...
首页> 外文期刊>Scientia horticulturae >Leaf gas exchanges and water relations affect the daily patterns of fruit growth and vascular flows in Abbe Fetel pear (Pyrus communis L.) trees
【24h】

Leaf gas exchanges and water relations affect the daily patterns of fruit growth and vascular flows in Abbe Fetel pear (Pyrus communis L.) trees

机译:叶片气体交换和水的关系影响阿贝·费特尔梨(Pyrus communis L.)树的果实生长和血管流量的日常模式。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Daily patterns of leaf and stem water potentials, leaf gas exchanges (net photosynthesis, stomatal conductance and transpiration), fruit growth, vascular (phloem and xylem) and transpiration in/outflows were determined in two subsequent years at regular time intervals during the season on pear trees of the cv. Abbe Fetel. Leaf gas exchanges showed higher values in the morning, while fruit shrank due to high transpiration water losses which were not balanced by xylem flows. Despite the high rates of transpiration, fruit were fully rehydrated in the afternoon thanks to high xylem flows, while phloem import occurred mostly in the midday hours. During most of the season, fruit growth was sustained above all by the xylem flux which represented upto 85% of fruit total inflows. Later, fruit growth rate decreased while dry matter accumulation increased following a rise in the phloem relative contribution to growth, which reached 50% of fruit total inflows. This is the first report to show how the biophysical mechanism of fruit growth in "Abbe Fetel" pear is based on high water exchanges by xylem and transpiration during most of the season. The simultaneous monitoring of leaf gas exchanges and fruit vascular flows during the day suggests how until about 95 days after full bloom (DAFB), leaves are stronger "sinks" for water in the morning while fruit import water mainly during the afternoon, thanks to the increase in leaf water potential following stomatal closure
机译:在随后的两年中,在该季节的固定时间间隔内,确定叶片和茎水势,叶片气体交换(净光合作用,气孔导度和蒸腾作用),果实生长,血管(韧皮部和木质部)和蒸腾流入/流出的每日模式。简历的梨树。阿贝·费特尔(Abbe Fetel)。早晨的叶片气体交换显示较高的值,而果实因蒸腾失水过多而收缩,木质部的水流无法平衡。尽管蒸腾速率很高,但由于木质部的大量流动,水果在下午完全被补水,而韧皮部的进口大部分发生在中午。在整个季节的大部分时间里,木质部的通量一直保持着水果的生长,木质部的通量占水果总流入量的85%。后来,由于韧皮部对生长的相对贡献增加,果实的生长速度下降而干物质积累增加,达到果实总流入量的50%。这是第一份报告,显示“ Abbe Fetel”梨果实生长的生物物理机制是基于整个季节大部分时间里木质部和蒸腾作用的高水分交换。白天对叶片气体交换和水果血管流量的同时监测表明,直到盛开(DAFB)大约95天后,早晨树叶才是较强的“水槽”,而水果则主要在下午进入水,这要归功于气孔关闭后叶片水势的增加

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