首页> 外文期刊>BIO Web of Conferences >Vegetative development and berry growth in relation to heat accumulation in Sangiovese vines subjected to double pruning at three different times
【24h】

Vegetative development and berry growth in relation to heat accumulation in Sangiovese vines subjected to double pruning at three different times

机译:在三个不同时间进行两次修剪的桑娇维塞葡萄的营养发育和浆果生长与热量积累的关系

获取原文
           

摘要

The double pruning on Sangiovese based on pre-pruning and finishing in March, April and May applied over three years, induced a postponement of phenological phases, with repercussions on the vine vegetative and berry growth trends, with greater effects, according to the delay in the time of hand follow up during the season. The phenological development, the canopy and berry growth of Sangiovese, subjected to the three different finishing dates for the final pruning, were recorded during three years (2014-2016) and related to day of the year (DOY) and seasonal heat accumulation (growing degree days, GDD). A sigmoid growth model with high coefficient determination (R2 between 0.96 and 0.99), described shoot elongation and herbaceous berry growth, showing a temporal and thermal shift according to the finishing times. Despite the chronological delay, the vines revealed similar thermal necessities. Leaf area evolution of April and May finished vines showed 2 steps: a slow initial development followed by a rapid growth phase (91- 97cm2/GDD) beginning when shoots reached 7–10 leaves. GDD allowed to obtain simple models of vegetative development and berry growth of Sangiovese vines based on thermal evolution.
机译:根据延迟的时间,对Sangiovese进行两次修剪(在3月,4月和5月进行的预修剪和精加工)实施了三年,这导致了物候期的推迟,对葡萄的营养和浆果生长趋势产生了影响,影响更大。在赛季中进行跟进的时间。在三年(2014-2016)期间记录了桑娇维塞的物候发育,冠层和浆果生长,并进行了三个不同的整理日期,记录了三年(2014-2016)的相关情况,并与一年中的一天(DOY)和季节性热量积累(增长学位日,GDD)。具有高系数确定性的S形生长模型(R2在0.96和0.99之间)描述了枝条伸长和草本浆果的生长,并显示了根据精整时间的时间和热位移。尽管在时间上有所延迟,但葡萄藤仍显示出类似的热量需求。 4月和5月完成的葡萄藤的叶面积演变显示出2个步骤:缓慢的初始发育,随后是快速生长阶段(91-97cm2 / GDD),当芽达到7-10个叶子时开始。 GDD允许根据热演化获得桑娇维塞葡萄的营养发育和浆果生长的简单模型。

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