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高产杨树基因型在茎叶过渡阶段表现出时间上稳定的低茎干栓塞抗性和水力抗性分段。

Productive Poplar Genotypes Exhibited Temporally Stable Low Stem Embolism Resistance and Hydraulic Resistance Segmentation at the Stem-Leaf Transition.

作者信息

Zhao Han, Huang Xin, Ma Bolong, Jiang Bo, Jiang Zaimin, Cai Jing

机构信息

College of Forestry, Northwest A&F University, Yangling, China.

School of Information Science & Technology, Northwest University, Xi'an, China.

出版信息

Plant Cell Environ. 2025 Feb;48(2):992-1004. doi: 10.1111/pce.15197. Epub 2024 Oct 10.

DOI:10.1111/pce.15197
PMID:39390757
Abstract

Breeding tree genotypes that are both productive and drought-resistant is a primary goal in forestry. However, the relationships between plant hydraulics and yield at the genotype level, and their temporal stabilities, remain unclear. We selected six poplar genotypes from I-101 (Populus alba) × 84 K (P. alba × Popolus tremula var. glandulosa) for experiments in the first and fourth years after planting in a common garden. Measurements included stem embolism resistance, shoot hydraulic resistance and its partitioning between stems and leaves, vessel- and pit-level anatomy, leaf carbon acquisition capacity, carbon allocation to leaves, and aboveground biomass (yield proxy). Significant genetic variations in hydraulic properties and yield were found among genotypes in both years. Productive genotypes had wide vessels, large thin pit membranes, small pit apertures, and shallow pit chambers. Hydraulic resistance was negatively correlated with yield, enabling high stomatal conductance and assimilation rates. Productive genotypes allocated less aboveground carbon and hydraulic resistance to leaves. Temporally stable trade-offs between stem embolism resistance and yield, and between hydraulic segmentation and yield, were identified. These findings highlight the tight link between hydraulic function and yield and suggest that stable trade-offs may challenge breeding poplar genotypes that are both productive and drought-resistant.

摘要

培育兼具高产和抗旱能力的树木基因型是林业的首要目标。然而,在基因型水平上植物水力与产量之间的关系及其时间稳定性仍不明确。我们从I-101(银白杨)×84K(银白杨×腺毛杨)中选取了六种杨树基因型,在种植后的第一年和第四年于一个共同园地里进行实验。测量内容包括茎干抗栓塞能力、枝条水力阻力及其在茎干和叶片之间的分配、导管和纹孔水平的解剖结构、叶片碳获取能力、碳向叶片的分配以及地上生物量(产量指标)。在这两年中,均发现不同基因型在水力特性和产量方面存在显著的遗传变异。高产基因型具有宽导管、大而薄的纹孔膜、小的纹孔口和浅的纹孔腔。水力阻力与产量呈负相关,使得气孔导度和同化率较高。高产基因型向叶片分配的地上碳和水力阻力较少。我们确定了茎干抗栓塞能力与产量之间以及水力分割与产量之间在时间上稳定的权衡关系。这些发现突出了水力功能与产量之间的紧密联系,并表明稳定的权衡关系可能对培育兼具高产和抗旱能力的杨树基因型构成挑战。

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