Journal of Plant Ecology ›› 2025, Vol. 18 ›› Issue (2): 1-.DOI: 10.1093/jpe/rtaf019

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雌雄异株植物桑树的碳平衡对昼夜变化的性别特异性响应

  

  • 收稿日期:2024-12-02 接受日期:2025-02-06 出版日期:2025-04-01 发布日期:2025-06-04

Sex-related adaptive responses in the carbon balance to diurnal variation in the dioecious species Morus alba

Xudong Huang1,2, Yixia Wang2, Yaman Wang2, Meijing Yan2, Chunyan Zhang2, Xiao Xu2,*, and Tingfa Dong1,*   

  1. 1State Key Laboratory for Vegetation Structure, Functions and Construction (VegLab), Ministry of Education Key Laboratory for Transboundary Ecosecurity of Southwest China, and Yunnan Key Laboratory of Plant Reproductive Adaptation and Evolutionary Ecology, Institute of Biodiversity, School of Ecology and Environmental Science, Yunnan University, Kunming 650500, China
    2Key Laboratory of Southwest China Wildlife Resources Conservation, Ministry of Education, School of Life Science, China West Normal University, Nanchong 637002, Sichuan, China

    *Corresponding authors: E-mail: dtf@ynu.edu.cn (T.D.); xuxiao_cwnu@163.com (X.X.)
  • Received:2024-12-02 Accepted:2025-02-06 Online:2025-04-01 Published:2025-06-04
  • Supported by:
    National Natural Science Foundation of China (32171750, 32281523118, 32101258) and Yunnan Fundamental Research Project (202401BF070001-003).

摘要: 植物响应昼夜环境变化的碳平衡过程对其生长和存活至关重要。尽管已有研究观察到多种雌雄异株植物的光合作用对环境胁迫存在性别特异性响应,但雌雄个体碳平衡的昼夜动态特征仍不明确。本研究分析了桑树(Morus  alba)雌雄幼苗的光合速率(A)、暗呼吸速率(Rd)、A/Rd比值以及非结构性碳水化合物(NSC)的浓度、总量和分配的昼夜变化。结果发现,雄株在09:00时A值最高,而雌株在13:00时ARd值最高;雄株在09:00的A高于雌株,但在13:00的Rd低于雌株;雄株A/Rd比值整体高于雌株。雄株NSC浓度峰值出现时间早于雌株,且全株、叶片和树皮中的NSC浓度与储量在多数时间点显著高于雌株。NSC分配平均值为叶片>根系>树皮≈树干,但其昼夜动态变化在雌株中更为显著。桑树幼苗的碳平衡过程对昼夜变化表现出性别特异性反应,雌株对这些变化的敏感性更强。本研究首次在木本植物中揭示此类响应机制,建议未来陆地植物碳循环模型应考虑植物性别因素。

关键词: 碳分配, 昼夜节律, 雌雄异株植物, 非结构性碳水化合物, 性别二态性

Abstract: The carbon balance processes of plants in response to diurnal environmental changes are critical for their growth and survival. While sex-specific responses in photosynthesis to environmental stress have been observed in several dioecious plant species, the diurnal dynamics of carbon balance in male and female individuals remain unexplored. Here, we investigated the diurnal variations of photosynthetic rate (A), dark respiration rate (Rd), A/Rd, and the concentration, pool, and allocation of nonstructural carbohydrates (NSC) of male and female mulberry (Morus alba) seedlings. Males exhibited the highest A at 09:00, while females had the highest A and Rd at 13:00. Male A was higher than female A at 09:00, whereas male Rd was lower than female Rd at 13:00. The A/Rd was higher in males than in females. The peak of NSC concentration in males was earlier than in females, and the NSC concentration and storage in the whole plant, leaves and bark were generally higher in males than in females across most time points. The average NSC allocation followed the leaves > roots > bark ≈ trunk trend, but its dynamic changes over the daily cycle were more pronounced in females than in males. These findings suggest that carbon balance processes in mulberry seedlings exhibit sex-specific responses to diurnal changes, with females displaying greater sensitivity to these variations. This study provides the first attempt to explore such responses in woody plants and suggests that future carbon cycle models for terrestrial plants should incorporate plant sex.

Key words: carbon allocation, circadian rhythm, dioecious plant, nonstructural carbohydrates, sexual dimorphism