首页> 外文期刊>Industrial Crops and Products >Foliar spray of growth regulators significantly increases trans-1,4-polyisoprene production from Eucommia ulmoides Oliver short-rotation coppice
【24h】

Foliar spray of growth regulators significantly increases trans-1,4-polyisoprene production from Eucommia ulmoides Oliver short-rotation coppice

机译:生长调节剂的叶面喷雾显着提高了杜仲的反式-1,4-聚异戊二烯产量oloriver oLiver短旋转Coppice

获取原文
获取原文并翻译 | 示例
           

摘要

Eucommia ulmoides Oliver produces trans-1,4-polyisoprene (TPI or Eucommia rubber), with leaves and bark as the main sources. Raw materials from short rotation coppice (SRC) cultures for TPI industrialization are a valuable option. Currently, there is a shortage of field yield data beginning from early establishment of Eucommia SRC to support TPI manufacturers. We investigated an Eucommia SRC plantation established in 2015 with application of four plant growth regulators in Mengzhou Forest Farm, China, during its first two annual rotations. By using an orthogonal experimental design, productivity related data were derived after each growing season. We observed significant variations in biomass yield and TPI productivity among the 12 dosages of 4 regulator types and control, with plants treated with brassinolide at 5 mg L-1, DCPTA at 500 mg L-1 and DTA-6 at 20 mg L-1 reaching the highest TPI productivity among treatments of 406 kg ha(-1), 391 kg ha(-1) and 382 kg ha(-1) in the second rotation, respectively, all of which were more than 1.4 times that of the control. Foliage spray of regulators led to more and larger leaves, more bark yield, higher tree height, and higher leaf TPI content, which reflected the enhancing effects of regulators on leaf and bark biomass as well as TPI productivities in both the first and second rotations. Meanwhile, the harvest of Eucommia leaf and bark from the coppice plantation was less labor intensive than that from tall mature trees. Our study suggested that the annual rotation period and increase of TPI from Eucommia SRC by application of regulators could reduce the payback period. Therefore, we recommend the application of growth regulators to coppice Eucommia plantations beginning from the first rotation as an economic means to increase TPI production.
机译:杜仲oliver oliver产生反式-1,4-聚异戊二烯(TPI或杜仲),叶子和树皮作为主要来源。来自短旋转COPPICE(SRC)培养的原材料是TPI工业化的培养物是一个有价值的选择。目前,从早期建立的eucomnia src开始支持TPI制造商的现场产量数据短缺。我们调查了2015年成立的杜仲SRC种植园,在孟州森林农场,中国森林农场的四个植物增长调节器期间在前两年年度旋转期间。通过使用正交的实验设计,在每个生长季节之后得出的生产力相关数据。我们观察到生物量产量和TPI生产率的显着变化在4剂4剂型和对照中,用芸苔属5mg L-1,DCPTA处理的植物,500mg L-1和20mg L-1的DTA-6。在第二次旋转中分别达到406千克(-1),391 kg ha(-1)和382 kg ha(-1)的处理中的最高TPI生产率,所有这些都分别超过控制的1.4倍。调节剂的叶子喷雾导致更多且较大的叶片,更大的树皮产量,较高的树形高度和更高的叶TPI含量,这反映了叶片和树皮生物量的调节剂的增强作用以及第一和第二旋转的TPI生产力。同时,杜仲叶的收获和来自Coppice种植园的树皮少于高于成熟树木的劳动力较少。我们的研究表明,通过申请监管机构从杜仲SRC的年旋转期和TPI增加可以减少投资回收期。因此,我们建议将增长调节剂应用于从第一次旋转开始作为经济手段来增加TPI生产的经济手段。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号