Interactive effects between nitrogen fertilization and elevated CO2 on growth and gas exchange of papaya seedlings

被引:3
作者
Cruz, Jailson L. [1 ,2 ,5 ]
Alves, Alfredo A. C. [3 ,4 ,5 ]
LeCain, Daniel R. [2 ]
Ellis, David D. [4 ,6 ]
Morgan, Jack A. [2 ]
机构
[1] Embrapa Mandioca & Fruticultura, CP 007, BR-44380000 Cruz Das Almas, BA, Brazil
[2] ARS, Crop Res Lab, USDA, Ft Collins, CO 80526 USA
[3] ARS, Embrapa Labex Program, USDA, Ft Collins, CO 80521 USA
[4] ARS, Natl Ctr Genet Resources Preservat, USDA, Ft Collins, CO 80521 USA
[5] Embrapa Mandioca & Fruticultura, Cruz Das Almas, BA, Brazil
[6] Int Potato Ctr, Lima, Peru
基金
美国农业部;
关键词
Gas exchange; Dry weight; Nitrogen-use efficiency; Leaf N concentration; Climate change; CASSAVA MANIHOT-ESCULENTA; ENRICHMENT FACE; PLANT-GROWTH; CARBON-DIOXIDE; PHOTOSYNTHETIC CAPACITY; SEASONAL-CHANGES; WATER RELATIONS; LEAF GROWTH; RESPONSES; NUTRITION;
D O I
10.1016/j.scienta.2016.02.010
中图分类号
S6 [园艺];
学科分类号
0902 ;
摘要
Elevated atmospheric CO2 will change the requirements plants have for minerals, mainly nitrogen, altering the relationship between nutrient demand and plant growth. Here, we evaluated the interacting effects between two concentrations of CO2 (390 or 750 mu LL-1) and two nitrogen (N) levels (3 mM or 8 mM) on gas exchange, N use efficiency (NUE), and dry mass responses of papaya seedlings. The study was conducted in a climate-controlled greenhouse using 3.5 L pots and six replicates for 62 days. No significant effects from N or CO2 were noticed for leaf conductance to water vapor and transpiration. However, CO2 elevation to 750 mu LL-1 increased assimilation rate for both N levels. Elevated CO2 resulted in an increase of 52% and 16% of instantaneous water-use efficiency under high and low N, respectively, as compared to ambient CO2 (390 mu LL-1). Lower N concentrations were observed for all the organs for plants grown under higher concentrations of CO2, regardless of the N level used. However, plants grown under elevated CO2 reached the highest NUEs. There was an N x CO2 interactive effect on the leaf, stem plus petiole, and root dry mass. However, no significant CO2 effect on the root:shoot ratio was observed. Our results revealed that elevated CO2 stimulated total dry mass accumulation of papaya plants, with the results being greatest for plants grown under lower levels of N. Published by Elsevier B.V.
引用
收藏
页码:32 / 40
页数:9
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