Zhong Yongjia, Tian Jiang, Li Xinxin, Liao Hong
Root Biology Center, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Root Biology Center, South China Agricultural University, Guangzhou, 510642, China.
New Phytol. 2023 Feb;237(3):734-745. doi: 10.1111/nph.18593. Epub 2022 Dec 5.
Legumes such as soybean are considered important crops as they provide proteins and oils for humans and livestock around the world. Different from other crops, leguminous crops accumulate nitrogen (N) for plant growth through symbiotic nitrogen fixation (SNF) in coordination with rhizobia. A number of studies have shown that efficient SNF requires the cooperation of other nutrients, especially phosphorus (P), a nutrient deficient in most soils. During the last decades, great progress has been made in understanding the molecular mechanisms underlying the interactions between SNF and P nutrition, specifically through the identification of transporters involved in P transport to nodules and bacteroids, signal transduction, and regulation of P homeostasis in nodules. These studies revealed a distinct N-P interaction in leguminous crops, which is characterized by specific signaling cross talk between P and SNF. This review aimed to present an updated picture of the cross talk between N fixation and P nutrition in legumes, focusing on soybean as a model crop, and Medicago truncatula and Lotus japonicus as model plants. We also discuss the possibilities for enhancing SNF through improving P nutrition, which are important for high and sustainable production of leguminous crops.
大豆等豆类被视为重要作物,因为它们为全球人类和牲畜提供蛋白质和油脂。与其他作物不同,豆科作物通过与根瘤菌的共生固氮作用(SNF)积累氮素以供植物生长。许多研究表明,高效的共生固氮作用需要其他养分的协同作用,尤其是磷(P),而磷是大多数土壤中缺乏的一种养分。在过去几十年中,在理解共生固氮作用与磷营养相互作用的分子机制方面取得了巨大进展,特别是通过鉴定参与磷向根瘤和类菌体转运、信号转导以及根瘤中磷稳态调节的转运蛋白。这些研究揭示了豆科作物中独特的氮 - 磷相互作用,其特征是磷与共生固氮作用之间存在特定的信号串扰。本综述旨在呈现豆类作物中固氮作用与磷营养之间串扰的最新情况,重点以大豆作为模式作物,以蒺藜苜蓿和百脉根作为模式植物。我们还讨论了通过改善磷营养来增强共生固氮作用的可能性,这对豆科作物的高产和可持续生产至关重要。