CN112400918A - 应对酿酒葡萄植株冻害的快速修复组合物及其应用 - Google Patents

应对酿酒葡萄植株冻害的快速修复组合物及其应用 Download PDF

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CN112400918A
CN112400918A CN202011342765.5A CN202011342765A CN112400918A CN 112400918 A CN112400918 A CN 112400918A CN 202011342765 A CN202011342765 A CN 202011342765A CN 112400918 A CN112400918 A CN 112400918A
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王锐
蒋鹏
张军翔
孙权
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Ningxia University
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Abstract

本发明提出了一种应对酿酒葡萄植株冻害的快速修复组合物及其应用,所述组合物包括:海藻素,磷酸二氢钾,复硝酚钠,芸苔素内脂,吲哚丁酸钾,黄腐酸,生姜,白胡椒粉,苯丙氨酸,天冬酰胺,谷氨酰胺,苏氨酸,壳聚糖,聚苯乙烯和甘氨酸。本发明的应对酿酒葡萄植株冻害的快速修复组合物,通过在其中添加复合氨基酸组分以及芸苔素内脂、吲哚丁酸钾等原料,配伍合理,其中所添加的多种修复组分,可以协同作用,能刺激较弱的、不饱满尚未发芽的弱芽、隐芽快速萌发,防止其抽干,确保葡萄植株成活,保证葡萄的正常开花结果,从而实现在短时间内对冻伤后的酿酒葡萄植株进行修复,及时挽救受损酿酒葡萄植株,减少损失,具有很好的商业前景。

Description

应对酿酒葡萄植株冻害的快速修复组合物及其应用
技术领域
本发明涉及一种应对酿酒葡萄植株冻害的快速修复组合物及其应用。
背景技术
“霜冻”是一种灾害性天气现象,是指在生长季节里,夜晚土壤表面温度或植物冠层附近的气温短时间内下降至0℃或0℃以下,植物表面的温度迅速下降,致使葡萄遭受伤害,植物体内水分发生冻结,代谢过程遭受破坏,细胞被冰块挤压而造成危害。
发生霜冻时,植物是因为低温受到危害,不是单单因为霜对植物造成危害。晚霜冻是由寒冷季节向温暖季节过渡时期发生的霜冻。从晚霜冻个例分析可得出,晚霜冻是一次明显降水天气过程结束,夜间天气晴朗出现的一种短时间低温灾害。由于冷空气的入侵,阴雨天气持续,地面的热能相对减少,降水天气停止,夜间天气晴朗,大气长波辐射使近地面空气层的浊度骤降(辐射冷却),从而形成晚霜冻天气过程。
由于晚霜低温冻害频繁发生,对葡萄生产造成了极大危害。2004年甘肃地区祁连酒业公司酿酒葡萄基地遭受几十年一遇的-8.3℃晚霜低温冻害,致使当年葡萄产量几乎绝收;2012年5月12日再次遭到低温晚霜冻害,产量受到很大的影响。轻微的晚霜每年都有不同程度的发生。
在晚霜冻害的预防上,目前大部分采用的是熏烟、灌溉、覆盖等方法。但是对于霜冻初期的葡萄的修复,目前暂时还很少研究。但是如果能够得到及时有效的修复,仍然能够挽回很大损失。因此,亟待提出一种用于修复酿酒葡萄冻伤的产品,以减少由霜冻带来的损失。
发明内容
本发明提出了一种应对酿酒葡萄植株冻害的快速修复组合物,可以对酿酒葡萄植株冻伤进行修复,使酿酒葡萄植株冻伤得到及时有效修复,减少损失。
第一方面,本发明提出了一种应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素10份-30份,磷酸二氢钾1份-5份,复硝酚钠0.1份-1份,芸苔素内脂10份-30份,吲哚丁酸钾0.01份-1份,黄腐酸5份-15份,生姜2份-12份,白胡椒粉1份-5份,苯丙氨酸15份-30份,天冬酰胺20份-40份,谷氨酰胺18份-36份,赖氨酸10份-20份和苏氨酸25份-45份;
组分B:壳聚糖20份-30份和聚苯乙烯5份-20份;
组分C:甘氨酸10份-20份和微量元素0.01份-1份。
本发明中,壳聚糖和海藻素或者芸苔素等能促进受损芽的修复;磷酸二氢钾和微量元素能促进根系的营养补充,复硝酚钠或者吲哚丁酸钾能刺激葡萄根系萌发新根,促进新芽萌发。
本发明的应对酿酒葡萄植株冻害的快速修复组合物,通过在其中添加复合氨基酸组分以及芸苔素内脂、吲哚丁酸钾等原料,配伍合理,其中所添加的多种修复组分,可以协同作用,能刺激较弱的、不饱满尚未发芽的弱芽、隐芽快速萌发,防止其抽干,确保葡萄植株成活,保证葡萄的正常开花结果,从而实现在短时间内对冻伤后的酿酒葡萄植株进行修复,及时挽救受损酿酒葡萄植株,减少损失,具有很好的商业前景。
作为本发明具体的实施方式,所述的应对酿酒葡萄植株冻害的快速修复组合物,组分C还包括如下重量份数的原料:
丙氨酸10份-20份,缬氨酸1份-10份和亮氨酸10份-30份。
作为本发明具体的实施方式,所述微量元素选自铁、碘、锌、硒、氟、铜、钴、镉、汞、铅、铝、钨、钡、钛、铌、锆、铷、锗和稀土元素中的任意一种;优选地,所述微量元素为铁、碘、锌、硒、锆、铷、锗和稀土元素,其质量比为1:(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2)。
作为本发明具体的实施方式,所述的应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素10份,磷酸二氢钾5份,复硝酚钠0.1份,芸苔素内脂30份,吲哚丁酸钾0.01份,黄腐酸15份,生姜2份,白胡椒粉5份,苯丙氨酸15份,天冬酰胺40份,谷氨酰胺18份,赖氨酸10份和苏氨酸45份;
组分B:壳聚糖30份和聚苯乙烯5份;
组分C:甘氨酸10份,丙氨酸20份,缬氨酸1份,亮氨酸30份和微量元素0.01份。
作为本发明具体的实施方式,所述的应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素30份,磷酸二氢钾1份,复硝酚钠1份,芸苔素内脂10份,吲哚丁酸钾1份,黄腐酸5份,生姜12份,白胡椒粉1份,苯丙氨酸30份,天冬酰胺20份,谷氨酰胺36份,赖氨酸20份和苏氨酸25份;
组分B:壳聚糖20份和聚苯乙烯20份;
组分C:甘氨酸20份,丙氨酸10份,缬氨酸10份,亮氨酸10份和微量元素1份。
作为本发明具体的实施方式,所述的应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素20份,磷酸二氢钾2份,复硝酚钠0.5份,芸苔素内脂20份,吲哚丁酸钾0.1份,黄腐酸10份,生姜7份,白胡椒粉3份,苯丙氨酸22份,天冬酰胺30份,谷氨酰胺27份,赖氨酸15份和苏氨酸35份;
组分B:壳聚糖25份和聚苯乙烯12份;
组分C:甘氨酸15份,丙氨酸15份,缬氨酸5份,亮氨酸20份和微量元素0.5份。
作为本发明具体的实施方式,所述的应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素15份,磷酸二氢钾4份,复硝酚钠0.25份,芸苔素内脂25份,吲哚丁酸钾0.05份,黄腐酸13份,生姜5份,白胡椒粉4份,苯丙氨酸17份,天冬酰胺35份,谷氨酰胺24份,赖氨酸12份和苏氨酸40份;
组分B:壳聚糖28份和聚苯乙烯7份;
组分C:甘氨酸12份,丙氨酸18份,缬氨酸3份,亮氨酸25份和微量元素0.05份。
作为本发明具体的实施方式,所述的应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素25份,磷酸二氢钾2份,复硝酚钠0.75份,芸苔素内脂15份,吲哚丁酸钾0.5份,黄腐酸7份,生姜10份,白胡椒粉2份,苯丙氨酸25份,天冬酰胺25份,谷氨酰胺30份,赖氨酸17份和苏氨酸30份;
组分B:壳聚糖23份和聚苯乙烯16份;
组分C:甘氨酸18份,丙氨酸12份,缬氨酸8份,亮氨酸15份和微量元素0.8份。
第二方面,本发明提出了利用所述组合物修复酿酒葡萄植株冻伤的方法。
利用所述组合物修复酿酒葡萄冻伤的方法,包括如下步骤:
S101:将所述生姜干燥并研磨成粉末,然后加入组分A和组分C中的剩余原料进行混合,得到混合粉料。粉料的粒径可以为纳米级或微米级,本发明对此不作特别限定。
S102:将组分B的原料混合后制备成膜,膜的厚度以使其能够实现保温即可。
S103:将所述步骤S101得到的混合粉料施加到冻伤葡萄藤表面,然后用所述步骤S102制备的膜覆盖所述葡萄藤。
施加粉料的方式可以为喷施,也可以是滴灌,本发明对此不作特别限定。
将修复组合物涂抹于葡萄植株(包括葡萄藤或葡萄芽等)表面后,会在葡萄藤表面形成一层薄膜,使修复剂薄膜内的生物学成分缓慢释放,不会使葡萄藤因失去水份、降低营养而失活,同时,由于覆盖了壳聚糖和聚苯乙烯制备的薄膜,加速了其修复作用。
本发明的利用所述组合物修复酿酒葡萄植株冻伤的方法,操作简单,通过粉料组分对其进行修复,同时采用含有壳聚糖的膜对其实施保温操作,加速了酿酒葡萄植株冻伤的修复速度。
第三方面,本发明提出了所述组合物在制备预防、修复植物冻伤产品中的应用。
本发明的应对酿酒葡萄植株冻害的快速修复组合物,通过在其中添加复合氨基酸组分以及芸苔素内脂、吲哚丁酸钾等原料,配伍合理,其中所添加的多种修复组分,可以协同作用,能刺激较弱的、不饱满尚未发芽的弱芽、隐芽快速萌发,防止其抽干,确保葡萄植株成活,保证葡萄的正常开花结果,从而实现在短时间内对冻伤后的酿酒葡萄植株进行修复,及时挽救受损酿酒葡萄植株,减少损失,具有很好的商业前景。本发明的利用所述组合物修复酿酒葡萄植株冻伤的方法,操作简单,通过粉料组分对其进行修复,同时采用含有壳聚糖的膜对其实施保温操作,加速了酿酒葡萄植株冻伤的修复速度。
具体实施方式
下面结合具体实施例对本发明作进一步说明,但并不构成对本发明的任何限制。
实施例1
实施例1提出了一种应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素10份,磷酸二氢钾5份,复硝酚钠0.1份,芸苔素内脂30份,吲哚丁酸钾0.01份,黄腐酸15份,生姜2份,白胡椒粉5份,苯丙氨酸15份,天冬酰胺40份,谷氨酰胺18份,赖氨酸10份和苏氨酸45份;
组分B:壳聚糖30份和聚苯乙烯5份;
组分C:甘氨酸10份和微量元素0.01份,所述微量元素包括质量比为1:1:1:1的铁、碘、锌、硒。
实施例2
实施例2提出了一种应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素30份,磷酸二氢钾1份,复硝酚钠1份,芸苔素内脂10份,吲哚丁酸钾1份,黄腐酸5份,生姜12份,白胡椒粉1份,苯丙氨酸30份,天冬酰胺20份,谷氨酰胺36份,赖氨酸20份和苏氨酸25份;
组分B:壳聚糖20份和聚苯乙烯20份;
组分C:甘氨酸20份和微量元素1份,所述微量元素包括质量比为1:1:1:1的钴、镉、汞、铅。
实施例3
实施例3提出了一种应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素20份,磷酸二氢钾2份,复硝酚钠0.5份,芸苔素内脂20份,吲哚丁酸钾0.1份,黄腐酸10份,生姜7份,白胡椒粉3份,苯丙氨酸22份,天冬酰胺30份,谷氨酰胺27份,赖氨酸15份和苏氨酸35份;
组分B:壳聚糖25份和聚苯乙烯12份;
组分C:甘氨酸15份和微量元素0.5份,所述微量元素包括质量比为1:1:1:1的铁、碘、锌、硒。
实施例4
实施例4提出了一种应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素15份,磷酸二氢钾4份,复硝酚钠0.25份,芸苔素内脂25份,吲哚丁酸钾0.05份,黄腐酸13份,生姜5份,白胡椒粉4份,苯丙氨酸17份,天冬酰胺35份,谷氨酰胺24份,赖氨酸12份和苏氨酸40份;
组分B:壳聚糖28份和聚苯乙烯7份;
组分C:甘氨酸12份和微量元素0.05份,所述微量元素包括质量比为1:1:1:1的铁、碘、锌、硒。
实施例5
实施例5提出了一种应对酿酒葡萄植株冻害的快速修复组合物,包括如下重量份数的原料:
组分A:海藻素25份,磷酸二氢钾2份,复硝酚钠0.75份,芸苔素内脂15份,吲哚丁酸钾0.5份,黄腐酸7份,生姜10份,白胡椒粉2份,苯丙氨酸25份,天冬酰胺25份,谷氨酰胺30份,赖氨酸17份和苏氨酸30份;
组分B:壳聚糖23份和聚苯乙烯16份;
组分C:甘氨酸18份和微量元素0.8份,所述微量元素包括质量比为1:1:1:1的钴、镉、汞、铅。
实施例6
实施例6与实施例1的区别仅在于,实施例6组分C还包括如下重量份数的原料:丙氨酸0.1份,缬氨酸1.5份和亮氨酸1份,其他原料均相同。
实施例7
实施例7与实施例2的区别仅在于,实施例7组分C还包括如下重量份数的原料:丙氨酸2份,缬氨酸0.5份和亮氨酸3份,其他原料均相同。
实施例8
实施例8与实施例3的区别仅在于,实施例8组分C还包括如下重量份数的原料:丙氨酸1份,缬氨酸1份和亮氨酸2份,其他原料均相同。
实施例9
实施例9与实施例4的区别仅在于,实施例9组分C还包括如下重量份数的原料:丙氨酸0.5份,缬氨酸1.2份和亮氨酸1.2份,其他原料均相同。
实施例10
实施例10与实施例5的区别仅在于,实施例10组分C还包括如下重量份数的原料:丙氨酸1.8份,缬氨酸0.7份和亮氨酸2.8份,其他原料均相同。
实施例11
实施例11与实施例6的区别仅在于,实施例11所述微量元素为铁、碘、锌、硒、锆、铷、锗和稀土元素,其质量比为1:1:1:1:1:1:1:1,其他原料均相同。
实施例12
实施例12与实施例6的区别仅在于,实施例12组分所述微量元素为铁、碘、锌、硒、锆、铷、锗和稀土元素,其质量比为1:1:1:1:1:1:1:1,其他原料均相同。
对比例1
对比例1与实施例1的区别仅在于,对比例1中不包括组分B,其余原料均相同。
对比例2
对比例2与实施例1的区别仅在于,对比例2中不包括生姜、苯丙氨酸和天冬氨酸,其余原料均相同。
对比例3
对比例3与实施例1的区别仅在于,对比例2中不包括芸苔素内脂和苏氨酸,其余原料均相同。
选择468株冻伤的酿酒葡萄植株(包括葡萄苗和葡萄藤),并将其平均分为13组,分别采用下述方法将所述组合物对冻伤的葡萄植株进行修复:
(1)将所述生姜干燥并研磨成粉末,然后加入组分A和组分C中的剩余原料进行混合,得到混合粉料。
(2)将组分B的原料混合后制备成膜,膜的厚度以使其能够实现保温即可。
(3)将所述步骤(1)得到的混合粉料施加到冻伤的葡萄苗及葡萄藤表面,然后用所述步骤(2)制备的膜覆盖所述葡萄苗及葡萄藤。
计算葡萄植株的存活率:
葡萄植株存活率=存活的葡萄植株/每组葡萄植株数量×100%,结果见表1。
表1
Figure BDA0002798985970000081
Figure BDA0002798985970000091
综上,本发明的应对酿酒葡萄植株冻害的快速修复组合物,通过在其中添加复合氨基酸组分以及芸苔素内脂、吲哚丁酸钾等原料,配伍合理,其中所添加的多种修复组分,可以协同作用,能刺激较弱的、不饱满尚未发芽的弱芽、隐芽快速萌发,防止其抽干,确保葡萄植株成活,保证葡萄的正常开花结果,从而实现在短时间内对冻伤后的酿酒葡萄植株进行修复,及时挽救受损酿酒葡萄植株,减少损失,具有很好的商业前景。本发明的利用所述组合物修复酿酒葡萄植株冻伤的方法,操作简单,通过粉料组分对其进行修复,同时采用含有壳聚糖的膜对其实施保温操作,加速了酿酒葡萄植株冻伤的修复速度。
在本发明中的提到的任何数值,如果在任何最低值和任何最高值之间只是有两个单位的间隔,则包括从最低值到最高值的每次增加一个单位的所有值。例如,如果声明一种组分的量,或诸如温度、压力、时间等工艺变量的值为50-90,在本说明书中它的意思是具体列举了51-89、52-88……以及69-71以及70-71等数值。对于非整数的值,可以适当考虑以0.1、0.01、0.001或0.0001为一单位。这仅是一些特殊指明的例子。在本申请中,以相似方式,所列举的最低值和最高值之间的数值的所有可能组合都被认为已经公开。
应当注意的是,以上所述的实施例仅用于解释本发明,并不构成对本发明的任何限制。通过参照典型实施例对本发明进行了描述,但应当理解为其中所用的词语为描述性和解释性词汇,而不是限定性词汇。可以按规定在本发明权利要求的范围内对本发明作出修改,以及在不背离本发明的范围和精神内对本发明进行修订。尽管其中描述的本发明涉及特定的方法、材料和实施例,但是并不意味着本发明限于其中公开的特定例,相反,本发明可扩展至其他所有具有相同功能的方法和应用。

Claims (10)

1.一种应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,包括如下重量份数的原料:
组分A:海藻素10份-30份,磷酸二氢钾1份-5份,复硝酚钠0.1份-1份,芸苔素内脂10份-30份,吲哚丁酸钾0.01份-1份,黄腐酸5份-15份,生姜2份-12份,白胡椒粉1份-5份,苯丙氨酸15份-30份,天冬酰胺20份-40份,谷氨酰胺18份-36份,赖氨酸10份-20份和苏氨酸25份-45份;
组分B:壳聚糖20份-30份和聚苯乙烯5份-20份;
组分C:甘氨酸10份-20份和微量元素0.01份-1份。
2.根据权利要求1所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,组分C还包括如下重量份数的原料:
丙氨酸10份-20份,缬氨酸1份-10份和亮氨酸10份-30份。
3.根据权利要求1或2所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,所述微量元素选自铁、碘、锌、硒、氟、铜、钴、镉、汞、铅、铝、钨、钡、钛、铌、锆、铷、锗和稀土元素中的任意一种;优选地,所述微量元素为铁、碘、锌、硒、锆、铷、锗和稀土元素,其质量比为1:(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2):(0.8-1.2)。
4.根据权利要求2或3所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,包括如下重量份数的原料:
组分A:海藻素10份,磷酸二氢钾5份,复硝酚钠0.1份,芸苔素内脂30份,吲哚丁酸钾0.01份,黄腐酸15份,生姜2份,白胡椒粉5份,苯丙氨酸15份,天冬酰胺40份,谷氨酰胺18份,赖氨酸10份和苏氨酸45份;
组分B:壳聚糖30份和聚苯乙烯5份;
组分C:甘氨酸10份,丙氨酸20份,缬氨酸1份,亮氨酸30份和微量元素0.01份。
5.根据权利要求2或3所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,包括如下重量份数的原料:
组分A:海藻素30份,磷酸二氢钾1份,复硝酚钠1份,芸苔素内脂10份,吲哚丁酸钾1份,黄腐酸5份,生姜12份,白胡椒粉1份,苯丙氨酸30份,天冬酰胺20份,谷氨酰胺36份,赖氨酸20份和苏氨酸25份;
组分B:壳聚糖20份和聚苯乙烯20份;
组分C:甘氨酸20份,丙氨酸10份,缬氨酸10份,亮氨酸10份和微量元素1份。
6.根据权利要求2或3所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,包括如下重量份数的原料:
组分A:海藻素20份,磷酸二氢钾2份,复硝酚钠0.5份,芸苔素内脂20份,吲哚丁酸钾0.1份,黄腐酸10份,生姜7份,白胡椒粉3份,苯丙氨酸22份,天冬酰胺30份,谷氨酰胺27份,赖氨酸15份和苏氨酸35份;
组分B:壳聚糖25份和聚苯乙烯12份;
组分C:甘氨酸15份,丙氨酸15份,缬氨酸5份,亮氨酸20份和微量元素0.5份。
7.根据权利要求2或3所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,包括如下重量份数的原料:
组分A:海藻素15份,磷酸二氢钾4份,复硝酚钠0.25份,芸苔素内脂25份,吲哚丁酸钾0.05份,黄腐酸13份,生姜5份,白胡椒粉4份,苯丙氨酸17份,天冬酰胺35份,谷氨酰胺24份,赖氨酸12份和苏氨酸40份;
组分B:壳聚糖28份和聚苯乙烯7份;
组分C:甘氨酸12份,丙氨酸18份,缬氨酸3份,亮氨酸25份和微量元素0.05份。
8.根据权利要求2或3所述的应对酿酒葡萄植株冻害的快速修复组合物,其特征在于,包括如下重量份数的原料:
组分A:海藻素25份,磷酸二氢钾2份,复硝酚钠0.75份,芸苔素内脂15份,吲哚丁酸钾0.5份,黄腐酸7份,生姜10份,白胡椒粉2份,苯丙氨酸25份,天冬酰胺25份,谷氨酰胺30份,赖氨酸17份和苏氨酸30份;
组分B:壳聚糖23份和聚苯乙烯16份;
组分C:甘氨酸18份,丙氨酸12份,缬氨酸8份,亮氨酸15份和微量元素0.8份。
9.利用权利要求1-8任一项所述组合物修复酿酒葡萄植株冻伤的方法,其特征在于,包括如下步骤:
S101:将所述生姜干燥并研磨成粉末,然后加入组分A和组分C中的剩余原料进行混合,得到混合粉料;
S102:将组分B的原料混合后制备成膜;
S103:将所述步骤S101得到的混合粉料施加到冻伤的酿酒葡萄植株表面,然后用所述步骤S102制备的膜覆盖所述葡萄植株。
10.权利要求1-7任一项所述组合物在制备预防、修复植物冻伤产品中的应用。
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