CN109090124A - 一种芒果专用生长调节剂及其制备方法 - Google Patents
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Abstract
本发明属于水果种植技术领域,具体公开了一种芒果专用生长调节剂及其制备方法。本发明的芒果专用生长调节剂包括以下原料组分:赤霉素、萘乙酸、氯吡苯脲、硼砂、甘露醇、半胱氨酸、苯丙氨酸、苏氨酸、膨润土和油酸钠。本发明芒果专用生长调节剂的组分之间存在协同增效作用,各个组分结合,可有效提升芒果的坐果量和单果重量,从而有效提升芒果的产量。
Description
【技术领域】
本发明涉及水果种植技术领域,具体涉及一种芒果专用生长调节剂及其制备方法。
【背景技术】
芒果是世界著名五大水果之一,因其色美味甜而享有“热带果王”的美誉,其富含蛋白质、矿物质、碳水化合物、维生素、脂肪等多种营养成分,食用芒果具有益胃、解渴、利尿的功用。
芒果在世界热带水果中,芒果的栽培面积和产量仅次于香蕉。在我国,芒果的栽培历史悠久,目前在华南热带、亚热带广为种植,但开花不稳定,芒果花期过早易遇低温阴雨,花期过迟常遇异常高温危害,致使芒果坐果量降低,得到的芒果单个重量低,从而导致芒果减产甚至失收,严重影响了果农的经济收入。
因此,我们亟需一种可有效提升芒果坐果量和单果重量的植物生长调节剂,来保证芒果的增收。
【发明内容】
本发明的发明目的在于:针对上述存在的问题,提供一种芒果专用生长调节剂及其制备方法。本发明芒果专用生长调节剂的组分之间存在协同增效作用,各个组分结合,可有效提升芒果的坐果量和单果重量,从而有效提升芒果的产量。
为了实现上述目的,本发明采用的技术方案如下:
一种芒果专用生长调节剂,所述芒果专用生长调节剂包括以下原料组分:赤霉素、萘乙酸、氯吡苯脲、硼砂、甘露醇、半胱氨酸、苯丙氨酸、苏氨酸、膨润土和油酸钠。
进一步的,所述芒果专用生长调节剂包括以下重量份的原料组分:赤霉素3-6份、萘乙酸1-3份、氯吡苯脲2-5份、硼砂1-2份、甘露醇2-5份、半胱氨酸1-4份、苯丙氨酸1-3份、苏氨酸1-3份、膨润土3-5份和油酸钠2-5份。
进一步的,所述芒果专用生长调节剂包括以下重量份的原料组分:赤霉素5份、萘乙酸2份、氯吡苯脲4份、硼砂1.5份、甘露醇3份、半胱氨酸2份、苯丙氨酸2份、苏氨酸1.5份、膨润土4.5份和油酸钠4份。
进一步的,所述赤霉素的质量浓度为70-80mg/L,所述萘乙酸的质量浓度为35-45mg/L,所述氯吡苯脲的质量浓度为40-50mg/L。
进一步的,所述硼砂的质量浓度为20-25mg/L,所说半胱氨酸的质量浓度为40-50mg/L,所述苯丙氨酸的质量浓度为40-60mg/L,所述苏氨酸的质量浓度为20-30mg/L。
进一步的,所述一种芒果专用生长调节剂的制备方法,包括以下步骤:
(1)按重量份计,称取各个原料组分;
(2)将称取好的原料组分混合后,于110-125r/min的转速下搅拌30-40min,均质,即得所述芒果专用生长调节剂。
综上所述,由于采用了上述技术方案,本发明的有益效果是:
本发明的芒果专用生长调节剂由植物调节剂、硼砂、甘露醇、氨基酸和分散剂搭配制成,各个成分之间存在相互作用,混合制备得到的生长调节剂性质稳定、喷施效果显著,可有效提升芒果的坐果量和单果重量,从而有效提升芒果的产量。
【具体实施方式】
下面将结合具体实施例来对本发明作进一步的说明。
实施例1
一种芒果专用生长调节剂,主要由以下方法制备得到:
(1)按重量份计,称取下列原料组分:
其中,所述赤霉素的质量浓度为70mg/L,所述萘乙酸的质量浓度为35mg/L,所述氯吡苯脲的质量浓度为40mg/L,所述硼砂的质量浓度为20mg/L,所说半胱氨酸的质量浓度为40mg/L,所述苯丙氨酸的质量浓度为40mg/L,所述苏氨酸的质量浓度为20mg/L。
(2)将称取好的原料组分混合后,于110r/min的转速下搅拌30min,均质,即得所述芒果专用生长调节剂。
实施例2
一种芒果专用生长调节剂,主要由以下方法制备得到:
(1)按重量份计,称取下列原料组分:
其中,所述赤霉素的质量浓度为75mg/L,所述萘乙酸的质量浓度为40mg/L,所述氯吡苯脲的质量浓度为45mg/L,所述硼砂的质量浓度为22mg/L,所说半胱氨酸的质量浓度为48mg/L,所述苯丙氨酸的质量浓度为55mg/L,所述苏氨酸的质量浓度为24mg/L。
(2)将称取好的原料组分混合后,于120r/min的转速下搅拌35min,均质,即得所述芒果专用生长调节剂。
实施例3
一种芒果专用生长调节剂,主要由以下方法制备得到:
(1)按重量份计,称取下列原料组分:
其中,所述赤霉素的质量浓度为80mg/L,所述萘乙酸的质量浓度为45mg/L,所述氯吡苯脲的质量浓度为50mg/L,所述硼砂的质量浓度为25mg/L,所说半胱氨酸的质量浓度为50mg/L,所述苯丙氨酸的质量浓度为60mg/L,所述苏氨酸的质量浓度为30mg/L。
(2)将称取好的原料组分混合后,于125r/min的转速下搅拌40min,均质,即得所述芒果专用生长调节剂。
效果验证:
供试对象:供试芒果品种为7年生的台农,田间管理一致,树体生长良好,实验于2017年果实生长季节进行,地点位于百色市田东县某芒果园内。以5株芒果树为一组,全试验共计45株芒果树。
供试药剂:本发明实施例1的芒果专用生长调节剂,赤霉素、萘乙酸、氯吡苯脲、硼砂、甘露醇、半胱氨酸、苯丙氨酸或苏氨酸(质量浓度均与本发明芒果专用生长调节剂相同),即,处理组有9组,分别为喷施实施例1的芒果专用生长调节剂、赤霉素、萘乙酸、氯吡苯脲、硼砂、甘露醇、半胱氨酸、苯丙氨酸或苏氨酸溶液;以喷施等量清水作为对照组。
处理方法:于盛花期(90%以上花开)对芒果进行供试药剂的喷施。于同年4月15号和6月20号分别调查幼果期坐果量和采后平均单果重量,结果见表1:
表1各组芒果坐果量
处理 | 平均坐果量(个/株) | 平均单果重量(g) |
实施例1的生长调节剂 | 111 | 372.9 |
赤霉素 | 92 | 322.6 |
萘乙酸 | 85 | 320.9 |
氯吡苯脲 | 89 | 340.1 |
硼砂 | 83 | 326.7 |
甘露醇 | 75 | 324.4 |
半胱氨酸 | 77 | 315.8 |
苯丙氨酸 | 81 | 307.4 |
苏氨酸 | 73 | 312.9 |
清水 | 67 | 291.7 |
由表1可知,本发明实施例1的生长调节剂处理所得的平均坐果量和平均单果重量均明显高于其他组,而赤霉素、萘乙酸、氯吡苯脲、硼砂、甘露醇、半胱氨酸、苯丙氨酸或苏氨酸溶液处理的平均坐果量和平均单果重量也均高于清水处理组,说明本发明的生长调节剂的各个成分存在协同增效作用,相互结合,可有效提升芒果的坐果量和单果重量,从而有效提升芒果的产量。
经过实验证明,本发明实施例2和3的生长调节剂具有与实施例1的生长调节剂相同的效果,在此就不赘述了。
上述说明是针对本发明较佳可行实施例的详细说明,但实施例并非用以限定本发明的专利申请范围,凡本发明所提示的技术精神下所完成的同等变化或修饰变更,均应属于本发明所涵盖专利范围。
Claims (6)
1.一种芒果专用生长调节剂,其特征在于,所述芒果专用生长调节剂包括以下原料组分:赤霉素、萘乙酸、氯吡苯脲、硼砂、甘露醇、半胱氨酸、苯丙氨酸、苏氨酸、膨润土和油酸钠。
2.根据权利要求1所述一种芒果专用生长调节剂,其特征在于,所述芒果专用生长调节剂包括以下重量份的原料组分:赤霉素3-6份、萘乙酸1-3份、氯吡苯脲2-5份、硼砂1-2份、甘露醇2-5份、半胱氨酸1-4份、苯丙氨酸1-3份、苏氨酸1-3份、膨润土3-5份和油酸钠2-5份。
3.根据权利要求2所述一种芒果专用生长调节剂,其特征在于,所述芒果专用生长调节剂包括以下重量份的原料组分:赤霉素5份、萘乙酸2份、氯吡苯脲4份、硼砂1.5份、甘露醇3份、半胱氨酸2份、苯丙氨酸2份、苏氨酸1.5份、膨润土4.5份和油酸钠4份。
4.根据权利要求3所述一种芒果专用生长调节剂,其特征在于,所述赤霉素的质量浓度为70-80mg/L,所述萘乙酸的质量浓度为35-45mg/L,所述氯吡苯脲的质量浓度为40-50mg/L。
5.根据权利要求3所述一种芒果专用生长调节剂,其特征在于,所述硼砂的质量浓度为20-25mg/L,所说半胱氨酸的质量浓度为40-50mg/L,所述苯丙氨酸的质量浓度为40-60mg/L,所述苏氨酸的质量浓度为20-30mg/L。
6.根据权利要求1-5任意一项所述一种芒果专用生长调节剂的制备方法,其特征在于,包括以下步骤:
(1)按重量份计,称取各个原料组分;
(2)将称取好的原料组分混合后,于110-125r/min的转速下搅拌30-40min,均质,即得所述芒果专用生长调节剂。
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