叶面施用微量营养物质和生长调节剂对中原垂直土壤白菜生长和产量性状的响应

Bindiya Painkra, L. Shrivastava, V. Mishra, D. Sharma, Uttam Kumar Devangan
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引用次数: 0

摘要

在集约栽培和气候变化条件下,微量元素和生长调节剂在维持农业生产中发挥着重要作用。为此,研究了叶面施用微量营养素和生长调节剂对白菜生长和产量性状的影响。本研究于2017年和2018年拉比季节,在IGKV Raipur (C.G.)指导农场进行了18种不同组合的叶面施用微量营养素(B + Mo + Fe + Zn)和生长调节剂(GA3 + NAA),并进行了不同的微量营养素遗漏处理。本研究表明,在T18处理(B + Mo + Fe + Zn + GA + NAA)中,微量营养元素与生长调节剂的叶面联合施用取得了最大株高(27.60 cm)、株展(62.88 cm2)、穗直径(16.17 cm2)、叶片产量(22 q ha-1)和穗产量(455 q ha-1)。卷心菜。而缺铁、缺锰、缺铜、缺锌、缺硼、缺钼对白菜株高、株展、叶、穗产量均有显著影响。与其他微量元素遗漏处理相比,遗漏B (T9)对白菜产量的影响较大。由此可见,B (T9)是最具产量限制的微量元素,其次是Fe (T4)、Zn (T5)和Cu (T7)。叶面施用微量元素可提高植株的株高、果径、叶和穗产量。同样,生长调节剂(GA3和NAA)的叶面施肥也可以显著促进白菜的生长和产量。微量营养素(100 ppm)与GA3 (50 ppm)和NAA (80 ppm)分两次(20和40 DAT)叶面施用,对白菜的生长和产量性状有显著的促进作用。目前的研究表明,叶面施用微量元素(B + Mo + Fe + Zn)和生长调节剂(GA + NAA)可以促进白菜的生长和产量,为农业社区生产优质白菜提供了一种经济、简单的机制。
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Response of foliar application of micronutrients and growth regulators on growth and yield attributes of Cabbage in a Vertisol of Central plain of C.G
Micronutrient and growth regulators both play an important role in sustaining agricultural production under intensive cultivation and changing scenario of climate. Therefore, study was conducted to find out the effect of foliar application of micronutrients and growth regulators on growth and yield attributes of cabbage in a Vertisol. The present investigation was carried out during Rabi Season of the years 2017 and 2018 at Instructional Farm, IGKV Raipur (C.G.) with eighteen different combinations of foliar application of micronutrient (B + Mo + Fe + Zn) and growth regulators (GA3 + NAA) with different micronutrient omission treatments. The present study demonstrates that combined effects of foliar application of micronutrient with growth regulators in Treatment T18 (B + Mo + Fe + Zn + GA + NAA) recorded maximum plant height (27.60 cm), plant spread (62.88 cm2), head diameter (16.17 cm2), leaf yield (22 q ha-1) and head yield (455 q ha-1). of cabbage. However, the micronutrients omission i.e. Fe, Mn, Cu, Zn, B and Mo was found to be significantly reduces the plant height, plant spread, leaf and head yield of cabbage. Large reductions in the yield of cabbage were observed with the omission of B (T9) as compared to the other micronutrient omission treatments. This indicates that B (T9) was the most yield limiting micronutrients followed by Fe (T4), Zn (T5) and Cu (T7). However, the foliar application of micronutrient enhances the plant height, fruit diameter, leaf and head yield. Similarly, the foliar fertigation of growth regulators (GA3 and NAA) may also significantly improve the growth and yield of cabbage. The combined effects of foliar application of micronutrient (100 ppm) with GA3 (50 ppm) and NAA (80 ppm) in twice (20 and 40 DAT) was found to be most effective for significant increased in growth, and yield attributes of cabbage. Present work recommended that foliar fertigation of micronutrient (B + Mo + Fe + Zn) with growth regulators (GA + NAA) can enhance the growth and yield performance of cabbage and could alter an economical and simple mechanism for quality cabbage production among the farming community.
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