Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system

Silicon (Si) is one of the most abundant elements naturally available in the soil. This element performs an essential function in improving plant growth. This present study was carried out to evaluate the impact of Si nutrient application on the growth performance of chili (Capsicum annuum L.). Chil...

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Main Authors: Suhaizan Lob, Nur Syakirah Sa’ad, Nurul Faziha Ibrahim, Norhidayah Che Soh, Ramisah Mohd Shah, Muhammad Safwan Hafiz Zaudin
Format: Article
Language:English
Published: Penerbit Universiti Kebangsaan Malaysia 2023
Online Access:http://journalarticle.ukm.my/22400/1/MAD%202.pdf
http://journalarticle.ukm.my/22400/
https://jms.mabjournal.com/index.php/mab/index
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Institution: Universiti Kebangsaan Malaysia
Language: English
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spelling my-ukm.journal.224002023-10-24T04:06:57Z http://journalarticle.ukm.my/22400/ Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system Suhaizan Lob, Nur Syakirah Sa’ad, Nurul Faziha Ibrahim, Norhidayah Che Soh, Ramisah Mohd Shah, Muhammad Safwan Hafiz Zaudin, Silicon (Si) is one of the most abundant elements naturally available in the soil. This element performs an essential function in improving plant growth. This present study was carried out to evaluate the impact of Si nutrient application on the growth performance of chili (Capsicum annuum L.). Chili plant grown using a fertigation system was subjected to manual application of a silicon nutrient solution in varying concentrations (0 ppm, 108 ppm, 180 ppm, & 360 ppm) via root application. Each treatment was replicated five times, with five plants in each replicate, and all plants were grown in a shade house. The growth performance parameters measured were the number of leaves, stem diameter, plant height, plant biomass (dry weight), and Si accumulation in the stem, leave, and chili fruit. Results showed that Si nutrient application significantly affected the growth performances of chili plants. Application of T3 (360 ppm Si nutrient) was able to produce the highest stem diameter (8.92 mm), fresh weight (129.63 g), dry weight (67.23 g), as well as Si accumulation in stem (54 ppm), and chili fruit (24 ppm). On the other hand, applications with T2 (180 ppm Si nutrient) also demonstrated the highest plant height (20.98 cm), number of leave (27), and Si accumulation in leave (87 ppm). In conclusion, the application of silicon nutrients has the potential to enhance plant growth in numerous crops, making it a beneficial supplement to traditional agricultural practices. Penerbit Universiti Kebangsaan Malaysia 2023 Article PeerReviewed application/pdf en http://journalarticle.ukm.my/22400/1/MAD%202.pdf Suhaizan Lob, and Nur Syakirah Sa’ad, and Nurul Faziha Ibrahim, and Norhidayah Che Soh, and Ramisah Mohd Shah, and Muhammad Safwan Hafiz Zaudin, (2023) Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system. Malaysian Applied Biology, 52 (2). pp. 13-20. ISSN 0126-8643 https://jms.mabjournal.com/index.php/mab/index
institution Universiti Kebangsaan Malaysia
building Tun Sri Lanang Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Kebangsaan Malaysia
content_source UKM Journal Article Repository
url_provider http://journalarticle.ukm.my/
language English
description Silicon (Si) is one of the most abundant elements naturally available in the soil. This element performs an essential function in improving plant growth. This present study was carried out to evaluate the impact of Si nutrient application on the growth performance of chili (Capsicum annuum L.). Chili plant grown using a fertigation system was subjected to manual application of a silicon nutrient solution in varying concentrations (0 ppm, 108 ppm, 180 ppm, & 360 ppm) via root application. Each treatment was replicated five times, with five plants in each replicate, and all plants were grown in a shade house. The growth performance parameters measured were the number of leaves, stem diameter, plant height, plant biomass (dry weight), and Si accumulation in the stem, leave, and chili fruit. Results showed that Si nutrient application significantly affected the growth performances of chili plants. Application of T3 (360 ppm Si nutrient) was able to produce the highest stem diameter (8.92 mm), fresh weight (129.63 g), dry weight (67.23 g), as well as Si accumulation in stem (54 ppm), and chili fruit (24 ppm). On the other hand, applications with T2 (180 ppm Si nutrient) also demonstrated the highest plant height (20.98 cm), number of leave (27), and Si accumulation in leave (87 ppm). In conclusion, the application of silicon nutrients has the potential to enhance plant growth in numerous crops, making it a beneficial supplement to traditional agricultural practices.
format Article
author Suhaizan Lob,
Nur Syakirah Sa’ad,
Nurul Faziha Ibrahim,
Norhidayah Che Soh,
Ramisah Mohd Shah,
Muhammad Safwan Hafiz Zaudin,
spellingShingle Suhaizan Lob,
Nur Syakirah Sa’ad,
Nurul Faziha Ibrahim,
Norhidayah Che Soh,
Ramisah Mohd Shah,
Muhammad Safwan Hafiz Zaudin,
Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system
author_facet Suhaizan Lob,
Nur Syakirah Sa’ad,
Nurul Faziha Ibrahim,
Norhidayah Che Soh,
Ramisah Mohd Shah,
Muhammad Safwan Hafiz Zaudin,
author_sort Suhaizan Lob,
title Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system
title_short Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system
title_full Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system
title_fullStr Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system
title_full_unstemmed Enhanced growth of chili (Capsicum annuum L.) by silicon nutrient application in fertigation system
title_sort enhanced growth of chili (capsicum annuum l.) by silicon nutrient application in fertigation system
publisher Penerbit Universiti Kebangsaan Malaysia
publishDate 2023
url http://journalarticle.ukm.my/22400/1/MAD%202.pdf
http://journalarticle.ukm.my/22400/
https://jms.mabjournal.com/index.php/mab/index
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