施硼肥和富硼有机肥对沿海土壤中番茄产量硼利用率和养分吸收的影响

J. M. Gracia, D. Elayaraja, P. Kamalakannan, R. Kamaleshwaran
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引用次数: 0

摘要

硼(B)是植物生长和发育所必需的微量营养元素,在植物体内的各种生理过程中发挥着关键作用。在番茄种植中,保持足够的硼含量对实现最佳产量和质量至关重要。然而,由于土壤类型、环境条件和植物遗传等因素的影响,硼的缺乏或低效利用往往给种植者带来挑战,导致泰米尔纳德邦沿海地区的生产率降低和经济损失。本研究调查了硼肥和富硼有机肥对沿海土壤中番茄产量硼利用效率和养分吸收的影响。2022 年 7 月至 11 月期间,在泰米尔纳德邦卡达洛尔地区奇丹巴拉姆附近的 Varagurpettai 沿海村庄的农民田间进行了一项田间试验,以番茄品种 NTH-777 作为试验作物。实验土壤质地为沙壤土,分类学上被归类为典型乌斯季富朗土,pH 值为 8.39,EC 值为 4.07 dSm-1,有机碳含量较低(2.47 g kg-1)。土壤中碱性 KMnO4-N(145.71 千克/公顷-1)和奥尔森-P(10.57 千克/公顷-1)含量较低,NH4OAc-K(157.42 千克/公顷-1)含量中等。土壤中可利用的热水溶性硼含量(0.27 毫克/千克)也较低。研究中采用的各种处理包括:T1-对照组(仅使用 RDF/100% NPK)、T2-RDF + 堆肥椰壳纤维(CCP)(12.5 吨/公顷)、T3-RDF + 堆肥椰壳纤维 + 硼砂(B)(10 公斤/公顷)(土壤施用)、T4-RDF + 堆肥椰壳纤维 + 硼砂(B)(叶面施肥)(FA)(0.5%)(开花前施用两次)、T5-RDF + 堆肥椰壳纤维 + 硼砂(B)(0.5%)(开花前施用两次)。5%,在花前和花期施用两次;T5-RDF + CCP + 硼砂(SA)+(FA);T6-RDF + CCP + 硼腐植酸(BH)@ 15 kg ha-1 土壤施用(SA);T7-RDF + CCP + 硼腐植酸(FA);T8-RDF + CCP + 硼腐植酸(SA)+FA;T9-RDF + 富含硼砂的堆肥椰糠(BECCP)@ 6.25 t ha-1 (SA), T10-RDF + Borohumate Enriched Composted coirpith (BHECCP) @ 6.25 t ha-1 (SA), T11-RDF + BECCP (SA) + Borax (FA) and T12-RDF + BHECCP (SA) + Borohumate (FA)。试验采用随机区组设计(RBD),三次重复。田间试验结果清楚地表明,综合施用氮磷钾肥、富含硼的有机肥料、生物肥料和叶面喷施硼铝酸盐(BH)能积极提高番茄的生长、产量、品质和养分吸收率。该处理的农艺效率(4.10 吨 kg-1)、农业生理效率(20.45 吨 kg-1)、表观回收效率(43.45%)、生理效率(14.30 吨 kg-1)和硼利用效率(410.34)均为最高。这项研究有助于发展硼的利用动态,并为今后改进养分管理策略,最大限度地提高番茄生产系统的产量和质量铺平了道路。
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Effect of Boron Fertilization and Boron Enriched Organic Manures on Yield Boron Use Efficiency and Nutrient Uptake by Tomato in Coastal Soil
Boron (B) is an essential micronutrient for plant growth and development, playing a pivotal role in various physiological processes within the plant. In tomato cultivation, maintaining adequate boron levels is crucial for achieving optimal yield and quality. However, due to factors such as soil type, environmental conditions, and plant genetics, boron deficiency or inefficient utilization often poses challenges for growers, leading to reduced productivity and economic losses in coastal regions of Tamilnadu. This study investigates the effect of boron fertilization and boron enriched organic manures on yield boron use efficiency and nutrient uptake by tomato in coastal soil. A field experiment was conducted in the farmer’s field at Varagurpettai coastal village, near Chidambaram in Cuddalore district of Tamilnadu, during July-November, 2022 using tomato variety NTH-777 as test crop. The experimental soil was sandy loam in texture and taxonomically classified as Typic Ustifluvent with pH-8.39, EC-4.07 dSm-1 and analysed low status of organic carbon (2.47 g kg-1). The soil analysed low in alkaline KMnO4–N (145.71 kg ha-1) and Olsen-P (10.57 kg ha-1) and medium in NH4OAc-K (157.42 kg ha-1). The available hot water soluble B content (0.27 mg kg-1) was also low in soil. The various treatments imposed in the study included T1–Control (RDF alone/100% NPK), T2–RDF + Composted coirpith (CCP) @ 12.5 t ha-1, T3–RDF + CCP + Borax (B) @ 10 kg ha-1 through soil application (SA), T4–RDF + CCP + Borax (B) through foliar application (FA) @ 0.5% twice @ pre flowering stage (PFS) and flowering stage (FS),  T5–RDF +CCP + Borax (SA) + (FA), T6–RDF + CCP + Borohumate (BH) @ 15 kg ha-1 soil application (SA), T7 –RDF + CCP + Borohumate (FA), T8–RDF + CCP + Borohumate (SA) + FA, T9–RDF + Borax Enriched Composted coirpith (BECCP) @ 6.25 t ha-1 (SA), T10–RDF + Borohumate Enriched Composted coirpith (BHECCP) @ 6.25 t ha-1 (SA), T11–RDF + BECCP (SA) + Borax (FA) and T12–RDF + BHECCP (SA) + Borohumate (FA). The experiment was laid out in a Randomized Block Design (RBD) with three replications. The results of the field experiment clearly indicated that integrated application of NPK fertilizer along with B enriched organic manures + biofertilizer and foliar spray of borohumate (BH) positively increased the growth, yield, quality and nutrient uptake by tomato. This treatment recorded the highest agronomic efficiency (4.10 t kg-1), agro physiological efficiency (20.45 t kg-1), apparent recovery efficiency (43.45%), physiological efficiency (14.30 t kg-1) and boron use efficiency (410.34). This research contributes to the development of boron utilization dynamics and this study paves the way for future advancements in nutrient management strategies tailored to maximize yield and quality in tomato production systems.
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