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氮素利用效率相关根系综合表型改良水稻性能

Integrated root phenotypes for improved rice performance under low nitrogen availability.

机构信息

Division of Plant and Crop Sciences, School of Biosciences, University of Nottingham, Sutton Bonington, UK.

Department of Plant Science, The Pennsylvania State University, University Park, Pennsylvania, USA.

出版信息

Plant Cell Environ. 2022 Mar;45(3):805-822. doi: 10.1111/pce.14284. Epub 2022 Feb 23.

Abstract

Greater nitrogen efficiency would substantially reduce the economic, energy and environmental costs of rice production. We hypothesized that synergistic balancing of the costs and benefits for soil exploration among root architectural phenes is beneficial under suboptimal nitrogen availability. An enhanced implementation of the functional-structural model OpenSimRoot for rice integrated with the ORYZA_v3 crop model was used to evaluate the utility of combinations of root architectural phenes, namely nodal root angle, the proportion of smaller diameter nodal roots, nodal root number; and L-type and S-type lateral branching densities, for plant growth under low nitrogen. Multiple integrated root phenotypes were identified with greater shoot biomass under low nitrogen than the reference cultivar IR64. The superiority of these phenotypes was due to synergism among root phenes rather than the expected additive effects of phene states. Representative optimal phenotypes were predicted to have up to 80% greater grain yield with low N supply in the rainfed dry direct-seeded agroecosystem over future weather conditions, compared to IR64. These phenotypes merit consideration as root ideotypes for breeding rice cultivars with improved yield under rainfed dry direct-seeded conditions with limited nitrogen availability. The importance of phene synergism for the performance of integrated phenotypes has implications for crop breeding.

摘要

更高的氮效率将大大降低水稻生产的经济、能源和环境成本。我们假设,在氮素供应不足的情况下,根系结构表型之间对土壤探索的成本和收益进行协同平衡是有益的。我们使用经过改进的适用于水稻的功能结构模型 OpenSimRoot 并与 ORYZA_v3 作物模型集成,来评估在低氮条件下,根构型表型(包括节根角度、较小直径节根的比例、节根数量;以及 L 型和 S 型侧枝密度)组合的应用效果。与对照品种 IR64 相比,多种综合根系表型在低氮条件下具有更高的地上生物量。这些表型的优势是由于根系表型之间的协同作用,而不是表型状态的预期累加效应。在未来的天气条件下,与 IR64 相比,预计在雨养旱直播农业生态系统中,具有代表性的最优表型在低氮供应下的粮食产量可提高 80%。这些表型值得考虑作为根理想型,用于培育在有限氮素供应条件下、雨养旱直播条件下具有更高产量的水稻品种。表型协同作用对综合表型性能的重要性对作物育种具有启示意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f54a/9303783/b7f69e44f10a/PCE-45-805-g001.jpg

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