The DlamiR156 ‐ DlaSPL60 ‐ DlaP5CS1 cascade directly regulates proline synthesis, conferring drought tolerance in Ma bamboo ( Dendrocalamus latiflorus Munro)

Drought stress disrupts cellular homeostasis and severely limits plant growth. Although proline accumulation is a major adaptive response to water deficit, how drought-responsive regulatory networks control proline biosynthesis in woody grasses remains poorly understood. Here, we combined genetic manipulation, molecular assays, and physiological analyses to investigate the function of the DlamiR156-DlaSPL60 module in Ma bamboo (Dendrocalamus latiflorus Munro). We show that DlamiR156 acts as a negative regulator of drought tolerance by repressing DlaSPL60 via transcript cleavage, whereas drought-induced reduction of DlamiR156 releases this repression; DlaSPL60 directly binds to the DlaP5CS1 promoter and activates its transcription, thereby promoting proline accumulation. Our findings establish a mechanistic link between the conserved miR156-squamosa promoter-binding protein-like regulatory module and proline biosynthesis in bamboo, providing new insights into how post-transcriptional regulation coordinates metabolic reprogramming during drought adaptation in perennial woody grasses.

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Publication Details

Journal
New Phytologist
Published
2026-09-01
DOI
https://doi.org/10.1111/nph.71542
Primary Topic
Plant Molecular Biology Research
Type
article
Field-Weighted Citation Impact
0.00

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article

The DlamiR156 ‐ DlaSPL60 ‐ DlaP5CS1 cascade directly regulates proline synthesis, conferring drought tolerance in Ma bamboo ( Dendrocalamus latiflorus Munro)

Yujun Wang, Junjie Xu, Qiang Zhu, Nannan Wang et al.
New Phytologist
Plant Molecular Biology Research
article

The DlamiR156 ‐ DlaSPL60 ‐ DlaP5CS1 cascade directly regulates proline synthesis, conferring drought tolerance in Ma bamboo ( Dendrocalamus latiflorus Munro)

Yujun Wang, Junjie Xu, Qiang Zhu, Nannan Wang, Wenjia Wang, Yang Cheng, Zihan Yan, Jinsong Zheng
article en

Abstract

Drought stress disrupts cellular homeostasis and severely limits plant growth. Although proline accumulation is a major adaptive response to water deficit, how drought-responsive regulatory networks control proline biosynthesis in woody grasses remains poorly understood. Here, we combined genetic manipulation, molecular assays, and physiological analyses to investigate the function of the DlamiR156-DlaSPL60 module in Ma bamboo (Dendrocalamus latiflorus Munro). We show that DlamiR156 acts as a negative regulator of drought tolerance by repressing DlaSPL60 via transcript cleavage, whereas drought-induced reduction of DlamiR156 releases this repression; DlaSPL60 directly binds to the DlaP5CS1 promoter and activates its transcription, thereby promoting proline accumulation. Our findings establish a mechanistic link between the conserved miR156-squamosa promoter-binding protein-like regulatory module and proline biosynthesis in bamboo, providing new insights into how post-transcriptional regulation coordinates metabolic reprogramming during drought adaptation in perennial woody grasses.

New Phytologist
Fujian Agriculture and Forestry University (CN)
National Natural Science Foundation of China, Natural Science Foundation of Fujian Province, National Key Research and Development Program of China
Clean water and sanitation
Openalex Percentile: Top 13%
Plant Molecular Biology Research
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The DlamiR156 ‐ DlaSPL60 ‐ DlaP5CS1 cascade directly regulates proline synthesis, conferring drought tolerance in Ma bamboo ( Dendrocalamus latiflorus Munro) — Yujun Wang, Junjie Xu, et al. · New Phytologist (2026) | TGRS Research Map | TGRS