Response mechanism of carbon metabolism of Pinus massoniana to gradient high temperature and drought stress.

Authors:
Li L; Li Y; Ding G.

Journal:
BMC Genomics

Publication Year: 2024

DOI:
10.1186/s12864-024-10054-2

PMCID:
PMC10860282

PMID:
38347506

Journal Information

Full Title: BMC Genomics

Abbreviation: BMC Genomics

Country: Unknown

Publisher: Unknown

Language: N/A

Publication Details

Subject Category: Genetics

Available in Europe PMC: Yes

Available in PMC: Yes

PDF Available: No

Transparency Score
4/6
66.7% Transparent
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Evidence found in paper:

"transcriptome data has been deposited to national center for biotechnology information ( https://www ncbi nlm nih gov/ ) under bioproject id prjna970846."

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Evidence found in paper:

"Declarations Ethics approval and consent to participateThe plant material utilized in this study does not involve any endangered or protected species. The ongoing experimental research and field study, including the collection of plant material, adhere to relevant institutional, national, and international guidelines and legislation for the purpose of research and development. Masson pine (Pinus massoniana) specimens were obtained from a state-owned forest farm located in Dushan County, Guizhou Province, within the Qiannan Buyi and Miao Autonomous Prefecture. All samples were accurately identified by Jiaguo Wang. The specimens were deposited in the Tree Herbarium of the College of Forestry at Guizhou University (GZAC), with a deposition number of GZAC0031640.(https://www.cvh.ac.cn/spms/detail.php?id=f01e49a7). Consent for publicationNot applicable. Competing interestsThe authors declare no competing interests. Competing interests The authors declare no competing interests."

Evidence found in paper:

"Funding This work was supported by the Science and Technology Planning Project of Guizhou Province (ZK[2022]YIBAN274; QKHPTRC[2018]5261)."

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Open Access
Paper is freely available to read
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Assessment Info

Tool: rtransparent

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Last Updated: Aug 05, 2025