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Effect of plant growth regulators applied during budbreak on pecan nut yield

机译:芽期施用植物生长调节剂对山核桃坚果产量的影响

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Four plant growth regulators were applied the last week of March and the first week of April during four consecutive years in order to evaluate their effect on nut yield and quality. Plant growth regulators and rates evaluated were: Biozyme TF~R (BZ), 1L cm ha~(-1) in each application; Biofrut~R (BF), 300 g cm ha~(-1) in each application; thidiazuron (TDZ), 10 and 5 g a.i. ha~(-1) in the first and second application, respectively; and paclobutrazol (PBZ) 200 g a.i. ha~(-1). All treatments were sprayedwith 1800 L ha~(-1) of water but PBZ. PBZ was soil applied only the last three years and it was mixed with water in a ratio of 0.5 g L1 and then placed in the bottom of eight 20-cm deep holes. The experimental design was a randomized complete block withthree replications. Four trees were applied and two central trees were used as the experimental unit. Marketable nut yield was affected significantly during the first year of evaluation. Control treatment yielded 1149 kg ha~(-1), while the rest of treatments yielded from 1798 to 2096 kg ha~(-1). In the second year, total nut yield varied from 1820 to 2053 kg ha~(-1) in all treatments but differences among them were not significant. Also, in the third and fourth year there were no significant differencesin nut yield among treatments. TDZ treatment decreased alternate bearing intensity (I) from 0.27 showed in the control treatment, to 0.05. TDZ decreased cumulative I in the third and fourth year of study. Effect on pecan nut weight was not significant and values were inconsistent among treatments and years. The application of plant growth regulators during early shoot growth in pecan trees affected pecan nut yield and I. These results suggest that application of plant growth regulators could help to manipulate yield and alternate bearing in warm regions where chilling is not enough to induce and break a regular dormancy for pecans.
机译:在连续四年中,在三月的最后一周和四月的第一周应用了四个植物生长调节剂,以评估它们对坚果产量和品质的影响。植物生长调节剂和评价的速率为:每种应用中的生物酶TF_R(BZ),1L cm ha〜(-1); Biofrut®(BF),每种应用中300 g cm ha〜(-1);噻唑隆(TDZ),10和5 g a.i. ha〜(-1)分别在第一个和第二个应用程序中;和多效唑(PBZ)200克a.i. ha〜(-1)。所有处理均喷洒1800 L ha〜(-1)的水但PBZ。 PBZ仅在最近三年才用于土壤,并以0.5 g L1的比例与水混合,然后放入八个20 cm深的孔的底部。实验设计是具有三个重复的随机完整块。应用四棵树,并使用两棵中心树作为实验单元。在评估的第一年,可销售的坚果产量受到显着影响。对照处理的产量为1149 kg ha〜(-1),其余处理量为1798-2096 kg ha〜(-1)。第二年,所有处理的总坚果产量在1820到2053 kg ha〜(-1)之间变化,但两者之间的差异并不显着。同样,在第三年和第四年,各处理之间的坚果产量没有显着差异。 TDZ处理将交替承载强度(I)从对照处理中的0.27降低到0.05。 TDZ在研究的第三年和第四年减少了累积I。对山核桃坚果重量的影响不显着,且治疗和年份之间的值不一致。在山核桃树早期芽生长期间使用植物生长调节剂会影响山核桃的产量和I。这些结果表明,在寒冷不足以诱发和破坏叶片的温暖地区,使用植物生长调节剂可以帮助控制产量和交替承重。山核桃定期休眠。

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