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石斛顶叶组物种的碳同化途径类型

林雅君 吴宇苇 韦春怡 兰思仁 李明河

森林与环境学报2024,Vol.44Issue(4):441-446,6.
森林与环境学报2024,Vol.44Issue(4):441-446,6.DOI:10.13324/j.cnki.jfcf.2024.04.012

石斛顶叶组物种的碳同化途径类型

Elucidating the types of carbon assimilation pathways in Dendrobium section Densiflora

林雅君 1吴宇苇 1韦春怡 1兰思仁 1李明河1

作者信息

  • 1. 福建农林大学风景园林与艺术学院,福建 福州350002
  • 折叠

摘要

Abstract

Dendrobium section Densiflora species hold important ornamental and medicinal value. To improve the efficiency of breeding and cultivation,in this study,we aimed to elucidate the types of photosynthetic carbon assimilation pathways in D. brymerianum,D. chrysotoxum,D. densiflorum,D. harveyanum,D. sulcatum,D. thyrsiflorum,D. jenkinsii,D. lindleyi,all of which are known native Chinese species of Dendrobium section Densiflora,by analyzing stable carbon isotope ratios (δ13C),diurnal net CO2 assimilation,and titratable acidity. The results showed that the δ13C values of D. Jenkinsii and D. Lindleyi were greater than-20‰,identifying as crassulacean acid metabolism (CAM) plants,while the δ13C values of other 6 species were less than-20‰,identifying as C3 plants. Following drought stress,D. Jenkinsii had net CO2 uptake during the whole night,and D. Lindleyi had net CO2 exchange for over two-thirds of the night. The difference in titratable day and night acid level (△H+) between these two plants was markedly higher than that of C3 plants,providing further evidence that both are CAM plants. All C3 species exhibited marked net CO2 uptake during the daytime;however,acid accumulation in them was more markedly at night,exceeding 4 mmol·kg-1 . The only exception was D. Brymerianum,which did not show night acid accumulation,indicating that this effect is unique to the obligate C3 plants,while the remaining five species were facultative CAM plants.

关键词

石斛属/顶叶组/碳同化途径/干旱胁迫/景天酸代谢

Key words

Dendrobium/section Densiflora/carbon assimilation pathways/drought stress/crassulacean acid metabolism

分类

农业科技

引用本文复制引用

林雅君,吴宇苇,韦春怡,兰思仁,李明河..石斛顶叶组物种的碳同化途径类型[J].森林与环境学报,2024,44(4):441-446,6.

基金项目

国家自然科学基金面上项目"石斛属植物亲缘关系及其碳同化途径的育种潜力研究"(32271957). (32271957)

森林与环境学报

OA北大核心CSTPCD

2096-0018

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