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生态学杂志 ›› 2026, Vol. 45 ›› Issue (3): 854-865.doi: 10.13292/j.1000-4890.202603.024

• 研究报告 • 上一篇    下一篇

套作条件下谢君魔芋(Amorphophallus xiei)光合能力及能量分配特征

马素芸1,2,3,岩所4,朱厚伟5,徐素素1,2,3,李丽华1,2,3,徐文果4,谢世清1,陈军文1,2,3*,寸竹1,2,3*   

  1. 1云南农业大学农学与生物技术学院, 昆明 650201; 2云南农业大学西南中药材种质创新与利用国家地方联合工程研究中心, 昆明 650201; 3云南农业大学云南省药用植物生物学重点实验室, 昆明 650201; 4德宏州农业技术推广中心(德宏州农业科学研究所), 云南芒市 678400; 5云南省宣威市利用外资办公室, 云南宣威 655499)

  • 出版日期:2026-03-10 发布日期:2026-09-01

Photosynthetic capacity and light energy allocation characteristics of Amorphophallus xiei under relay intercropping conditions.

MA Suyun1,2,3, YAN Suo4, ZHU Houwei5, XU Susu1,2,3, LI Lihua1,2,3, XU Wenguo4, XIE Shiqing1, CHEN Junwen1,2,3*, CUN Zhu1,2,3*   

  1. (1College of Agronomy and Biotechnology, Yunnan Agricultural University, Kunming 650201, China; 2National & Local Joint Engineering Research Center on Germplasm Innovation & Utilization of Chinese Medicinal Materials in Southwestern China, Yunnan Agricultural University, Kunming 650201, China; 3The Key Laboratory of Medicinal Plant Biology of Yunnan Province, Yunnan Agricultural University, Kunming 650201, China; 4Extension Center of Agricultural Technology of Dehong Prefecture, Mangshi 678400, Yunnan, China; 5Foreign Capital Utilization Office of Xuanwei City, Yunnan Province, Xuanwei 655499, Yunnan, China).

  • Online:2026-03-10 Published:2026-09-01

摘要: 通过研究套作在不同树龄橡胶林下(3年龄,3 a,林下透光率65%~75%,高光;5年龄,5 a,林下透光率30%~45%,中光;8年龄,8 a,林下透光率10%~15%,低光)谢君魔芋(Amorphophallus xiei)的光合特征、光合诱导特征、荧光特征以及能量分配,探究谢君魔芋在不同树龄橡胶林下对光照强度变化的响应和适应策略。结果表明:8 a下的谢君魔芋具有较小的光饱和点(LSP)、光补偿点(LCP)和较大的表观量子产额(AQY)、最大羧化速率(Vcmax),暗适应光诱导后达到最大净光合速率50%、90%所需的时间t50%At90%A相对较短,且诱导1、5、10 min时达到最大净光合速率的百分比IS1 minIS5 minIS10 min相对较大,另外,8 a下谢君魔芋的初始气孔导度(Gs-initial)相对较大,且Gs-initial与暗适应光诱导后达到最大净光合速率30%所需的时间(t30%A)、t50%At90%A呈负相关。5 a下谢君魔芋的最大净光合速率(Amax)比其他两个树龄生长下的高,CO2补偿点(Γ*)和最大电子传递速率(Jmax)较大,叶绿素荧光的非光化学淬灭(NPQ)和表观电子传递速率(ETR)较高。t30%A在3 a下相对较短,但5 a和8 a下的t50%At90%A比3 a相对较短。5 a和8 a下的谢君魔芋具有较大的非光化学淬灭途径比例(ФNPQ);当瞬间给予1500 μmol·m-2·s-1的高光时,荧光耗散途径比例(Фf,D)表现为迅速的小幅上升,而后减小并逐渐稳定,3 a下的Фf,D最大。表明阴生植物谢君魔芋在林下的光适应策略存在差异,在低光(透光率10%~15%)和中光(透光率30%~45%)下光合作用较强,光合诱导速率较快,且能够保持较高的羧化能力来利用光能,同时较强的热耗散能力能保护自身不受到光抑制;而光抑制是导致谢君魔芋在高光胁迫(透光率65%~75%)下无法正常生长的主要原因。


关键词: 林下套作, 光合特性, 能量分配, 谢君魔芋, 橡胶林

Abstract: To explore the adaptation strategies of Amorphophallus xiei to light intensity changes, we analyzed the photosynthetic characteristics, photosynthetic induction characteristics, fluorescence characteristics, and energy allocation of A. xiei under relay intercropping conditions in rubber plantations of different ages (3-year-old, with understory light transmittance of 65%-75%, high light; 5-year-old, with understory light transmittance of 30%-45%, medium light; 8-year-old, with understory light transmittance of 10%-15%, low light). The results showed that under the 8-year-old rubber plantation, A. xiei was characterized by lower light saturation point (LSP) and light compensation point (LCP), but higher apparent quantum yield (AQY) and maximum carboxylation rate (Vcmax). The time required to reach 50% and 90% of the maximum net photosynthetic rate after dark-adapted light induction (t50%A, t90%A) was relatively short, and the percentages to maximum net photosynthetic rate at 1, 5, and 10 minutes of induction (IS1 min, IS5 min, IS10 min) were relatively high. In addition, a higher initial stomatal conductance (Gs-initial) was observed in A. xiei under the 8-year-old plantation, with Gs-initial being negatively correlated with the time required to reach 30% of the maximum net photosynthetic rate after dark-adapted light induction (t30%A), t50%A and t90%A. The maximum net photosynthetic rate (Amax) under the 5-year-old plantation was higher than that under the other two aged plantations, along with a higher CO2 compensation point (Γ*) and maximum electron transfer rate (Jmax). Meanwhile, the non-photochemical quenching (NPQ) and apparent electron transfer rate (ETR) of chlorophyll fluorescence were higher. t30%A was relatively short under the 3-year-old plantation, while t50%A and t90%A were relatively shorter under both 5- and 8-year-old plantations. A larger proportion of light energy was allocated to non-photochemical quenching (ФNPQ) under 5- and 8-year-old plantations. When exposed to an instantaneous high light intensity of 1500 μmol·m-2·s-1, the proportion of light energy allocated to fluorescence dissipation (Фf,D) increased rapidly but slightly, then decreased and gradually stabilized. The highest Фf,D value was recorded under the 3-year-old plantation. It was demonstrated that the light adaptation strategies of A. xiei under the rubber plantation varied with light intensity. Under low light (transmittance 10%-15%) and medium light (transmittance 30%-45%) conditions, photosynthesis was stronger, the photosynthetic induction rate was faster, and A. xiei maintained a relatively high carboxylation capacity to utilize light energy. Meanwhile, a stronger thermal dissipation capacity of A. xiei protected itself from photoinhibition. In contrast, photoinhibition was identified as the main reason why A. xiei could not grow normally under high light stress (transmittance 65%-75%).


Key words: understory intercropping, photosynthetic performance, energy partitioning, Amorphophallus xiei, rubber plantation