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缺磷条件下氮形态对玉米、白羽扇豆和蚕豆根系形态及生理适应性的影响

The effects of nitrogen form on root morphological and physiological adaptations of maize, white lupin and faba bean under phosphorus deficiency.

作者信息

Liu Haitao, Tang Caixian, Li Chunjian

机构信息

Department of Plant Nutrition, China Agricultural University, Beijing 100193, China.

Department of Animal, Plant and Soil Sciences, La Trobe University, Melbourne Campus, Bundoora, VIC 3086, Australia.

出版信息

AoB Plants. 2016 Sep 11;8. doi: 10.1093/aobpla/plw058. Print 2016.

Abstract

Root morphological/physiological modifications are important for phosphorus (P) acquisition of plants under P deficiency, but strategies differ among plant species. Detailed studies on the response of maize roots to P deficiency are limited. Nitrogen (N) form influences root morphology/physiology, and thus may influence root responses to P deficiency. This work investigated adaptive mechanisms of maize roots to low P by comparison with white lupin and faba bean supplied with two N forms. Plants were grown for 7-16 days in hydroponics with sufficient (250 µmol L(-1)) and deficient P supply (1 µmol L(-1)) under supply of NH4NO3 or Ca(NO3)2 Plant growth and P uptake were measured, and release of protons and organic acid anions, and acid phosphatase activity in the root were monitored. The results showed that P deficiency significantly decreased shoot growth while increased root growth and total root length of maize and faba bean, but not white lupin. It enhanced the release of protons and organic acid anions, and acid phosphatase activity, from the roots of both legumes but not maize. Compared with Ca(NO3)2, NH4NO3 dramatically increased proton release by roots but did not alter root morphology or physiology of the three species in response to low P. It is concluded that the N form did not fundamentally change root morphological/physiological responses of the three species to P deficiency. Morphological variation in maize and morpho-physiological modifications in white lupin and faba bean were the main adaptive strategies to P deficiency.

摘要

根系形态/生理变化对于缺磷条件下植物对磷的吸收很重要,但不同植物种类的策略有所不同。关于玉米根系对缺磷响应的详细研究有限。氮素形态会影响根系形态/生理,因此可能影响根系对缺磷的响应。本研究通过比较供应两种氮素形态的白羽扇豆和蚕豆,探究了玉米根系对低磷的适应机制。在供应NH₄NO₃或Ca(NO₃)₂的情况下,将植物在水培中培养7 - 16天,分别设置充足磷供应(250 μmol L⁻¹)和缺磷供应(1 μmol L⁻¹)条件。测定了植物生长和磷吸收情况,并监测了根系质子和有机酸阴离子的释放以及酸性磷酸酶活性。结果表明,缺磷显著降低了玉米和蚕豆地上部的生长,同时增加了它们的根系生长和总根长,但对白羽扇豆没有影响。缺磷增强了两种豆科植物根系质子和有机酸阴离子的释放以及酸性磷酸酶活性,但对玉米没有影响。与Ca(NO₃)₂相比,NH₄NO₃显著增加了根系质子释放,但在低磷条件下并未改变这三种植物的根系形态或生理。研究得出结论,氮素形态并未从根本上改变这三种植物根系对缺磷的形态/生理响应。玉米的形态变化以及白羽扇豆和蚕豆的形态 - 生理变化是对缺磷的主要适应策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84dc/5018397/10cd85fbb4bd/plw058f1p.jpg

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