Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.

Planting halophytes such as <i>Suaeda salsa</i> (L.) Pall. under drip irrigation is a viable solution for the remediation of saline soils. We conducted this study to investigate the effects of different irrigation volumes and planting densities on the growth and salt uptake of <i>S...

Full description

Bibliographic Details
Main Authors: Qiang Xu, Hongguang Liu, Mingsi Li, Pengfei Li
Format: Article
Language:English
Published: MDPI AG 2023-03-01
Series:Plants
Subjects:
Online Access:https://www.mdpi.com/2223-7747/12/6/1383
_version_ 1797609375645302784
author Qiang Xu
Hongguang Liu
Mingsi Li
Pengfei Li
author_facet Qiang Xu
Hongguang Liu
Mingsi Li
Pengfei Li
author_sort Qiang Xu
collection DOAJ
description Planting halophytes such as <i>Suaeda salsa</i> (L.) Pall. under drip irrigation is a viable solution for the remediation of saline soils. We conducted this study to investigate the effects of different irrigation volumes and planting densities on the growth and salt uptake of <i>Suaeda salsa</i> under drip irrigation. The plant was cultivated in a field using drip irrigation at various irrigation volumes (3000 m·hm<sup>−2</sup> (W1), 3750 m·hm<sup>−2</sup> (W2), and 4500 m·hm<sup>−2</sup> (W3)) and planting densities (30 plants·m<sup>−2</sup> (D1), 40 plants·m<sup>−2</sup> (D2), 50 plants·m<sup>−2</sup> (D3), and 60 plants·m<sup>−2</sup> (D4)) to examine the effects on growth and salt uptake. The study revealed that the amount of irrigation, planting density, and interaction between the two significantly affected the growth characteristics of <i>Suaeda salsa</i>. The plant height, stem diameter, and canopy width increased simultaneously with an increase in the irrigation volume. However, with an increasing planting density and the same irrigation volume, the plant height first increased and then decreased, while the stem diameter and canopy width decreased simultaneously. The biomass of D1 was the highest with the W1 irrigation, while that of D2 and D3 were highest with the W2 and W3 irrigations. The amount of irrigation, planting density, and their interaction significantly affected the ability of <i>Suaeda salsa</i> to absorb salt. The salt uptake increased initially and then decreased with an increasing irrigation volume. At the same planting density, the salt uptake of <i>Suaeda salsa</i> with the W2 treatment was 5.67~23.76% and 6.40~27.10% higher than that with W1 and W3, respectively. Using the multiobjective spatial optimization method, the scientific and reasonable irrigation volume for planting <i>Suaeda salsa</i> in arid areas was determined to be 3276.78~3561.32 m<sup>3</sup>·hm<sup>−2</sup>, and the corresponding planting density was 34.29~43.27 plants·m<sup>−2</sup>. These data can be a theoretical basis for planting <i>Suaeda salsa</i> under drip irrigation to improve saline–alkali soils.
first_indexed 2024-03-11T06:00:35Z
format Article
id doaj.art-ca91dfe81139481797fd586b669584d4
institution Directory Open Access Journal
issn 2223-7747
language English
last_indexed 2024-03-11T06:00:35Z
publishDate 2023-03-01
publisher MDPI AG
record_format Article
series Plants
spelling doaj.art-ca91dfe81139481797fd586b669584d42023-11-17T13:23:08ZengMDPI AGPlants2223-77472023-03-01126138310.3390/plants12061383Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.Qiang Xu0Hongguang Liu1Mingsi Li2Pengfei Li3College of Water Conservancy & Architectural Engineering, Shihezi University, Shihezi 832000, ChinaCollege of Water Conservancy & Architectural Engineering, Shihezi University, Shihezi 832000, ChinaCollege of Water Conservancy & Architectural Engineering, Shihezi University, Shihezi 832000, ChinaCollege of Water Conservancy & Architectural Engineering, Shihezi University, Shihezi 832000, ChinaPlanting halophytes such as <i>Suaeda salsa</i> (L.) Pall. under drip irrigation is a viable solution for the remediation of saline soils. We conducted this study to investigate the effects of different irrigation volumes and planting densities on the growth and salt uptake of <i>Suaeda salsa</i> under drip irrigation. The plant was cultivated in a field using drip irrigation at various irrigation volumes (3000 m·hm<sup>−2</sup> (W1), 3750 m·hm<sup>−2</sup> (W2), and 4500 m·hm<sup>−2</sup> (W3)) and planting densities (30 plants·m<sup>−2</sup> (D1), 40 plants·m<sup>−2</sup> (D2), 50 plants·m<sup>−2</sup> (D3), and 60 plants·m<sup>−2</sup> (D4)) to examine the effects on growth and salt uptake. The study revealed that the amount of irrigation, planting density, and interaction between the two significantly affected the growth characteristics of <i>Suaeda salsa</i>. The plant height, stem diameter, and canopy width increased simultaneously with an increase in the irrigation volume. However, with an increasing planting density and the same irrigation volume, the plant height first increased and then decreased, while the stem diameter and canopy width decreased simultaneously. The biomass of D1 was the highest with the W1 irrigation, while that of D2 and D3 were highest with the W2 and W3 irrigations. The amount of irrigation, planting density, and their interaction significantly affected the ability of <i>Suaeda salsa</i> to absorb salt. The salt uptake increased initially and then decreased with an increasing irrigation volume. At the same planting density, the salt uptake of <i>Suaeda salsa</i> with the W2 treatment was 5.67~23.76% and 6.40~27.10% higher than that with W1 and W3, respectively. Using the multiobjective spatial optimization method, the scientific and reasonable irrigation volume for planting <i>Suaeda salsa</i> in arid areas was determined to be 3276.78~3561.32 m<sup>3</sup>·hm<sup>−2</sup>, and the corresponding planting density was 34.29~43.27 plants·m<sup>−2</sup>. These data can be a theoretical basis for planting <i>Suaeda salsa</i> under drip irrigation to improve saline–alkali soils.https://www.mdpi.com/2223-7747/12/6/1383<i>Suaeda salsa</i> (L.) Pall.drip irrigationsaline–alkali soilirrigation volumeplanting density
spellingShingle Qiang Xu
Hongguang Liu
Mingsi Li
Pengfei Li
Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.
Plants
<i>Suaeda salsa</i> (L.) Pall.
drip irrigation
saline–alkali soil
irrigation volume
planting density
title Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.
title_full Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.
title_fullStr Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.
title_full_unstemmed Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.
title_short Interactive Effect of Irrigation Volume and Planting Density on Growth and Salt Uptake in Field-Grown Drip-Irrigated <i>Suaeda salsa</i> (L.) Pall.
title_sort interactive effect of irrigation volume and planting density on growth and salt uptake in field grown drip irrigated i suaeda salsa i l pall
topic <i>Suaeda salsa</i> (L.) Pall.
drip irrigation
saline–alkali soil
irrigation volume
planting density
url https://www.mdpi.com/2223-7747/12/6/1383
work_keys_str_mv AT qiangxu interactiveeffectofirrigationvolumeandplantingdensityongrowthandsaltuptakeinfieldgrowndripirrigatedisuaedasalsailpall
AT hongguangliu interactiveeffectofirrigationvolumeandplantingdensityongrowthandsaltuptakeinfieldgrowndripirrigatedisuaedasalsailpall
AT mingsili interactiveeffectofirrigationvolumeandplantingdensityongrowthandsaltuptakeinfieldgrowndripirrigatedisuaedasalsailpall
AT pengfeili interactiveeffectofirrigationvolumeandplantingdensityongrowthandsaltuptakeinfieldgrowndripirrigatedisuaedasalsailpall