CN115136836B - 一种提高澳洲坚果695品种果实性状的方法 - Google Patents
一种提高澳洲坚果695品种果实性状的方法 Download PDFInfo
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- FPAFDBFIGPHWGO-UHFFFAOYSA-N dioxosilane;oxomagnesium;hydrate Chemical compound O.[Mg]=O.[Mg]=O.[Mg]=O.O=[Si]=O.O=[Si]=O.O=[Si]=O.O=[Si]=O FPAFDBFIGPHWGO-UHFFFAOYSA-N 0.000 claims description 9
- CSNNHWWHGAXBCP-UHFFFAOYSA-L Magnesium sulfate Chemical compound [Mg+2].[O-][S+2]([O-])([O-])[O-] CSNNHWWHGAXBCP-UHFFFAOYSA-L 0.000 claims description 8
- IXORZMNAPKEEDV-UHFFFAOYSA-N gibberellic acid GA3 Natural products OC(=O)C1C2(C3)CC(=C)C3(O)CCC2C2(C=CC3O)C1C3(C)C(=O)O2 IXORZMNAPKEEDV-UHFFFAOYSA-N 0.000 claims description 8
- SEOVTRFCIGRIMH-UHFFFAOYSA-N indole-3-acetic acid Chemical compound C1=CC=C2C(CC(=O)O)=CNC2=C1 SEOVTRFCIGRIMH-UHFFFAOYSA-N 0.000 claims description 8
- 239000000463 material Substances 0.000 claims description 8
- REZQBEBOWJAQKS-UHFFFAOYSA-N triacontan-1-ol Chemical compound CCCCCCCCCCCCCCCCCCCCCCCCCCCCCCO REZQBEBOWJAQKS-UHFFFAOYSA-N 0.000 claims description 8
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- MNNHAPBLZZVQHP-UHFFFAOYSA-N diammonium hydrogen phosphate Chemical compound [NH4+].[NH4+].OP([O-])([O-])=O MNNHAPBLZZVQHP-UHFFFAOYSA-N 0.000 claims description 4
- 229910000388 diammonium phosphate Inorganic materials 0.000 claims description 4
- 235000019838 diammonium phosphate Nutrition 0.000 claims description 4
- GPXLRLUVLMHHIK-UHFFFAOYSA-N forchlorfenuron Chemical compound C1=NC(Cl)=CC(NC(=O)NC=2C=CC=CC=2)=C1 GPXLRLUVLMHHIK-UHFFFAOYSA-N 0.000 claims description 4
- 229940095100 fulvic acid Drugs 0.000 claims description 4
- 239000002509 fulvic acid Substances 0.000 claims description 4
- 239000003448 gibberellin Substances 0.000 claims description 4
- IXORZMNAPKEEDV-OBDJNFEBSA-N gibberellin A3 Chemical compound C([C@@]1(O)C(=C)C[C@@]2(C1)[C@H]1C(O)=O)C[C@H]2[C@]2(C=C[C@@H]3O)[C@H]1[C@]3(C)C(=O)O2 IXORZMNAPKEEDV-OBDJNFEBSA-N 0.000 claims description 4
- 239000008103 glucose Substances 0.000 claims description 4
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- 239000003617 indole-3-acetic acid Substances 0.000 claims description 4
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- 238000007873 sieving Methods 0.000 claims description 4
- 239000004328 sodium tetraborate Substances 0.000 claims description 4
- 235000010339 sodium tetraborate Nutrition 0.000 claims description 4
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- UZKQTCBAMSWPJD-UQCOIBPSSA-N trans-Zeatin Natural products OCC(/C)=C\CNC1=NC=NC2=C1N=CN2 UZKQTCBAMSWPJD-UQCOIBPSSA-N 0.000 claims description 4
- UZKQTCBAMSWPJD-FARCUNLSSA-N trans-zeatin Chemical compound OCC(/C)=C/CNC1=NC=NC2=C1N=CN2 UZKQTCBAMSWPJD-FARCUNLSSA-N 0.000 claims description 4
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- 239000010828 animal waste Substances 0.000 claims description 2
- 238000010790 dilution Methods 0.000 claims description 2
- 239000012895 dilution Substances 0.000 claims description 2
- SWHAQEYMVUEVNF-UHFFFAOYSA-N magnesium potassium Chemical compound [Mg].[K] SWHAQEYMVUEVNF-UHFFFAOYSA-N 0.000 claims description 2
- 230000000052 comparative effect Effects 0.000 description 16
- 239000003755 preservative agent Substances 0.000 description 10
- 230000005094 fruit set Effects 0.000 description 7
- 210000003608 fece Anatomy 0.000 description 4
- 241000208467 Macadamia Species 0.000 description 3
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- BMQVDVJKPMGHDO-UHFFFAOYSA-K magnesium;potassium;chloride;sulfate;trihydrate Chemical compound O.O.O.[Mg+2].[Cl-].[K+].[O-]S([O-])(=O)=O BMQVDVJKPMGHDO-UHFFFAOYSA-K 0.000 description 2
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Abstract
本发明公开一种提高澳洲坚果695品种果实性状的方法,包括如下步骤:以澳洲坚果桂热1号品种或澳洲坚果南亚2号品种为父本,以澳洲坚果695品种为母本,在花蕾期分别给父本和母本第一次施用澳洲坚果专用肥;在母本开花时,采集父本的花粉,采用人工授粉的方式对母本进行授粉;在花期分别给父本和母本喷施保花药剂,且第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为10~15天;在花谢后第7~15天给母本第二次施用澳洲坚果专用肥。本发明通过选取特定品种的澳洲坚果作为父本对澳洲坚果695品种进行授粉,并在不同生长阶段施用不同的药剂,可使澳洲坚果695品种的授粉成功率及坐果率大幅提高。
Description
技术领域
本发明涉及澳洲坚果695品种改良技术领域。具体地说是一种提高澳洲坚果695品种果实性状的方法。
背景技术
澳洲坚果属山龙眼科,坚果属常绿乔木,树冠高大,叶披针形,总状花序,果圆球形,原产于澳大利亚昆士兰东南部和新南威尔士东北部沿岸的亚热带雨林地区,具有商业价值的为光壳种、粗壳种以及光壳和粗壳的杂交种。澳洲坚果695品种属于粗壳种,其树冠疏散呈圆形,直立生长性强,自然分枝多,且具有根系发达,抗风能力强,产量稳定,挂果早等优点;另外,澳洲坚果695品种的果仁自带奶香味,深受广大消费者的喜欢,具有很高的经济价值。
澳洲坚果695品种的开花多、花序长达18~22厘米,由于澳洲坚果695品种为异化授粉,授粉成功率较低,且授粉后其坐果率还与授粉父本的品种有关;目前,澳洲坚果695虽然开花数量较大,一般每穗的开花数量可达300朵,但是其每根花序轴最终的挂果率却很低,通常情况下澳洲坚果695品种每穗挂果仅为1~2个,少数果穗能挂果3个,且果穗呈软枝散串状。其它品种的澳洲坚果,比如“桂热1号”,其单穗挂果可呈串珠或串穗状。澳洲坚果695的单穗挂果率低严重影响了该品种的推广种植。因此,提高澳洲坚果695的单穗挂果率是进一步提高其产量的关键,也是扩大其种植面积的重要途径。
发明内容
为此,本发明所要解决的技术问题在于提供一种提高澳洲坚果695品种果实性状的方法,以解决当前澳洲坚果695品种单穗挂果率低、产量低的问题。
为解决上述技术问题,本发明提供如下技术方案:
一种提高澳洲坚果695品种果实性状的方法,包括如下步骤:
步骤A:以澳洲坚果桂热1号品种或澳洲坚果南亚2号品种为父本,以澳洲坚果695品种为母本,在花蕾期分别给父本和母本第一次施用澳洲坚果专用肥;
步骤B:在母本开花时,采集父本的花粉,采用人工授粉的方式对母本进行授粉;在始花期分别给父本和母本喷施保花药剂,且第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为10~15天;
步骤C:在花谢后第7~15天给母本第二次施用澳洲坚果专用肥,第二次施用澳洲坚果专用肥后给母本喷施保果药剂;第二次施用澳洲坚果专用肥的施肥时间与保果药剂的喷施时间间隔为3~7天;
步骤D:在花谢后第60~70天给母本第三次施用澳洲坚果专用肥,第三次施用澳洲坚果专用肥后给母本喷施果实膨大剂;第三次施用澳洲坚果专用肥的施肥时间与果实膨大剂的喷施时间间隔为5~10天。
上述提高澳洲坚果695品种果实性状的方法,澳洲坚果专用肥由如下重量份的组分组成:
磷酸二铵20~30重量份、无水氯化钙10~25重量份、黄腐酸5~15重量份、无水钾镁矾5~10重量份、硼砂1~3重量份、乙氧基改性聚三硅氧烷2~5重量份和动物粪便60~90重量份;动物粪便为牛、羊、猪和禽类动物的粪便。
上述提高澳洲坚果695品种果实性状的方法,步骤A中,第一次施用澳洲坚果专用肥的施用量为20~35kg/亩;步骤C中,第二次施用澳洲坚果专用肥的施用量为30~50kg/亩;步骤D中,第三次施用澳洲坚果专用肥的施用量为50~70kg/亩。
上述提高澳洲坚果695品种果实性状的方法,步骤B中,保花药剂由如下重量份的组分组成:
玉米素5~8重量份、萘乙酸3~5重量份、6-苄氨基嘌呤1~3重量份、赤霉酸1~5重量份、乙氧基改性聚三硅氧烷2~5重量份、葡萄糖10~20重量份和80~100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为60%~80%。
上述提高澳洲坚果695品种果实性状的方法,步骤B中,人工授粉的方式为:收集父本的花粉,并向花粉中掺入花粉稀释剂,将花粉与花粉稀释剂混合均匀后,为母本植株上刚开花的花进行人工授粉;花粉与花粉稀释剂的质量之比为1:1.5~3。
上述提高澳洲坚果695品种果实性状的方法,花粉稀释剂的制备方法为:
步骤B-1:将保花药剂滴入滑石粉中,边滴加边搅拌,得到混合物料;
步骤B-2:将混合物料置于旋转蒸发仪上挥干溶剂,将得到的固态颗粒研磨后过800目筛,即制备得到花粉稀释剂;
保花药剂与滑石粉的质量之比为1~1.5:1。
上述提高澳洲坚果695品种果实性状的方法,保果药剂由如下重量份的组分组成:
吲哚乙酸3~7重量份、氯吡脲5~8重量份、芸苔素2~10重量份、乙氧基改性聚三硅氧烷2~5重量份、2,4-二氯苯氧乙酸5~10重量份和80~100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为60%~80%。
上述提高澳洲坚果695品种果实性状的方法,果实膨大剂由如下重量份的组分组成:
复硝酚钠5~10重量份、赤霉素2~6重量份、细胞分裂素1~5重量份、乙氧基改性聚三硅氧烷2~5重量份、硫酸镁10~20重量份、三十烷醇5~10重量份和80~100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为60%~80%。
上述提高澳洲坚果695品种果实性状的方法,步骤B中,保花药剂的喷施量为400~500g/亩,喷施时,将保花药剂兑水稀释后再喷;步骤C中,保果药剂的喷施量为200~300g/亩,喷施时,将保果药剂兑水稀释后再喷;步骤D中,果实膨大剂的喷施量为300~500g/亩,喷施时,将果实膨大剂兑水稀释后再喷。
上述提高澳洲坚果695品种果实性状的方法,喷施时,保花药剂、保果药剂和果实膨大剂的稀释倍数为50~80倍;本发明中的澳洲坚果专用肥、保花药剂、保果药剂和果实膨大剂也可以分别用市售的有机复合肥、具有保花、保果和果实膨大功能的药剂进行替代,也可以提高澳洲坚果695的单穗挂果率,但其对澳洲坚果695品种单穗挂果率的提高不如使用本发明中澳洲坚果专用肥、保花药剂、保果药剂和果实膨大剂的提高效果。
本发明的技术方案取得了如下有益的技术效果:
1、本发明通过选取特定品种的澳洲坚果作为父本对澳洲坚果695品种进行授粉,并在不同生长阶段施用不同的药剂,可使澳洲坚果695品种的授粉成功率及坐果率大幅提高;通过控制不同生长阶段不同药剂的施用量,可使其花序轴由软枝状转变成硬枝状,有利于果实坐果和膨大,从而得到挂果率高、呈串穗状的单果穗,有效提高了澳洲坚果695品种的产量。
2、与澳洲坚果695品种自由授粉相比,当以澳洲坚果桂热1号品种或澳洲坚果南亚2号品种为父本、采用本发明制备的花粉稀释剂对从父本上采集的花粉稀释后,进行人工授粉并采用本发明的种植管理方法,可以显著提高澳洲坚果695品种的单穗果实挂果率,且果穗枝条呈硬枝条状,而自由授粉的澳洲坚果695品种的果穗仍然为软枝条状,采用本发明方法栽培的澳洲坚果695品种单穗挂果个数增加至3~15个。
3、本发明通过在特定阶段喷施特定组成成分的保花药剂、保果药剂和果实膨大剂,控制澳洲坚果专用肥的施肥时间,使得保花药剂、保果药剂和果实膨大剂与澳洲坚果专用肥协同作用于澳洲坚果695品种,使得花序轴能够在开花前尽量伸长,以保证开花数量,并在授粉坐果后慢慢转变成硬枝,为果实的挂果提供营养和物理支持,同时保花药剂、保果药剂和果实膨大剂的喷施有效降低了落花落果率,保证果实的生长发育,提高单穗挂果率。
附图说明
图1本发明实施例1中澳洲坚果695品种果实的挂果情况图;
图2本发明实施例2中澳洲坚果695品种挂果情况图;
图3本发明实施例2中澳洲坚果695品种另一张挂果情况图;
图4本发明对比例1中澳洲坚果695品种授粉后的挂果情况图;
图5本发明对比例1中澳洲坚果695品种的挂果情况图;
图6本发明对比例2中澳洲坚果695品种挂果情况图;
图7本发明对比例3中澳洲坚果695品种挂果情况图。
具体实施方式
实施例1
本实施例提高澳洲坚果695品种果实性状的方法,包括如下步骤:
步骤A:以澳洲坚果南亚2号品种为父本,以澳洲坚果695品种为母本,在花蕾期分别给父本和母本第一次施用澳洲坚果专用肥;
澳洲坚果专用肥由如下重量份的组分组成:磷酸二铵20重量份、无水氯化钙25重量份、黄腐酸15重量份、无水钾镁矾8重量份、硼砂2重量份、乙氧基改性聚三硅氧烷2重量份和露天放置20天的鸡粪80重量份;第一次施用澳洲坚果专用肥的施用量为30kg/亩。
步骤B:在母本开花时,采集父本的花粉,采用人工授粉的方式对母本进行授粉;在始花期分别给父本和母本喷施保花药剂,且第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为12天;
保花药剂由如下重量份的组分组成:玉米素8重量份、萘乙酸5重量份、6-苄氨基嘌呤3重量份、赤霉酸3重量份、乙氧基改性聚三硅氧烷5重量份、葡萄糖20重量份和100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为70%;保花药剂的喷施量为500g/亩,喷施时,将保花药剂兑水稀释60倍后再喷;
人工授粉的方式为:收集父本的花粉,并向花粉中掺入花粉稀释剂,将花粉与花粉稀释剂混合均匀后,为母本植株上刚开花的花进行人工授粉;花粉与花粉稀释剂的质量之比为1:2;
花粉稀释剂的制备方法为:步骤B-1:将上述保花药剂滴入滑石粉中,保花药剂与滑石粉的质量之比为1.5:1,边滴加边搅拌,得到混合物料;
步骤B-2:将混合物料置于旋转蒸发仪上挥干溶剂,将得到的固态颗粒研磨后过800目筛,即制备得到花粉稀释剂。
步骤C:在花谢后第10天给母本第二次施用澳洲坚果专用肥,第二次施用澳洲坚果专用肥后给母本喷施保果药剂;第二次施用澳洲坚果专用肥的施肥时间与保果药剂的喷施时间间隔为5天;第二次施用澳洲坚果专用肥的施用量为40kg/亩;
保果药剂由如下重量份的组分组成:吲哚乙酸5重量份、氯吡脲8重量份、芸苔素5重量份、乙氧基改性聚三硅氧烷3重量份、2,4-二氯苯氧乙酸6重量份和90重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为70%;保果药剂的喷施量为300g/亩,喷施时,将保果药剂兑水稀释80倍后再喷;
步骤D:在花谢后第60天给母本第三次施用澳洲坚果专用肥,第三次施用澳洲坚果专用肥后给母本喷施果实膨大剂;第三次施用澳洲坚果专用肥的施肥时间与果实膨大剂的喷施时间间隔为7天;第三次施用澳洲坚果专用肥的施用量为60kg/亩;
果实膨大剂由如下重量份的组分组成:
复硝酚钠8重量份、赤霉素3重量份、细胞分裂素2重量份、乙氧基改性聚三硅氧烷3重量份、硫酸镁10重量份、三十烷醇10重量份和100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为70%;果实膨大剂的喷施量为500g/亩,喷施时,将果实膨大剂兑水稀释60倍后再喷。
实施例2
本实施例中提高澳洲坚果695品种果实性状的方法,包括如下步骤:
本实施例提高澳洲坚果695品种果实性状的方法,包括如下步骤:
步骤A:以澳洲坚果桂热1号品种为父本,以澳洲坚果695品种为母本,在花蕾期分别给父本和母本第一次施用澳洲坚果专用肥;
澳洲坚果专用肥由如下重量份的组分组成:磷酸二铵30重量份、无水氯化钙10重量份、黄腐酸5重量份、无水钾镁矾10重量份、硼砂3重量份、乙氧基改性聚三硅氧烷5重量份和露天放置20天的鸡粪90重量份;第一次施用澳洲坚果专用肥的施用量为35kg/亩。
步骤B:在母本开花时,采集父本的花粉,采用人工授粉的方式对母本进行授粉;在始花期分别给父本和母本喷施保花药剂,且第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为10天;
保花药剂由如下重量份的组分组成:玉米素5重量份、萘乙酸3重量份、6-苄氨基嘌呤1重量份、赤霉酸1重量份、乙氧基改性聚三硅氧烷2重量份、葡萄糖10重量份和80重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为70%;保花药剂的喷施量为450g/亩,喷施时,将保花药剂兑水稀释65倍后再喷;
人工授粉的方式为:收集父本的花粉,并向花粉中掺入花粉稀释剂,将花粉与花粉稀释剂混合均匀后,为母本植株上刚开花的花进行人工授粉;花粉与花粉稀释剂的质量之比为1:1.5;
花粉稀释剂的制备方法为:步骤B-1:将上述保花药剂滴入滑石粉中,保花药剂与滑石粉的质量之比为1:1,边滴加边搅拌,得到混合物料;
步骤B-2:将混合物料置于旋转蒸发仪上挥干溶剂,将得到的固态颗粒研磨后过800目筛,即制备得到花粉稀释剂。
步骤C:在花谢后第7天给母本第二次施用澳洲坚果专用肥,第二次施用澳洲坚果专用肥后给母本喷施保果药剂;第二次施用澳洲坚果专用肥的施肥时间与保果药剂的喷施时间间隔为7天;第二次施用澳洲坚果专用肥的施用量为40kg/亩;
保果药剂由如下重量份的组分组成:吲哚乙酸3重量份、氯吡脲5重量份、芸苔素2重量份、乙氧基改性聚三硅氧烷2重量份、2,4-二氯苯氧乙酸5重量份和80重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为70%;保果药剂的喷施量为200g/亩,喷施时,将保果药剂兑水稀释70倍后再喷;
步骤D:在花谢后第70天给母本第三次施用澳洲坚果专用肥,第三次施用澳洲坚果专用肥后给母本喷施果实膨大剂;第三次施用澳洲坚果专用肥的施肥时间与果实膨大剂的喷施时间间隔为5天;第三次施用澳洲坚果专用肥的施用量为70kg/亩;
果实膨大剂由如下重量份的组分组成:
复硝酚钠10重量份、赤霉素6重量份、细胞分裂素5重量份、乙氧基改性聚三硅氧烷5重量份、硫酸镁20重量份、三十烷醇10重量份和100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为70%;果实膨大剂的喷施量为400g/亩,喷施时,将果实膨大剂兑水稀释80倍后再喷。
对比例1
本对比例澳洲坚果695品种的栽培方法与实施例2的区别仅在于:授粉方式为澳洲坚果695品种在自然状态下自由授粉;且步骤B中,第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为20天;步骤C中,澳洲坚果专用肥的施肥时间与保果药剂的喷施时间间隔为10天;步骤D中,澳洲坚果专用肥的施肥时间与果实膨大剂的喷施时间间隔为15天。
对比例2
本对比例澳洲坚果695品种的栽培方法与实施例2的区别仅在于:授粉方式为澳洲坚果695品种在自然状态下自由授粉;且步骤B中,第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为7天;步骤C中,澳洲坚果专用肥的施肥时间与保果药剂的喷施时间间隔为1天;步骤D中,澳洲坚果专用肥的施肥时间与果实膨大剂的喷施时间间隔为3天。
对比例3
本对比例澳洲坚果695品种的栽培方法与实施例2的区别仅在于:花粉稀释剂为未经处理的滑石粉。
统计实施例1、实施例2、对比例1、对比例2和对比例3澳洲坚果695品种单穗挂果情况,如表1所示:
表1
组别 | 单穗挂果平均值 | 单穗挂果最大值 |
实施例1 | 3.83 | 9 |
实施例2 | 5.06 | 15 |
对比例1 | 1.62 | 4 |
对比例2 | 2.27 | 8 |
对比例3 | 4.09 | 11 |
显然,上述实施例仅仅是为清楚地说明所作的举例,而并非对实施方式的限定。对于所属领域的普通技术人员来说,在上述说明的基础上还可以做出其它不同形式的变化或变动。这里无需也无法对所有的实施方式予以穷举。而由此所引伸出的显而易见的变化或变动仍处于本专利申请权利要求的保护范围之中。
Claims (6)
1.一种提高澳洲坚果695品种果实性状的方法,其特征在于,包括如下步骤:
步骤A:以澳洲坚果桂热1号品种或澳洲坚果南亚2号品种为父本,以澳洲坚果695品种为母本,在花蕾期分别给父本和母本第一次施用澳洲坚果专用肥;
步骤B:在母本开花时,采集父本的花粉,采用人工授粉的方式对母本进行授粉;在始花期分别给父本和母本喷施保花药剂,且第一次施用澳洲坚果专用肥的施肥时间与保花药剂的喷施时间间隔为10~15天;
步骤C:在花谢后第7~15天给母本第二次施用澳洲坚果专用肥,第二次施用澳洲坚果专用肥后给母本喷施保果药剂;第二次施用澳洲坚果专用肥的施肥时间与保果药剂的喷施时间间隔为3~7天;
步骤D:在花谢后第60~70天给母本第三次施用澳洲坚果专用肥,第三次施用澳洲坚果专用肥后给母本喷施果实膨大剂;第三次施用澳洲坚果专用肥的施肥时间与果实膨大剂的喷施时间间隔为5~10天;
澳洲坚果专用肥由如下重量份的组分组成:磷酸二铵20~30重量份、无水氯化钙10~25重量份、黄腐酸5~15重量份、无水钾镁矾5~10重量份、硼砂1~3重量份、乙氧基改性聚三硅氧烷2~5重量份和动物粪便60~90重量份;
保花药剂由如下重量份的组分组成:玉米素5~8重量份、萘乙酸3~5重量份、6-苄氨基嘌呤1~3重量份、赤霉酸1~5重量份、乙氧基改性聚三硅氧烷2~5重量份、葡萄糖10~20重量份和80~100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为60%~80%;
保果药剂由如下重量份的组分组成:吲哚乙酸3~7重量份、氯吡脲5~8重量份、芸苔素2~10重量份、乙氧基改性聚三硅氧烷2~5重量份、2,4-二氯苯氧乙酸5~10重量份和80~100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为60%~80%;
果实膨大剂由如下重量份的组分组成:复硝酚钠5~10重量份、赤霉素2~6重量份、细胞分裂素1~5重量份、乙氧基改性聚三硅氧烷2~5重量份、硫酸镁10~20重量份、三十烷醇5~10重量份和80~100重量份的乙醇溶液;乙醇溶液中无水乙醇的体积分数为60%~80%。
2.根据权利要求1所述的提高澳洲坚果695品种果实性状的方法,其特征在于,步骤A中,第一次施用澳洲坚果专用肥的施用量为20~35kg/亩;步骤C中,第二次施用澳洲坚果专用肥的施用量为30~50kg/亩;步骤D中,第三次施用澳洲坚果专用肥的施用量为50~70kg/亩。
3.根据权利要求1所述的提高澳洲坚果695品种果实性状的方法,其特征在于,步骤B中,人工授粉的方式为:收集父本的花粉,并向花粉中掺入花粉稀释剂,将花粉与花粉稀释剂混合均匀后,为母本植株上刚开花的花进行人工授粉;花粉与花粉稀释剂的质量之比为1:1.5~3。
4.根据权利要求3所述的提高澳洲坚果695品种果实性状的方法,其特征在于,花粉稀释剂的制备方法为:
步骤B-1:将保花药剂滴入滑石粉中,边滴加边搅拌,得到混合物料;
步骤B-2:将混合物料置于旋转蒸发仪上挥干溶剂,然后将得到的固态颗粒研磨后过800目筛,即制备得到花粉稀释剂;
保花药剂与滑石粉的质量之比为1~1.5:1。
5.根据权利要求1所述的提高澳洲坚果695品种果实性状的方法,其特征在于,步骤B中,保花药剂的喷施量为400~500g/亩,喷施时,将保花药剂兑水稀释后再喷;步骤C中,保果药剂的喷施量为200~300g/亩,喷施时,将保果药剂兑水稀释后再喷;步骤D中,果实膨大剂的喷施量为300~500g/亩,喷施时,将果实膨大剂兑水稀释后再喷。
6.根据权利要求5所述的提高澳洲坚果695品种果实性状的方法,其特征在于,喷施时,保花药剂、保果药剂和果实膨大剂的稀释倍数为50~80倍。
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