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首页> 外文期刊>Scientia horticulturae >Effects of mulching on soil temperature and moisture variations, leaf nutrient status, growth and yield of pistachio trees (Pistacia vera.L)
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Effects of mulching on soil temperature and moisture variations, leaf nutrient status, growth and yield of pistachio trees (Pistacia vera.L)

机译:覆盖对土壤温度和水分变化,叶养生地位,开心树的生长和产量的影响(Pistacia Vera.L)

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The objective of this study was to investigate the response of leaf nutrients concentration, growth and yield of pistachio trees affected by changes in soil moisture and temperature as a result of different mulching. The experiment was conducted in a randomized complete block design with five replications in Feyzabad, Khorasan Razavi, Iran, for two years in 2014 ('off year) and 2015 ('on' year). Treatments included sub-soil plastic (SPM1 and SPM2), up-soil plastic (UPM), woodchips (WM), barley residue (BM) mulches and control (CK). Treatment of SPM2 recorded the highest shoot growth and nut splitting, and lowest bud abscission in 'off year. However, in 'on' year, maximum bud abscission was found in SPM2. Treatments of BM and WM were effective in decreasing flower bud and fruit abscission than other treatments during 'on' year. Mulching affected leaf P concentration in 'off year and N, P and Mg in 'on' year, with the highest rate of these nutrients recording in BM treatment. Yield variations were not significantly affected by treatments in 'of year, but in 'on' year, SPM2, WM, BM and SPM1 treatments increased yield by 29.2%, 28.7%, 19.8% and 10.5% compared to CK, respectively. Unlike other treatments, UPM had negative effect on leaf N concentration, and yield during 'on' year. This difference is attributed to high soil temperature in this treatment, so that yield reduced in soil temperature ranges over 36-37 degrees C in mean depth of 20-60 cm. In general, sub-soil plastic mulches, despite increasing yield in 'on' year, could not control flower bud abscission in that year. Thus, due to the increase of leaf nutrient concentration, regulation of alternate bearing phenomenon and improvement of yield, organic mulches are better options in arid and semi-arid regions with traditional irrigation methods.
机译:本研究的目的是探讨由于不同的覆盖而受到土壤水分和温度变化影响的开叶营养浓度,生长和产量的响应。该实验是在2014年伊朗的Feyzabad,Khorasan Razavi,伊朗的五次复制的随机完整块设计中进行了两年(“关闭年份)和2015年(”年“)。处理包括亚土壤塑料(SPM1和SPM2),上土塑料(芬欧贴花),木质筛(WM),大麦残留(BM)覆盖和控制(CK)。 SPM2的治疗记录了最高的射击生长和坚果分裂,并在“关闭年份中的最低芽脱落。然而,在“在”一年中,在SPM2中发现了最大的芽脱落。 BM和WM的治疗有效降低花芽和果实脱落,而不是“在”一年中的其他治疗。在'在'年“中”在“on”,在“年”中受影响的叶片P浓度影响,在BM处理中的这些营养物质记录的最高速率。在“年度”中,产量变异并未受到治疗的影响,但“在”年“,SPM2,WM,BM和SPM1治疗分别与CK相比增加了29.2%,28.7%,19.8%和10.5%。与其他治疗不同,UPM对叶N浓度产生负面影响,并在“on”期间的产量。这种差异归因于该处理的高土壤温度,因此在平均深度为20-60厘米的土壤温度下降低的产量降低。一般来说,亚土塑料覆盖物,尽管“在”一年中的产量增加,但不能控制那年的花芽脱落。因此,由于叶片养分浓度的增加,交替轴承现象的调节和产量的提高,有机覆盖物在具有传统灌溉方法的干旱和半干旱区域中更好地选择。

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