Far-red light perception by the shoot influences root growth and development in cereal-legume crop mixtures

IF 3.9 2区 农林科学 Q1 AGRONOMY Plant and Soil Pub Date : 2024-08-30 DOI:10.1007/s11104-024-06903-4
Jin L. Wang, Jochem B. Evers, Niels P. R. Anten, Yitong Li, Xiaoyi Yang, Jacob C. Douma, Hannah M. Schneider
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Abstract

Background and aims

Above- and below-ground signals for and responses to competition in mixed-species stands have mostly been studied separately. This leaves unclear if aboveground signals specific to mixed stands have consequences for how plants respond and compete belowground. This study investigated the effect of an aboveground signal, the ratio of red to far-red light (R/FR), on plant biomass allocation and root architecture and morphology when plants grow with different species.

Methods

A greenhouse experiment with a mixture of wheat (Triticum aestivum) and faba bean (Vicia faba) and their respective mono stands was carried out in deep pots (22.6 L, 72 cm in depth) for 52 days of growth. Light-emitting diode (LED) lights were used to enrich FR levels (i.e., reduce the R/FR) of the light environment.

Results

Exposure of the shoots to FR-enriched light predominantly affected adventitious roots, with species-specific effects. Especially in species mixtures, increased FR caused wheat to produce more adventitious roots per tiller, while adventitious root mass of faba bean decreased. The influence of FR on rooting depth (D75, i.e. depth of 75% of root biomass) was species specific, with higher FR levels causing a reduction in D75 in wheat, but a greater D75 in faba bean.

Conclusions

Our findings demonstrate the plasticity of adventitious roots; they are highly responsive to the R/FR level to which the shoot is exposed and to whether neighboring plants are of the same or a different species. This highlights the complexity of plants' responses to environmental cues and how they modify interspecific interactions.

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芽对远红光的感知影响谷类和豆类混作植物根系的生长和发育
背景和目的对于混交林分中竞争的地上和地下信号及反应,人们大多是分开研究的。这就不清楚混交林地特有的地上信号是否会对植物在地下的反应和竞争产生影响。本研究调查了红光与远红光之比(R/FR)这一地上部信号对植物生物量分配以及根系结构和形态的影响,当植物与不同物种混合生长时,该信号对植物生物量分配以及根系结构和形态的影响。结果将嫩枝暴露于富含 FR 的光照下主要会影响不定根,并具有物种特异性效应。特别是在物种混合物中,增加 FR 会使小麦每个分蘖产生更多的不定根,而蚕豆的不定根数量则会减少。FR 对生根深度(D75,即根部生物量 75% 的深度)的影响具有物种特异性,FR 水平越高,小麦的 D75 越小,而蚕豆的 D75 越大。这突显了植物对环境线索反应的复杂性以及它们如何改变种间相互作用。
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来源期刊
Plant and Soil
Plant and Soil 农林科学-农艺学
CiteScore
8.20
自引率
8.20%
发文量
543
审稿时长
2.5 months
期刊介绍: Plant and Soil publishes original papers and review articles exploring the interface of plant biology and soil sciences, and that enhance our mechanistic understanding of plant-soil interactions. We focus on the interface of plant biology and soil sciences, and seek those manuscripts with a strong mechanistic component which develop and test hypotheses aimed at understanding underlying mechanisms of plant-soil interactions. Manuscripts can include both fundamental and applied aspects of mineral nutrition, plant water relations, symbiotic and pathogenic plant-microbe interactions, root anatomy and morphology, soil biology, ecology, agrochemistry and agrophysics, as long as they are hypothesis-driven and enhance our mechanistic understanding. Articles including a major molecular or modelling component also fall within the scope of the journal. All contributions appear in the English language, with consistent spelling, using either American or British English.
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