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非结构性碳水化合物在牡丹幼苗中的积累改善了促成栽培条件下牡丹的开花品质,其中根系起着关键作用。

Non-Structural Carbohydrates Accumulation in Seedlings Improved Flowering Quality of Tree Peony under Forcing Culture Conditions, with Roots Playing a Crucial Role.

作者信息

Shi Shuaiying, Shi Tian, Zhou Shuang, Gao Shuangcheng, Zhao Yuan, Shi Guoan

机构信息

Henan Comprehensive Utilization Engineering Technical Research Center for Peony, College of Mudan, Henan University of Science and Technology, Luoyang 471023, China.

College of Landscape Architecture and Art, Henan Agricultural University, Zhengzhou 450002, China.

出版信息

Plants (Basel). 2024 Oct 10;13(20):2837. doi: 10.3390/plants13202837.

Abstract

(1) Tree peony ( Andrews) is a woody ornamental plant originating from China, and beloved by people worldwide. Non-structural carbohydrates (NSCs) play a crucial role in regulating the flowering quality of tree peonies in both field and potted conditions. However, the effects of NSCs accumulation and allocation in various organs during the vegetative growth stage on the flowering quality of tree peony under forcing culture remains unclear. (2) Two-year-old grafted seedlings of tree peony cv. 'Luoyanghong' were subjected to orthogonal treatments to investigate the role of NSCs accumulation in plants' developmental process. We measured leaf photosynthetic capacity, NSCs accumulation in the organs of seedlings, observed key ornamental characteristics of flowering quality under forcing culture conditions, and evaluated the qualities of seedlings and flowers using the seedling index (SI) and flowering index (FI), respectively. (3) There was a significant positive correlation between leaf photosynthetic capacity and NSCs accumulation in both the whole plant and roots of potted tree peony. Roots were identified as the primary organs for NSCs accumulation in potted tree peonies. Sufficient NSCs accumulation in the plant, particularly in the roots during the defoliation period, was essential not only for enhancing the seedling quality of potted tree peonies but also for improving the flowering quality under forcing culture conditions. Both the seedling index (SI) and flowering index (FI) exhibited a significant dose-response with increasing root NSCs accumulation at defoliation. The T3 group, which involved slight root pruning (by 25%), combined with a high-concentration rooting agent (750 mg·L) and (20 million U·mL), resulted in the highest photosynthetic capacity, SI, FI and NSCs accumulation status (NSCAR), making it the optimal treatment combination. (4) This finding indicates that increasing NSCs accumulation in the roots of potted tree peonies is a crucial biological foundation for producing high-quality potted flowers under forcing culture conditions, which provide new insights into the importance of NSCs in tree peony flowering and may improve the production technology for high-quality potted tree peony flowers under forcing culture conditions.

摘要

(1) 牡丹(安德鲁斯)是一种原产于中国的木本观赏植物,深受世界各地人们喜爱。非结构性碳水化合物(NSCs)在调控牡丹在田间和盆栽条件下的开花品质方面起着关键作用。然而,营养生长阶段各器官中NSCs的积累和分配对促成栽培条件下牡丹开花品质的影响仍不清楚。(2) 对两年生牡丹品种‘洛阳红’嫁接苗进行正交处理,以研究NSCs积累在植物发育过程中的作用。我们测量了叶片光合能力、幼苗各器官中NSCs的积累,观察了促成栽培条件下开花品质的关键观赏特性,并分别使用幼苗指数(SI)和开花指数(FI)评估了幼苗和花朵的品质。(3) 盆栽牡丹全株和根系的叶片光合能力与NSCs积累之间存在显著正相关。根系被确定为盆栽牡丹中NSCs积累的主要器官。植物中充足的NSCs积累,尤其是在落叶期根系中的积累,不仅对提高盆栽牡丹的幼苗品质至关重要,而且对改善促成栽培条件下的开花品质也至关重要。幼苗指数(SI)和开花指数(FI)均随落叶期根系NSCs积累量的增加呈现显著的剂量反应。T3组涉及轻微的根系修剪(25%),结合高浓度生根剂(750 mg·L)和(2000万U·mL),导致光合能力、SI、FI和NSCs积累状态(NSCAR)最高,使其成为最佳处理组合。(4) 这一发现表明,增加盆栽牡丹根系中NSCs的积累是促成栽培条件下生产高品质盆花的关键生物学基础,这为NSCs在牡丹开花中的重要性提供了新的见解,并可能改善促成栽培条件下高品质盆栽牡丹花的生产技术。

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