播期和株行距对紫色土地区玫瑰茄农艺性状和产量的影响

    Effects of sowing date and planting-row spacing on agronomic traits and yield of roselle in purple soil area

    • 摘要: 研究播期和株行距对紫色土地区玫瑰茄农艺性状和产量及其构成的影响,为衡阳地区玫瑰茄高产栽培提供依据及技术支撑。以玫瑰茄为试验材料,设置2种间作模式(桃林下/玫瑰茄间作、柑林下/玫瑰茄间作),3个播期(4月5日、4月20日和5月5日)为主区,3个株行距(1 m×1 m 、1 m×1.5 m 和1.5 m×2 m)为副区,测定株高、冠幅、萼片产量及其构成等指标。结果表明:相同株行距,播期推迟,桃林下/玫瑰茄间作株高和冠幅显著增大,柑林下/玫瑰茄间作株高和冠幅呈先减小后增大趋势,两种间作模式均于播期处理(5月5日)达到最大值;桃林下/玫瑰茄间作千粒重减小,单朵萼片鲜重、单株萼片鲜重、单株鲜果产量、单株果实数、单株萼片干重和干萼片产量呈增大或先增大后减小趋势,干萼片产量于播期处理(4月20日)达到峰值,为14 217.55 kg·hm−2,柑林下/玫瑰茄间作处理千粒重先增大后减小,单株萼片鲜重、单株鲜果产量、单株果实数、单株萼片干重和干萼片产量先减小后增大,干萼片产量于播期处理(5月5日)达到最大值。同一播期,株行距从1 m×1 m增至1.5 m×2 m,两种间作模式玫瑰茄表现为株高显著降低,单朵萼片鲜重显著增加,冠幅、单株萼片鲜重和单株鲜果重基本呈增大或先增大后减小趋势,桃林下/玫瑰茄间作处理单株果实数、千粒重和单株萼片干重增加,干萼片产量减小,柑林下/玫瑰茄间作处理单株果实数和干萼片产量减小,单株萼片干重呈减小或先增大后减小趋势,两种间作模式干萼片产量在1 m×1 m株行距表现最佳。探究衡阳地区玫瑰茄适宜播期及株行距配置合理利用,可提高空间利用率,实现玫瑰茄增产,衡阳地区林下间作玫瑰茄选择播期为4月20日、1 m×1 m株行距协同配置最佳,玫瑰茄农艺性状表现优异,干萼片产量高,地块贫瘠或者雨季集中情况下,可以适当将播期推迟至5月5日。

       

      Abstract: To investigate the effects of different sowing dates and planting-row spacing on the agronomic traits, yield and yield components of roselle in purple soil areas, so as to provide theoretical and technical support for the high-yield of roselle cultivation in Hengyang area.Two intercropping modes(peach forest/roselle intercropping and citrus forest/roselle intercropping)were set up with roselle as the experimental material, three sowing dates(April 5, April 20 and May 5)were taken as the main plots, and three planting-row spacing(1 m×1 m, 1 m×1.5 m and 1.5 m×2 m)as the subplots, indicators such as plant height, crown width, sepal yield and its components were determined. The results showed that under the same planting-row spacing, with the delay of sowing date, the plant height and crown width of roselle intercropped under peach forest increased significantly, while those of roselle intercropped under citrus forest showed a trend of first decreasing and then increasing; both intercropping modes reached the maximum values at the sowing date of May 5. For peach forest/roselle intercropping, the 1000-seed weight decreased, while the fresh weight per sepal, fresh sepal weight per plant, fresh fruit yield per plant, fruit number per plant, dry sepal weight per plant and dry sepal yield showed an increasing trend or a trend of first increasing and then decreasing; the dry sepal yield peaked at 14217.55 kg·hm−2 on April 20. For citrus forest/roselle intercropping, the 1000-seed weight first increased and then decreased, while the fresh sepal weight per plant, fresh fruit yield per plant, fruit number per plant, dry sepal weight per plant and dry sepal yield first decreased and then increased; the dry sepal yield reached the maximum on May 5. At the same sowing date, as the planting-row spacing increased from 1 m×1 m to 1.5 m×2 m, the plant height of roselle decreased significantly and the fresh weight per sepal increased significantly in both intercropping modes; the crown width, fresh sepal weight per plant and fresh fruit weight per plant basically showed an increasing trend or a trend of first increasing and then decreasing. Under peach forest/roselle intercropping, the fruit number per plant, 1000-seed weight and dry sepal weight per plant increased, whereas the dry sepal yield decreased. Under citrus forest/roselle intercropping, the fruit number per plant and dry sepal yield decreased, and the dry sepal weight per plant showed a decreasing trend or a trend of first increasing and then decreasing. The dry sepal yield of both intercropping modes was the best at the planting-row spacing of 1 m×1 m. Exploring the suitable sowing date and rational planting-row spacing of roselle in Hengyang can improve space utilization and increase roselle yield. The optimal combination for intercropping roselle under forests in Hengyang is sowing on April 20 with a planting-row spacing of 1m×1 m, which results in excellent agronomic traits and high dry sepal yield of roselle. The sowing date can be appropriately delayed to May 5 in case of poor soil fertility or concentrated rainy seasons.

       

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