration, Nonstructural carbohydrates

摘要:
植物茎秆可进行光合作用,但茎光合作用对植物生长发育的影响尚不清楚。为此,本研究对半年生月季(Rosa chinensis)的茎部进行遮光处理,探讨了茎秆光合作用对其生长和生物量积累的影响。结果表明:(1)茎光合作用影响月季的生物量积累和分配。遮荫处理不仅使月季的生物量减少了约18.7%,还导致茎部生物量比例增加而叶片和根部生物量比例降低。(2)茎光合作用提高了月季非结构性碳水化合物浓度、叶绿素a浓度和叶绿素a/b比值。(3)月季茎净光合作用为负值,生物量积累与茎的暗呼吸速率显著正相关,这表明月季茎光合作用可重新固定呼吸作用释放于内部的CO2。上述研究表明,月季茎光合作用不仅可通过促进茎中的叶绿素荧光和暗呼吸速率来增强生物量积累,还可通过增加叶片和根部的生物量比例分布来维持生物量的分配平衡。

关键词: 茎光合作用, 生物量积累, CO2重吸收, 月季(Rosa chinensis), 叶绿素浓度, 非结构性碳水化合物