Maistry Pravin M, Muasya A Muthama, Valentine Alex J, Chimphango Samson B M
Department of Biological Sciences, University of Cape Town, Private Bag X3, Rondebosch 7701, South Africa.
Department of Botany and Zoology, University of Stellenbosch, Private Bag X1, Matieland 7602, South Africa.
J Plant Physiol. 2015 Feb 1;174:16-25. doi: 10.1016/j.jplph.2014.10.005. Epub 2014 Oct 23.
Podalyria calyptrata is from fynbos soils with low availability of phosphorus (P) and nitrogen (N). We investigated the physiological basis for tolerance of low P supply in nodulated P. calyptrata and examined responses to increased supply of combined-N as Ca(NO3)2 and P. It was hypothesized that increasing supply of combined-N would stimulate P-acquisition mechanisms and enhance plant growth with high P supply. Biomass, leaf [N] and [P], organic acid and phosphatase root exudates, and phosphoenolpyruvate carboxylase (PEPC) and malate dehydrogenase (MDH) activity in nodules and roots were examined in two N×P experiments. Low P supply decreased leaf [P] and limited growth, decreasing the nodule:root ratio but increasing nodular PEPC and MDH activity for enhanced P-acquisition or P-utilization. At low P supply, a N-induced demand for P increased root exudation of citrate and PEPC and MDH activity in roots. Greater combined-N supply inhibited nodulation more at low P supply than at high P supply. With a P-induced demand for N the plants nodulated prolifically and increased combined-N supply did not enhance plant growth. The physiological basis for N2-fixing P. calyptrata tolerating growth at low P supply and responding to greater P supply is through balanced acquisition of P and N for plant demand.
卡利普特拉豆(Podalyria calyptrata)生长于磷(P)和氮(N)有效性较低的菲恩博斯土壤中。我们研究了结瘤的卡利普特拉豆对低磷供应耐受性的生理基础,并检测了其对增加硝酸钙形式的结合态氮(combined-N)和磷供应的反应。我们假设增加结合态氮的供应会刺激磷获取机制,并在高磷供应条件下促进植物生长。在两个氮×磷实验中,检测了生物量、叶片氮含量和磷含量、根系分泌的有机酸和磷酸酶、以及根瘤和根系中磷酸烯醇式丙酮酸羧化酶(PEPC)和苹果酸脱氢酶(MDH)的活性。低磷供应降低了叶片磷含量并限制了生长,降低了根瘤与根系的比例,但增加了根瘤中PEPC和MDH的活性,以增强磷的获取或利用。在低磷供应条件下,氮诱导的对磷的需求增加了根系柠檬酸的分泌以及根系中PEPC和MDH的活性。与高磷供应相比,更大的结合态氮供应在低磷供应条件下对根瘤形成的抑制作用更强。由于磷诱导的对氮的需求,植株大量结瘤,增加结合态氮的供应并未促进植物生长。固氮的卡利普特拉豆在低磷供应条件下耐受生长并对更高磷供应作出反应的生理基础是通过平衡获取磷和氮以满足植物需求。