根际
生物
扩张素
缺磷
磷
农学
侧根
植物生理学
磷酸盐
根系
营养物
植物
基因
基因表达
化学
生物化学
生态学
突变体
细菌
遗传学
有机化学
拟南芥
作者
Wan Teng,Yan Deng,Xinping Chen,Xiaofeng Xu,Riyuan Chen,Yang Lv,Yanyan Zhao,Xueqiang Zhao,Xue He,Bin Li,Yi‐Ping Tong,Fusuo Zhang,Zhensheng Li
摘要
The adaptations of root morphology, physiology, and biochemistry to phosphorus supply have been characterized intensively. However, characterizing these adaptations at molecular level is largely neglected under field conditions. Here, two consecutive field experiments were carried out to investigate the agronomic traits and root traits of wheat (Triticum aestivum L.) at six P-fertilizer rates. Root samples were collected at flowering to investigate root dry weight, root length density, arbusular-mycorrhizal colonization rate, acid phosphatase activity in rhizosphere soil, and expression levels of genes encoding phosphate transporter, phosphatase, ribonucleases, and expansin. These root traits exhibited inducible, inhibitory, or combined responses to P deficiency, and the change point for responses to P supply was at or near the optimal P supply for maximum grain yield. This research improves the understanding of mechanisms of plant adaptation to soil P in intensive agriculture and provides useful information for optimizing P management based on the interactions between soil P dynamics and root processes.
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