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[耐荫植物金线莲对密植或光质调控引起的遮荫的形态和生理响应]

[Morphological and physiological responses to shading caused by dense planting or light quality modulation in shade-tolerant plant Anoectochilus roxburghii].

作者信息

Guo Xiao-Lei, Zhou Li-Chun, Li Ming-Jie, Zhang Zhong-Yi, Gu Li

机构信息

College of Bee Science and Biomedicine, Fujian Agriculture and Forestry University Fuzhou 350002, China Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, Fujian Agriculture and Forestry University Fuzhou 350002, China.

Key Laboratory of Ministry of Education for Genetics, Breeding and Multiple Utilization of Crops, Fujian Agriculture and Forestry University Fuzhou 350002, China.

出版信息

Zhongguo Zhong Yao Za Zhi. 2025 May;50(10):2648-2657. doi: 10.19540/j.cnki.cjcmm.20250217.101.

Abstract

The balance between growth and defense in response to nearby or canopy shading in heliotropic plants has been deeply understood. However, the adaptive traits developed by shade-tolerant plants through long-term evolution remain unclear. In this study, the typical shade-tolerant medicinal plant Anoectochilus roxburghii was used as the experimental material.(1) Different planting densities were set, including 8 cm(row spacing) × 8 cm(plant spacing), 6 cm × 6 cm, 4 cm × 4 cm, and 2 cm × 2 cm, to monitor the individual plant responses to nearby shading.(2) Different light environments, including blue light∶red light=3∶2(B3R2), blue light∶red light∶far-red light=3∶2∶1(B3R2FR1), blue light∶red light∶far-red light=3∶2∶2(B3R2FR2), and blue light∶red light∶far-red light=3∶2∶4(B3R2FR4), were set to monitor the morphological and physiological changes in plants in response to actual shading conditions. The results showed that:(1) Moderate increases in planting density helped optimize morphological traits such as stem diameter and leaf area. This not only slightly increased biomass but also significantly improved SOD activity in both leaves and stems, as well as lignin content in stems, thereby enhancing the plant's defense capabilities.(2) Increasing the far-red light in the light environment negatively regulated the plant height of A. roxburghii, which was contrary to the typical shade-avoidance response observed in heliotropic plants. However, it significantly enhanced SOD and POD activity in both stems and leaves, as well as lignin content in stems. Furthermore, it reduced the incidence and disease index of stalk rot, effectively defending against biotic stress. Therefore, the shade-tolerant plant A. roxburghii has specific adaptive strategies for shading conditions. Reasonable dense planting or light environment modulation can synergistically improve yield, medicinal quality, and resistance of A. roxburghii. This study provides a theoretical foundation and technical support for optimizing the regional deployment and cultivation strategies of ecological planting for Chinese medicinal materials.

摘要

向日性植物对附近或冠层遮荫的生长与防御之间的平衡已被深入了解。然而,耐荫植物通过长期进化形成的适应性性状仍不清楚。在本研究中,以典型的耐荫药用植物金线莲为实验材料。(1)设置不同种植密度,包括8厘米(行距)×8厘米(株距)、6厘米×6厘米、4厘米×4厘米和2厘米×2厘米,以监测单株植物对附近遮荫的反应。(2)设置不同光环境,包括蓝光∶红光 = 3∶2(B3R2)、蓝光∶红光∶远红光 = 3∶2∶1(B3R2FR1)、蓝光∶红光∶远红光 = 3∶2∶2(B3R2FR2)和蓝光∶红光∶远红光 = 3∶2∶4(B3R2FR4),以监测植物在实际遮荫条件下的形态和生理变化。结果表明:(1)适度增加种植密度有助于优化茎直径和叶面积等形态性状。这不仅使生物量略有增加,还显著提高了叶片和茎中的超氧化物歧化酶(SOD)活性以及茎中的木质素含量,从而增强了植物的防御能力。(2)在光环境中增加远红光对金线莲的株高有负向调控作用,这与向日性植物典型的避荫反应相反。然而,它显著增强了茎和叶中的SOD和过氧化物酶(POD)活性以及茎中的木质素含量。此外,它降低了茎腐病的发病率和病情指数,有效抵御了生物胁迫。因此,耐荫植物金线莲对遮荫条件具有特定的适应性策略。合理密植或调节光环境可以协同提高金线莲的产量、药用品质和抗性。本研究为优化中药材生态种植的区域布局和栽培策略提供了理论基础和技术支持。

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