农林业辐射条件下幼树的发育:多尺度形态和建筑数据集。

IF 2.4 3区 生物学 Q2 ECOLOGY
AoB Plants Pub Date : 2025-06-12 eCollection Date: 2025-08-01 DOI:10.1093/aobpla/plaf029
Francesco Reyes, Benjamin Pitchers, Christophe Pradal, Pierre-Éric Lauri
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引用次数: 0

摘要

农林业是应对气候变暖的主要适应和减缓战略,但其农艺可行性取决于植物对遮荫条件的实际反应。在优势树下种植果树可以减少与极端气候事件相关的风险,如霜冻或热浪。然而,除了一些坐骨植物,如咖啡或可可,它们对农林业条件的生理和建筑反应知之甚少,特别是在温带气候下。我们提供了一个数据集,描述了连续两年沿着辐射梯度获得的45棵年轻苹果树的结构和形态,就像在农林业地块的三种生长条件下:(i)开阔地,(ii)之间,(iii)沿着优势核桃树的行。数据存储为标准的多尺度树状图,允许存储不同尺度的植物的拓扑结构、几何形状和属性。它包括三个拓扑尺度上的植物性状:整株、生长单位和节间。性状包括器官命运(潜芽、营养芽、花芽和芽灭绝位点);生长单位的长度和叶面积的估计;二阶分支的直径、天顶和方位角。每棵树的叶子、花朵、果实和液滴的数量也以10个(可能是顶端的)花蕾为样本来计算。该数据集包括对采样芽的辅助测量,用于推导芽长和叶面积之间的异速生长关系;以及在植物生长季节到达每棵苹果树的辐射量。数字化树木的多尺度描述和不同的光照生长条件可以研究与遮荫相关的农林业环境与苹果树早期发育(从节间到整棵树)形态和建筑可塑性之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Young apple tree development under agroforestry radiative conditions: a multi-scale morphological and architectural dataset.

Young apple tree development under agroforestry radiative conditions: a multi-scale morphological and architectural dataset.

Young apple tree development under agroforestry radiative conditions: a multi-scale morphological and architectural dataset.

Agroforestry is a major adaptation and mitigation strategy facing climate warming, but its agronomic viability depends on actual plant responses to shade conditions. Growing fruit trees under dominant trees may reduce the risks related to extreme climatic events, such as frost or heat waves. Nonetheless, except for some sciaphilous plants, such as coffee or cacao, their physiological and architectural responses to agroforestry conditions are little known, especially in temperate climate. We present a dataset describing the architecture and morphology of 45 young apple trees, acquired in two consecutive years, along a radiative gradient, as in three growing conditions of an agroforestry plot: (i) the open field, (ii) between, and (iii) along rows of dominant walnut trees. The data are stored as standard multi-scale tree graphs that allow to store the topology, geometry, and attributes of the plant at different scales. It includes plant traits at three topological scales: whole tree, growth unit, and the internode. The traits include organ fate (latent, vegetative, floral bud, and bud extinction sites); length and an estimate of the leaf area of growth units; diameter, zenith, and azimuth angles of second-order branches. The number of leaves, flowers, fruits, and fruit drops is also counted on a sample of 10, possibly apical, flower buds per tree. The dataset includes ancillary measurements on sampled shoots, used to derive allometric relationships between shoot length and leaf area; and an estimate of the radiation reaching each apple tree during the vegetative season. The multi-scale description and the different light growing conditions characterizing the digitized trees allow to investigate relationships between the shade-related agroforestry environment and the apple tree morphological and architectural plasticity, during the early tree development, from the internode to the whole tree.

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来源期刊
AoB Plants
AoB Plants PLANT SCIENCES-
CiteScore
4.80
自引率
0.00%
发文量
54
审稿时长
20 weeks
期刊介绍: AoB PLANTS is an open-access, online journal that has been publishing peer-reviewed articles since 2010, with an emphasis on all aspects of environmental and evolutionary plant biology. Published by Oxford University Press, this journal is dedicated to rapid publication of research articles, reviews, commentaries and short communications. The taxonomic scope of the journal spans the full gamut of vascular and non-vascular plants, as well as other taxa that impact these organisms. AoB PLANTS provides a fast-track pathway for publishing high-quality research in an open-access environment, where papers are available online to anyone, anywhere free of charge.
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