[Effects of binary coverage on soil water content in apple orchards during low-water-consumption growth period]

Ying Yong Sheng Tai Xue Bao. 2019 Dec;30(12):4082-4090. doi: 10.13287/j.1001-9332.201912.024.
[Article in Chinese]

Abstract

To investigate the effects of intercropped rape and film mulching on soil water content in dryland apple orchards during the low-water consumption period on the Loess Plateau, soil water content and soil water storage were measured with in situ field observations. The results showed that at the sprout period of apple trees, mean water content in 0-200 cm soil layer under apple trees with film mulching + intercropping 50% width rape (PR1) and apple trees with film mulching + intercropping 100% width rape (PR2) treatments increased by 7.9% and 6.9% compared with the control (apple trees without film mulching+row clearing), respectively. At the blossom period of apple trees, mean soil water content under these two treatments increased by 3.5% and 6.9%, respectively. At the sprout period of apple trees, soil water competition between apple trees and rape occurred in both PR1 and PR2 treatments, with the competition being most severe at the boundaries. At the sprout period, competition in the PR1 treatment was less intense than that in the PR2 treatment. At the blossom period, competition in the PR1 treatment was not obvious, but the competition in the PR2 treatment was significant. Moreover, at the sprout and blossom period, a low-soil-water-content zone was observed in the PR2 treatment. Compared with the control, both PR1 and PR2 treatments increased soil water storage in 0-80 cm layer, and soil water was not deficit in the 0-200 cm layer. In conclusion, the implementation of PR1 model is conducive to improve soil water availability in the dryland apple orchard on the Loess Plateau during the low-water consumption period.

为探明间作油菜和果树覆膜组合措施对黄土高原旱作苹果园低耗水生育期土壤水分的影响,通过田间定位观测试验,对比分析了各处理土壤含水量、土壤储水量等参数.结果表明: 在果树萌芽期,苹果树覆膜+行间种植50%宽度油菜(PR1)和苹果树覆膜+行间种植100%宽度油菜(PR2)处理0~200 cm土层平均土壤含水量分别较对照(苹果树不覆膜+行间清耕)提高了7.9%、6.9%,在果树开花期分别较对照提高了3.5%、6.9%.两种处理在苹果树萌芽期均产生了土壤水分竞争,油菜边缘处是竞争最激烈的区域,这一时期PR1处理竞争程度小于PR2处理;在苹果树开花期PR1处理竞争现象不明显,PR2处理竞争现象明显;在这两个时期内PR2处理均发现土壤水分低值区.与对照相比,两种处理均能提高果园0~80 cm土层土壤储水量,同时在0~200 cm土层不产生土壤水分亏缺现象.在黄土高原旱作苹果园,推行PR1模式有利于改善低耗水生育期苹果园的土壤水分环境.

Keywords: binary coverage; dryland apple orchard; low-water-consumption period; soil water competition; soil water storage.

MeSH terms

  • Agriculture
  • China
  • Drinking
  • Malus*
  • Soil
  • Water

Substances

  • Soil
  • Water