蓝鲸体育直播

Conductivity and Elephant's Foot Testing

Elephant鈥檚 foot is a physiological disorder in sweet pepper (Capsicum annuum L.), where the base of the plant鈥檚 stem becomes swollen below the cotyledon level and wounds develop at the base of the stem鈥檚 epidermis because of salt accumulation. LAQUAtwin conductivity meter can be used to measure conductivity of soil and help farmers choose the best land to grow
sweet pepper crops.

Conductivity and Elephant's Foot Testing
Conductivity and Elephant's Foot Testing

Introduction

A physiological disorder in greenhouse hydroponic sweet pepper (Capsicum annuum L.), where the base of the plant鈥檚 stem becomes swollen below the cotyledon level and wounds develop at the base of the stem鈥檚 epidermis has been named 鈥淓lephant鈥檚 Foot鈥.

Sodium is a mineral constantly present in soil, but an excess of it concentrated at the base of the plant stem has been shown to have a correlation with Elephant鈥檚 Foot in plants. It is necessary to analyse the conductivity of soil in which hydroponic sweet pepper is grown to consider the extent to which the stem of the plant has accumulated salt.

To determine the conductivity of the soil, the Horiba LAQUAtwin conductivity meter can be used. This is an easy and quick method used to measure the conductivity of soil.

Method

  1. A small 5g soil sample is watered down with 20ml of water.
  2. The water and soil mixture is shaken, thus 鈥榳ashing鈥 the soil.
  3. A small sample can be extracted via pipette
  4. This is placed on the sensor of the LAQUAtwin conductivity meter and the conductivity is measured after one minute.
  5. To repeat sampling, wash the sensor with tap water and pat dry with a paper tissue.

Results and Benefits

The use of the Horiba LAQUAtwin conductivity meter to measure the conductivity of soil will improve farmers鈥 knowledge of the sodium accumulation and hence choose the best land to grow sweet pepper crops and avoid Elephant鈥檚 Foot disorder.

The LAQUAtwin conductivity meter is small and compact, and convenient to carry for easy on-site testing. Its easy-to-use interface is simple for anyone to use.

 

Salt accumulation on the stem base (measured by EC) and volumes of nutrient solution per plant per day at the three transplant depths: 鈥淭op鈥: plants transplanted to half of the container height, 鈥淟evel鈥: plants transplanted to the cotyledons level, and 鈥淒eep鈥: plants transplanted to the 2nd node. Electrical conductivity values for each transplant depth and irrigation volume average four soilless media type (coconut coir, peat mix, perlite, and pine bark). L*, linear polynomial effect at 5% level of significance.

Jovicich, E. and Cantliffe, D.J. 2001. 鈥淭ransplant Depth, Irrigation, And Soilless Media Effect On 鈥楨lephant鈥檚 Foot鈥 Plant Disorder In A Hydroponic Greenhouse Sweet Pepper Crop鈥. Acta Hort. (ISHS) 559:515-520

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