Effect of Green Waste Compost and Mycorrhizal Fungi on Calcium, Potassium, and Sodium Uptake of Woody Plants Grown Under Salt Stress

被引:13
作者
Marosz, Adam [1 ]
机构
[1] Inst Hort Res, PL-96100 Skierniewice, Poland
关键词
Ion uptake in salty environment; Salinity resistance; Salinity stress; Trees growth under salinity; Mycorrhiza under salinity; DEICING SALTS; NUTRIENT-UPTAKE; SOLUBLE SUGARS; HEAVY-METALS; SALINITY; TOLERANCE; CHLOROPHYLL; YIELD; SOILS;
D O I
10.1007/s11270-011-0902-x
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Sodium chloride is the most often used chemical to malt ice and snow on the roads and has negative effects on the roadside environment. Searching for ways to improve the conditions for growth of trees and shrubs near the roads becomes an urgent matter. One such method of improving growth conditions for plants under salinity might be to use organic matter (green waste compost) and mycorrhizal fungi. This study studied the effect of application in soil different salts on several trees and shrubs growth in growing media. Also, effect of green waste compost and arbuscular mycorrhiza (AM) added to the growing medium was evaluated in terms of growth and K+, Ca+2, and Na+ uptake. The highest pH of the growing medium was noted when sodium carbonate was used. The pH ranged from 8.7 to 9.0 after eight doses of sodium carbonate. The pH of the growing medium was also significantly higher regardless of whether or not green waste compost or mycorrhizal fungi were used. The type of growing medium had a great effect on the growth of most of the trees, but among shrubs the growing medium was only important for Cornus alba, Sambucus nigra, and Spiraea vanhouttei. Growth of all these plants was much better under salinity when green waste compost or green waste compost with AM fungi was used. In all the cases, when salinity of the growing medium retarded growth of trees and shrubs, sodium chloride was the compound that had the strongest growth retarding effect. Leaf ionic composition was significantly affected by salinity in the growing medium, and in some cases also by micorhizal fungi. The type of growing medium had various effects on sodium uptake, depending on species. In most cases, the addition of green waste compost to the growing medium caused a greater amount of sodium in the leaves of tested plants. The use of mycorrhizal fungi had no effect on the uptake of sodium, compared to the control plants (without AM fungi).
引用
收藏
页码:787 / 800
页数:14
相关论文
共 29 条
[1]   Mycorrhizal influence on fruit yield and mineral content of tomato grown under salt stress [J].
Al-Karaki, GN ;
Hammad, R .
JOURNAL OF PLANT NUTRITION, 2001, 24 (08) :1311-1323
[2]  
Arshi A., 2006, SCI HORTICULTURE, V11, P84
[3]   THE EFFECT OF ADDED NITROGEN AND PHOSPHORUS ON MYCORRHIZAL GROWTH-RESPONSE AND INFECTION IN ALLIUM-SCHOENOPRASUM [J].
BAATH, E ;
SPOKES, J .
CANADIAN JOURNAL OF BOTANY-REVUE CANADIENNE DE BOTANIQUE, 1989, 67 (11) :3227-3232
[4]   Mobilisation of heavy metals by deicing salts in a roadside environment [J].
Bäckström, M ;
Karlsson, S ;
Bäckman, L ;
Folkeson, L ;
Lind, B .
WATER RESEARCH, 2004, 38 (03) :720-732
[5]   Metabolic engineering for increased salt tolerance - The next step - Comment [J].
Bohnert, HJ ;
Jensen, RG .
AUSTRALIAN JOURNAL OF PLANT PHYSIOLOGY, 1996, 23 (05) :661-666
[6]   Preinoculation of lettuce and onion with VA mycorrhizal fungi reduces deleterious effects of soil salinity [J].
Cantrell, IC ;
Linderman, RG .
PLANT AND SOIL, 2001, 233 (02) :269-281
[7]  
Chen Y., 1990, Humic substances in soil and crop sciences: selected readings. Proceedings of a symposium cosponsored by the International Humic Substances Society, Chicago, Illinois, December 2, 1985., P161
[8]  
Douds D.D., 2000, Arbuscular Mycorrhizas: Physiology and Function, DOI [10.1007/978-94-017-0776-3_6, DOI 10.1007/978-94-017-0776-3_6]
[9]   Improved tolerance of maize plants to salt stress by arbuscular mycorrhiza is related to higher accumulation of soluble sugars in roots [J].
Feng, G ;
Zhang, FS ;
Li, XL ;
Tian, CY ;
Tang, C ;
Rengel, Z .
MYCORRHIZA, 2002, 12 (04) :185-190
[10]   Nitrogen cycle disruption through the application of de-icing salts on upland highways [J].
Green, Sophie M. ;
Cresser, Malcolm S. .
WATER AIR AND SOIL POLLUTION, 2008, 188 (1-4) :139-153