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不同氮素供应条件下田间种植硬粒小麦的源库动态:籽粒灌浆期非叶器官的关键作用

Source-Sink Dynamics in Field-Grown Durum Wheat Under Contrasting Nitrogen Supplies: Key Role of Non-Foliar Organs During Grain Filling.

作者信息

Martínez-Peña Raquel, Schlereth Armin, Höhne Melanie, Encke Beatrice, Morcuende Rosa, Nieto-Taladriz María Teresa, Araus José Luis, Aparicio Nieves, Vicente Rubén

机构信息

Group of Cereals, Section of Herbaceous, Instituto Tecnológico Agrario de Castilla y León (ITACyL), Junta de Castilla y León, Valladolid, Spain.

Max Planck Institute of Molecular Plant Physiology, Potsdam, Germany.

出版信息

Front Plant Sci. 2022 Apr 29;13:869680. doi: 10.3389/fpls.2022.869680. eCollection 2022.

Abstract

The integration of high-throughput phenotyping and metabolic approaches is a suitable strategy to study the genotype-by-environment interaction and identify novel traits for crop improvement from canopy to an organ level. Our aims were to study the phenotypic and metabolic traits that are related to grain yield and quality at canopy and organ levels, with a special focus on source-sink coordination under contrasting N supplies. Four modern durum wheat varieties with contrasting grain yield were grown in field conditions under two N fertilization levels in north-eastern Spain. We evaluated canopy vegetation indices taken throughout the growing season, physiological and metabolic traits in different photosynthetic organs (flag leaf blade, sheath, peduncle, awn, glume, and lemma) at anthesis and mid-grain filling stages, and agronomic and grain quality traits at harvest. Low N supply triggered an imbalance of C and N coordination at the whole plant level, leading to a reduction of grain yield and nutrient composition. The activities of key enzymes in C and N metabolism as well as the levels of photoassimilates showed that each organ plays an important role during grain filling, some with a higher photosynthetic capacity, others for nutrient storage for later stages of grain filling, or N assimilation and recycling. Interestingly, the enzyme activities and sucrose content of the ear organs were positively associated with grain yield and quality, suggesting, together with the regression models using isotope signatures, the potential contribution of these organs during grain filling. This study highlights the use of holistic approaches to the identification of novel targets to improve grain yield and quality in C cereals and the key role of non-foliar organs at late-growth stages.

摘要

高通量表型分析与代谢方法的整合是研究基因型与环境互作、从冠层到器官水平鉴定作物改良新性状的合适策略。我们的目标是研究冠层和器官水平上与籽粒产量和品质相关的表型和代谢性状,特别关注不同氮素供应条件下的源库协调。在西班牙东北部的田间条件下,以两种施氮水平种植了四个籽粒产量不同的现代硬粒小麦品种。我们评估了整个生长季的冠层植被指数、开花期和籽粒灌浆中期不同光合器官(旗叶叶片、叶鞘、穗轴、芒、颖片和外稃)的生理和代谢性状,以及收获时的农艺和籽粒品质性状。低氮供应引发了全株水平上碳氮协调的失衡,导致籽粒产量和养分组成下降。碳氮代谢关键酶的活性以及光合同化物的水平表明,每个器官在籽粒灌浆过程中都发挥着重要作用,一些器官具有较高的光合能力,另一些器官用于籽粒灌浆后期的养分储存,或氮素同化和再循环。有趣的是,穗器官的酶活性和蔗糖含量与籽粒产量和品质呈正相关,结合使用同位素标记的回归模型表明,这些器官在籽粒灌浆过程中具有潜在贡献。本研究强调了采用整体方法来鉴定提高C4谷物籽粒产量和品质的新靶点,以及非叶器官在生长后期的关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f12b/9100808/3acb1c1afac1/fpls-13-869680-g0001.jpg

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