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麻叶绣线菊冠层小气候与果实、种子产量和质量的关系。

The relationship between canopy microclimate, fruit and seed yield, and quality in Xanthoceras sorbifolium.

机构信息

International Science & Technology Cooperation Base of Forestry Biomass Energy, Beijing Forestry University, No. 35 Qinghua East Road, Haidian District, Beijing, 100083, China; National Energy R&D Center for Non-food Biomass, Beijing Forestry University, No. 35 Qinghua East Road, Haidian District, Beijing, 100083, China.

International Science & Technology Cooperation Base of Forestry Biomass Energy, Beijing Forestry University, No. 35 Qinghua East Road, Haidian District, Beijing, 100083, China.

出版信息

J Plant Physiol. 2023 May;284:153975. doi: 10.1016/j.jplph.2023.153975. Epub 2023 Mar 22.

Abstract

Xanthoceras sorbifolium has high oil content and important biomass energy value, but its development is limited by the problem of low yield. This study investigated the relationship between the canopy microclimate, fruit yield, and fruit quality of Xanthoceras sorbifolium. Difference between the distributions of canopy microclimate factors as well as fruit and seed parameters in the inner and outer canopies of the lower layer, as well as between the inner and outer canopies of the upper layer, were investigated for a period of one year. Canopy structure induced significant differences between canopy microclimate factors during various periods of the year. Light intensity and temperature of the outer and upper canopies were higher than those of inner and lower canopies. However, relative humidity showed an opposing trend. Light intensity was significantly and positively correlated with fruit set percentage, fruit yield, and seed yield. Temperature was significantly and positively correlated with fruit yield and seed yield, but significantly negatively correlated with the oil concentration of seed kernels. Fruit and seed yields significantly decreased from the outer to the inner canopy and from the upper to the lower canopy. Fruit set percentage in the outer canopy was also significantly higher than that in the inner canopy. However, oil concentrations in the seed kernels of the lower layer were significantly higher than those of the upper layer. Additionally, regression analysis was used to construct evaluation models for microclimate, fruit, and seed parameters. Regression equations corresponding to the association between single microclimatic factors during different periods and the fruit and seed parameters may provide a reference for canopy pruning and help develop an optimal regression model that may be used to predict and estimate fruit and seed parameters.

摘要

文冠果含油率高,生物质能源价值高,但产量低限制了其发展。本研究调查了文冠果冠层小气候、果实产量和果实品质之间的关系。研究了一年中不同时期下层内冠层和外冠层以及上层内冠层和外冠层之间冠层小气候因子以及果实和种子参数的分布差异。树冠结构导致了树冠小气候因子在不同时期的显著差异。外冠层和上冠层的光照强度和温度均高于内冠层和下冠层,但相对湿度则相反。光照强度与坐果率、果实产量和种子产量呈显著正相关。温度与果实产量和种子产量呈显著正相关,但与种子仁油浓度呈显著负相关。果实和种子产量从外冠层向内冠层以及从上冠层向下冠层显著减少。外冠层的坐果率也显著高于内冠层,但下冠层种子仁的油浓度显著高于上冠层。此外,还使用回归分析构建了微气候、果实和种子参数的评价模型。不同时期单个小气候因子与果实和种子参数之间关联的回归方程可为冠层修剪提供参考,并有助于建立最优回归模型,以预测和估计果实和种子参数。

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