Influence of Irrigation Systems on the Plant Growth and Leaf Ratio Analyses of Rubber (Hevea brasiliensis) Seedlings

IF 0.6 Q3 AGRICULTURE, MULTIDISCIPLINARY Pertanika Journal of Tropical Agricultural Science Pub Date : 2022-11-04 DOI:10.47836/pjtas.45.4.14
A. Nabayi, Christopher Boon Sung Teh, Z. Sulaiman
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Abstract

The sprinkler irrigation system is the most widely used system for rubber irrigation in a nursery. However, the method is associated with high water loss during irrigation. In view of this, an experiment was conducted to assess the effect of different irrigation systems on the growth dynamics, leaf ratio analyses, water productivity, and water use efficiency of rubber seedlings. The treatments were the irrigation systems; soil + overhead sprinkler (CON), growing media (GM) + drip irrigation (DRP), GM + capillary wick system (WCK), and GM + overhead sprinkler (SPR). Each treatment was replicated three times, and the experiment was laid out in a randomized complete block design. The results showed that the DRP and WCK had significantly (p<0.05) higher seedlings’ growth parameters by 15–39% than obtained in the SPR and CON. However, the DRP, WCK, and SPR had statistically comparable seedlings’ root length and volume by 14–43% higher relative to the CON. Similar trends of plant growth dynamics, such as crop growth rate (CGR), leaf area index (LAI), and leaf ratio analyses, were observed for all treatments. However, the CON had lower CGR and LAI, which could be attributed to the lower water retention of the soil used in the treatment. The DRP and WCK had comparable water productivity with 56–60% higher than the SPR and CON treatments. The sprinkler irrigation treatments (SPR and CON) had 84% lower water use efficiency than the DRP and WCK. The DRP and WCK are the best treatments in this study because their higher water application uniformity led to higher seedlings’ growth dynamics and water productivity. The sprinkler system had higher water loss due to the lack of application uniformity, leading to lower plant growth than other irrigations. However, the SPR shows the potential to be more cost-effective due to its lower recurrent cost of labor than drip and wick irrigation.
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灌溉制度对橡胶幼苗生长及叶率的影响分析
喷灌系统是苗圃中应用最广泛的橡胶灌溉系统。然而,这种方法与灌溉过程中的高水分损失有关。有鉴于此,进行了一项试验,以评估不同灌溉系统对橡胶幼苗生长动态、叶率分析、水分生产率和水分利用效率的影响。处理方法是灌溉系统;土壤+高架洒水喷头(CON)、生长介质(GM)+滴灌(DRP)、GM+毛细芯系统(WCK)和GM+高架洒水器(SPR)。每种治疗方法重复三次,实验采用随机完全分组设计。结果表明,DRP和WCK的幼苗生长参数比SPR和CON显著(p<0.05)高出15-39%。然而,DRP、WCK和SPR的幼苗根长和根体积比CON高出14-43%。植物生长动力学的相似趋势,如作物生长率(CGR)、叶面积指数(LAI),并对所有处理进行叶率分析。然而,CON具有较低的CGR和LAI,这可归因于处理中使用的土壤的保水性较低。DRP和WCK的水分生产率相当,比SPR和CON处理高56-60%。喷灌处理(SPR和CON)的用水效率比DRP和WCK低84%。DRP和WCK是本研究中最好的处理,因为它们较高的水分施用均匀性导致较高的幼苗生长动态和水分生产率。由于施用不均匀,洒水系统的水分损失更大,导致植物生长速度低于其他灌溉方式。然而,SPR显示出更具成本效益的潜力,因为它比滴灌和灯芯灌溉的劳动力成本更低。
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来源期刊
Pertanika Journal of Tropical Agricultural Science
Pertanika Journal of Tropical Agricultural Science Agricultural and Biological Sciences-Agronomy and Crop Science
CiteScore
1.10
自引率
16.70%
发文量
64
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