Dendrocalamus strictus: a comprehensive synthesis of current knowledge and future research priorities
Dendrocalamus strictus:現在の知識と将来の研究優先事項の包括的統合 (AI 翻訳)
C.D. Sreedevi, Donald James, V. B. Sreekumar, Suma Arun Dev
🤖 gxceed AI 要約
日本語
インドの重要竹種Dendrocalamus strictusの包括的レビュー。高いバイオマス生産性、干ばつ耐性、炭素隔離能を持ち、荒廃地の回復や気候変動緩和に有望。組織培養による大規模植林が効率的で、他の竹種やチークを上回る炭素隔離能を示す。今後の研究課題として、開花メカニズムの解明やゲノム資源の整備が挙げられる。
English
This review synthesizes knowledge on Dendrocalamus strictus, a key bamboo species in India, highlighting its high carbon sequestration potential, surpassing other bamboos and teak, and its suitability for degraded land restoration and agroforestry. It identifies research gaps in flowering mechanisms and genomics, proposing integrated silvicultural and genomic strategies for sustainable utilization and conservation.
Unofficial AI-generated summary based on the public title and abstract. Not an official translation.
📝 gxceed 編集解説 — Why this matters
日本のGX文脈において
日本では竹材の利用拡大や里山再生が課題であり、本種の炭素隔離能や農林複合経営の知見は、日本の竹林管理やバイオマス利用に示唆を与える。ただし、日本固有の制度や政策との直接的な関連は薄い。
In the global GX context
Globally, this review contributes to nature-based climate solutions and carbon sequestration literature, relevant to land restoration and sustainable forestry. It provides empirical evidence on bamboo's carbon potential, useful for climate mitigation strategies and agroforestry policies.
👥 読者別の含意
🔬研究者:Provides a comprehensive baseline and identifies research gaps in bamboo genomics and flowering, guiding future studies.
🏢実務担当者:Offers insights into bamboo plantation management and carbon sequestration for agroforestry and land restoration projects.
🏛政策担当者:Highlights bamboo's role in climate mitigation and land restoration, informing policies on sustainable forestry and carbon credits.
📄 Abstract(原文)
Dendrocalamus strictus (Roxb.) Nees is one of the most ecologically and economically important bamboo species in India, inhabiting approximately 53% of the bamboo-bearing area. Owing to its high biomass productivity, drought tolerance, carbon sequestration potential, versatile utility, and adaptability to degraded environments, D. strictus has emerged as an important species for supporting rural livelihoods, land restoration, and climate change mitigation. This review compiles and synthesizes information on the morphological, anatomical, phytochemical, physical, and mechanical properties of the species, as well as its reproductive biology, propagation techniques, agroforestry applications, carbon sequestration potential, and genomics. The available literature indicates that D. strictus is highly suitable for the reclamation of degraded lands and for soil and water conservation. Solid culms and favorable mechanical properties make it a promising substitute for timber in diverse applications. Among the existing propagation methods, tissue culture has emerged as the most efficient technique for large-scale plantation establishment. Plantations of D. strictus exhibit high carbon sequestration potential, often outperforming those of other bamboo species and teak, thereby highlighting its significance in climate change mitigation and land restoration initiatives. Agroforestry systems integrating D. strictus with crops such as ginger, turmeric, chickpea, and sesame have also demonstrated ample ecological and economic benefits. However, several knowledge gaps continue to hinder the effective utilization of this species. Although gregarious flowering events have been documented, the underlying mechanisms and regulation of flowering remain poorly understood, limiting improvement programs and effective plantation management. Furthermore, the polyploid nature of the species, coupled with the lack of comprehensive genomic resources, constrains investigations into the genetic basis of adaptive traits, evolutionary history, genetic diversity, epigenetic regulation, molecular drivers of flowering, advanced breeding strategies, and gene-editing applications. This review highlights the current state of knowledge, identifies critical research gaps, and provides a foundation for integrating silvicultural and genomic strategies to support the sustainable utilization and long-term conservation of D. strictus .
🔗 Provenance — このレコードを発見したソース
- openalex https://doi.org/10.3389/fevo.2026.1877064first seen 2026-08-17 04:54:26
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