Indole-3-acetic acid production by rhizobacteria Bacillus spp. to various abiotic stress factors

Authors

  • Piriya Latha Veerasamy Department of Animal Science and Fishery, Faculty of Agricultural Science and Forestry, Universiti Putra Malaysia Bintulu Campus, 97008 Bintulu, Sarawak, Malaysia
  • Fitri Ab Aziz Zakry Department of Crop Science, Faculty of Agricultural Science and Forestry, Universiti Putra Malaysia Bintulu Campus, 97008 Bintulu, Sarawak, Malaysia & Ethnic Borneo Laboratory, Institut Ekosains Borneo, Universiti Putra Malaysia Bintulu Campus, 97008 Bintulu, Sarawak, Malaysia
  • Wong Sing King Department of Animal Science and Fishery, Faculty of Agricultural Science and Forestry, Universiti Putra Malaysia Bintulu Campus, 97008 Bintulu, Sarawak, Malaysia
  • Susilawati Kasim Department of Land Management, Faculty of Agriculture, Universiti Putra Malaysia, 43400 UPM Serdang, Selangor, Malaysia
  • Masnindah Malahubban Department of Animal Science and Fishery, Faculty of Agricultural Science and Forestry, Universiti Putra Malaysia Bintulu Campus, 97008 Bintulu, Sarawak, Malaysia

DOI:

https://doi.org/10.25081/jp.2021.v13.6918

Keywords:

Acidity, Bacillus cereus, Bacillus megaterium, Rhizobacteria, Salinity, Temperature

Abstract

Indole-3-acetic acid (IAA) phytohormone plays an essential role in forming and initiating main, lateral, and adventitious roots in vegetative propagation. Plants are receiving IAA naturally from a diverse group of soil-plant associated rhizobacteria. However, IAA synthesis by rhizobacteria is influenced by abiotic growth conditions. Three indigenous Bacillus isolates were subject to in vitro assay for the effects of abiotic factors (temperature, salinity and pH) on growth and IAA production. All isolates grew well between 25 - 40°C, and only B. megaterium UPMLH3 was capable of synthesising IAA (21.18 µg/ml) at 40°C. All three bacterial growth under saline stress were slightly dropped over control (0% NaCl), but still producing IAA up to 1% NaCl condition. B. cereus UPMLH24 revealed high resistance to salinity up to 5% NaCl. The optimum growth of all three Bacillus spp. was at pH 7. B. cereus UPMLH1 and UPMLH24 discovered higher IAA production in slightly alkaline conditions (pH 8). Each rhizobacterium shows different physiology trait against each abiotic factor. However, the multiple tolerance ability of PGPR against abiotic factors is an indication that its ability to survive under harsh soil and plant environments while delivering benefits to the plant. Thus, B. cereus UPMLH1, B. megaterium UPMLH3 and B. cereus UPMLH24 might serve as potential biofertiliser, enhancing the growth performance of test plants at various environmental conditions.

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Published

15-07-2021

How to Cite

Veerasamy, P. L., Zakry, . F. A. A. ., King, W. S., Kasim, S., & Malahubban, M. (2021). Indole-3-acetic acid production by rhizobacteria Bacillus spp. to various abiotic stress factors. Journal of Phytology, 13, 85–90. https://doi.org/10.25081/jp.2021.v13.6918

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Articles