Improvement of Continuous Deficit Irrigation Efficiency on Young Plum Tree Using Arbuscular Mycorrhizal Fungi

R. Razouk, A. Kajji, Mohammed Alghoum, E. Bouichou, Chems-Doha Khalfi
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Abstract

This work aimed to improve the efficiency of continuous deficit irrigation (CDI) on plum tree through using symbiosis with arbuscular mycorrhizal fungi (AMF). Thus, an experiment was conducted in pots to evaluate the effects of arbuscular mycorrhization on the growth of young plum trees, in two cases of CDI (50% and 75% of full crop evapotranspiration ETc) compared to full irrigation (100% ETc). We used a mixture of two mycorrhizal fungi species, Rhizoglomus intraradices and Funneliformis mosseae. The measurements concerned: 1) morphological parameters of the root system (total fresh weight, total dry weight, total volume and hairy root dry weight); 2) morphological parameters of aerial parts (primary shoot elongation, number of secondary shoots, trunk growth, leaf area, total fresh weight and total dry weight); and 3) nutritional status parameters (leaf phosphorus content and chlorophyll pigments content). Compared to full irrigation, the two CDI levels induced a significant decrease of hairy root percentage without significantly affecting Original Research Article Razouk et al.; AJEA, 13(1): 1-11, 2016; Article no.AJEA.26467 2 total root weight and volume. The use of AMF enabled to limit this depressive effect because it stimulates root ramification, but this is effective only under moderate water stress (75% of ETc). Under this CDI regime, hairy root percentage has been enhanced by 87% in mycorrhizal plants comparatively to non-mycorrhizal plants. Water stress effects on vegetative growth were partially alleviated using AMF even under severe decrease of irrigation (50% of ETc): shoot elongation was higher for mycorrrhizal plants exceeding non-mycorrhizal ones by an average of 13%. AMF induced also a significant increase of phosphorus, nitrogen and chlorophyll pigments concentration in mycorrhizal plants. Thus, AMF significantly improves CDI efficiency on young plum tree, even at level of 50% of ETc. The observed improvements due to AMF were considerable under 75% of ETc, suggesting the possibility to adopt this CDI level associated with AMF to optimize deficit irrigation on young plants of this rosaceous under low water availability conditions.
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利用丛枝菌根真菌提高幼李连续亏缺灌溉效率
本研究旨在通过与丛枝菌根真菌(AMF)共生,提高李树连续亏缺灌溉(CDI)的效率。因此,通过盆栽试验,比较了在全灌条件下(全灌条件下,全灌条件下蒸腾量为50%和75%)和全灌条件下丛枝菌根化对李树幼树生长的影响。我们使用了两种菌根真菌的混合物,根际根菌和mosseae。有关测量:1)根系形态参数(总鲜重、总干重、总体积和毛状根干重);2)地上部形态参数(初生芽伸长、次生芽数、树干生长、叶面积、总鲜重和总干重);3)营养状态参数(叶片磷含量和叶绿素色素含量)。与全灌相比,两种CDI水平诱导毛状根百分比显著降低,但对Razouk等人的原创性研究没有显著影响;农业学报,13(1):1-11,2016;文章no.AJEA。26467 2总根重和体积。AMF的使用能够限制这种抑制效应,因为它刺激根分枝,但这仅在中等水分胁迫下有效(ETc的75%)。在此CDI处理下,菌根处理的毛状根比无菌根处理的毛状根增加了87%。水分胁迫对营养生长的影响在严重减少灌水量(ETc的50%)的情况下也有一定程度的缓解:菌根植株的茎伸长比非菌根植株平均高13%。AMF还显著提高了菌根植物中磷、氮和叶绿素色素的浓度。因此,AMF显著提高了幼树CDI效率,即使在ETc的50%水平上也是如此。在ETc的75%以下,AMF的改善效果相当可观,这表明在低水分有效度条件下,采用AMF相关的CDI水平来优化该玫瑰科植物幼苗的亏缺灌溉是可能的。
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