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Recovery growth and water use of intercropped maize following wheat harvest in wheat/maize relay strip intercropping

机译:在小麦/玉米继电器中的小麦收获之后,恢复增长和水分使用间作玉米。

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摘要

Recovery growth is common in relay intercropping systems and is a feasible practice for increasing total productivity of these systems. Previous studies have focused on the description of recovery growth, but the physiological changes and water use assessment during the recovery growth period remain unclear. A field experiment was conducted in Yangling, Shaanxi province, China during the 2014-2015 and 2015-2016 growing seasons to investigate maize physiological characteristics, root morphology, and transpiration efficiency during the recovery growth period. Three cropping systems (sole wheat, sole maize, wheat/maize intercropping) and two water treatments (supplementary irrigation and rainfed) were evaluated. Wheat was more competitive than maize during the intercropping co-growth period. During the co-growth period, the aboveground dry matter of intercropped wheat was 20.1 %-37.8 % greater than for sole wheat and water consumption was 14.9 %-15.9 greater than for sole wheat. However, plant height and aboveground dry matter of intercropped maize during the co-growth period were less than for sole maize. Total root length of intercropped maize under supplementary irrigation initially exhibited rapid growth after wheat harvest, especially in the border rows. Subsequently, aboveground dry matter showed recovery growth, with final aboveground dry matter (2-yr average) of border rows and inner rows being 1 % and 4.5 %, respectively, greater than sole maize dry matter. Relative chlorophyll content and photosynthetic rate of intercropped maize were 4.3 %-19.2 % and 1.7 %-15.9 %, respectively, higher than observed for sole maize under irrigated conditions. Transpiration efficiency of intercropped maize during the recovery period was 10 % and 50.9 % greater than observed for sole maize under irrigated conditions in 2015 and 2016, respectively. Some recovery growth did occur under rainfed conditions, but it did not completely compensate for the growth reduction that occurred during the co-growth period. Supplementary irrigation promoted recovery growth of intercropped maize. Recovery growth improves intercropped maize grain yield and efficient use of water resources.
机译:回收增长在继电器间作系统中是常见的,并且是增加这些系统的总生产率的可行实践。以前的研究重点是恢复生长的描述,但在恢复生长期内的生理变化和水使用评估仍不清楚。在2014 - 2015年陕西省杨凌进行了一个田间实验,在2014 - 2015年和2015-2016日世季节,以调查玉米生理特征,根系形态和蒸发效率在恢复生长期。评估了三种种植系统(唯一小麦,鞋底玉米,小麦/玉米)和两种水处理(补充灌溉和雨水)。在间作共生期间,小麦比玉米更竞争。在共生长期间,间作小麦的地上干物质为20.1%-37.8%,而唯一的小麦和耗水量为14.9%-15.9大于唯一小麦。然而,在共生长期间,植物高度和间作玉米的地上干物质小于唯一玉米。补充灌溉下的间作玉米的总长度最初在小麦收获后展现了快速生长,特别是在边界行中。随后,地上干物质显示出恢复生长,最终地上干物质(2-YR平均)边界行和内行分别为1%和4.5%,大于唯一的玉米干物质。间歇玉米的相对叶绿素含量和光合速率分别为4.3%-19.2%和1.7%-15.9%,高于灌溉条件下的唯一玉米。在2015年和2016年灌溉条件下,恢复期间间歇玉米的蒸腾效率分别比观察到唯一的玉米玉米的10%和50.9%。在雨量条件下发生了一些恢复生长,但它没有完全弥补共生期间发生的增长。补充灌溉促进了间歇玉米的恢复生长。恢复增长改善了间作玉米粮食产量和水资源的有效利用。

著录项

  • 来源
    《Field Crops Research》 |2020年第1期|共14页
  • 作者单位

    Northwest A&

    F Univ Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ Inst Soil &

    Water Conservat Yangling 712100 Shaanxi Peoples R China;

    Northwest A&

    F Univ Inst Water Saving Agr Arid Reg China Yangling 712100 Shaanxi Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 农业科学;
  • 关键词

    Recovery growth; Root; Dry matter; Photosynthesis; Transpiration efficiency;

    机译:恢复生长;根;干物质;光合作用;蒸腾效率;

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