Growth, yield and quality of selected sweet potato (Ipomoea batatas [L.] lam.), lines under varying soil moisture conditions

Peninah N. Alexander, P. Masinde
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Abstract

Sweet Potato (Ipomoea batatas [L.] has increasing potential as a food security crop in Kenya. However, its production is relatively low compared to its potential production attributed to drought conditions alongside use of local landrace cultivars that are quite low yielding. A study was conducted at Meru University in 2020-2021 to assess the performance of selected improved sweet potato lines under varied watering regimes. Two selected sweet potato varieties were used; Naspot 13 and Margarette and a farmer-preferred variety, kemb-10. The varieties were subjected to three different watering regimes (i) Continuous water deficit 30 DAE (ii) Continuous water deficit 60 DAE and (iii) well-watered to maturity. A randomized complete block design in a split plot, with water treatment as the main plot and varieties as subplot with 3 replicates was used. There was no significant interaction between varieties and water regimes.  Watering regimes significantly (p≤0.05) affected vegetative growth and yield. Plants under continuous water deficit from 30 DAE had significantly lower vine length, number of branches and leaves. Under continuous water deficit from 60DAE, plants experienced significant reduction in vine length, number of leaves and branches compared to control plants. However, this reduction was less compared to 30DAE. Margerete had significantly lower vine length, number of branches and leaves (41.01% 11.2% and 44.3%) respectively. Kemb 10 had a significantly higher tuber diameter and tuber length, 101% and 91.05% respectively. The vegetative growth and yield of Naspot 3 was comparable to Kemb 10. Naspot had 89.4% increases in number of tubers. It’s concluded that varieties tested responded similarly to water deficit, with larger vegetative and yield reductions at 30DAE. Based on findings, planting earlier is recommendable for crop establishment to escape water stress whereas Naspot 13 is more suitable for the area considering its higher growth and yield.
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甘薯选种的生长、产量和品质[j]。[lam.]),在不同土壤湿度条件下的线条
甘薯(Ipomoea batatas);在肯尼亚作为粮食安全作物的潜力越来越大。然而,与潜在产量相比,由于干旱条件和使用产量相当低的当地地方品种,其产量相对较低。2020-2021年,梅鲁大学进行了一项研究,以评估不同灌溉制度下精选改良甘薯品系的表现。选用了两个精选的甘薯品种;Naspot 13和Margarette以及农民喜欢的品种kemb-10。这些品种经受了三种不同的浇水制度(i)连续亏水30 DAE (ii)连续亏水60 DAE和(iii)充分浇水至成熟。采用分区随机完全区设计,以水处理为主区,品种为次区,共3个重复。品种间与水分制度间无显著交互作用。灌溉方式显著影响营养生长和产量(p≤0.05)。30 DAE持续亏水处理植株的藤长、枝叶数显著降低。在60DAE持续亏水处理下,植株的藤长、叶数和分枝数均显著低于对照植株。然而,与30DAE相比,这种减少较少。Margerete的藤长、枝数、叶数分别为41.01%、11.2%和44.3%,显著低于Margerete。根茎直径和根茎长度分别为101%和91.05%。Naspot 3的营养生长和产量与Kemb 10相当。Naspot的块茎数量增加了89.4%。结果表明,受试品种对水分亏缺的反应相似,在30DAE时营养和产量下降幅度较大。研究结果表明,为了避免水分胁迫,建议尽早种植,而考虑到其生长和产量较高,Naspot 13更适合该地区。
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