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◆ International journal of molecular sciences2026-08-31

Physiological and Transcriptomic Analysis of Shading Stress Responses in Calamus viminalis Seedlings.

Benxue Chen, Qiang Wu, Yuanyuan Du, Xiao Wei, Yanbing Li, Guanglu Liu

原始摘要(英文原文)· Original abstract
Light critically limits rattan seedling establishment. To elucidate adaptive mechanisms of Calamus viminalis under varied light, we conducted a 360-day pot experiment with four shading levels (0%, 20%, 50%, 75%), integrating morphological, physiological, antioxidant, and RNA-seq analyses. Moderate shading (20%) maximized seedling height (46.97 cm) and ground diameter (12.46 mm), increased net photosynthetic rate by 57.92% versus full light, and raised soluble protein/sugar while minimizing MDA and proline-indicating the lowest oxidative damage. Severe shading (75%) suppressed carbon fixation, reduced antioxidant enzymes, aggravated lipid peroxidation, and drastically lowered survival. Transcriptomics revealed intensity-dependent reprogramming: moderate shading activated phenylpropanoid/flavonoid defense pathways; severe shading upregulated photosynthesis/ribosomal genes but constrained overall carbon flux. Four core pathways (photosynthesis, hormone signaling, phenylpropanoid metabolism, carbon metabolism) coordinated shade responses-BR signaling upregulated (shade avoidance) while ABA downregulated under low light; light deprivation globally downregulated LHCB1 and rbcL, impairing capture/assimilation. We identify 20% shading as optimal for C. viminalis cultivation and reveal multi-level phenotype-physiology-molecule mechanisms, providing a theoretical basis for Calamus viminalis seedling nursery management under controlled nursery conditions.
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Physiological and Transcriptomic Analysis of Shading Stress Responses in Calamus viminalis Seedlings. — 科研速览 Science Skim