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May 7, 2026Discover Agriculture0 citationsOpen Access

Responses of antioxidant defense enzymes and thiols in root nodules of black gram following foliar application of Kappaphycus alvarezii seaweed based biostimulant

VGVijay Anand K. GopalakrishnanNKNirmala KanwarSMSananda Mondal

Key Points

  • The aim is to investigate how Kappaphycus alvarezii seaweed biostimulant affects antioxidant enzymes and thiol levels in black gram root nodules.
  • Pot experiment with a split-plot design using five concentrations of Kappaphycus alvarezii (0, 5, 10, 15, 20%)
  • Two black gram varieties (TAU–1 and DBGV–5) were evaluated with three replications each
  • Measurements included activities of SOD, CAT, GR, APX, and thiol contents at 23–24 days after sowing.
  • DBGV–5 showed higher SOD and GR activity than TAU–1, with declining SOD at higher KSWE concentrations (15% KSWE)
  • APX activity decreased with KSWE in 2019 but was stable in 2020, while CAT remained unaffected across treatments
  • Total and protein thiol levels significantly increased at 5% KSWE in DBGV–5 compared to TAU–1.

Abstract

A pot experiment was conducted in a split-plot design with five concentrations (0, 5, 10, 15, and 20%) of Kappaphycus alvarezii seaweed extract (KSWE) as main plots and two black gram varieties (TAU–1 and DBGV–5) as subplots, with treatment each replicated thrice. Activities of superoxide dismutase (SOD), catalase (CAT), glutathione reductase (GR), and ascorbate peroxidase (APX), protein, non-protein and total thiol contents in black gram root nodules were evaluated at 23–24 days after sowing (DAS), 72–96 h after a single foliar application of the extract at 20 DAS. SOD and GR activities were consistently higher in DBGV–5 than in TAU–1, with SOD declining at elevated KSWE concentrations and GR showing a pronounced reduction at 15% KSWE in 2020. APX activity was reduced by KSWE in 2019 but remained unaffected in 2020, whereas CAT activity was stable across treatments and years. Overall, KSWE modulated nodule antioxidant enzyme responses in a concentration-, variety-, and year-dependent manner, with DBGV–5 exhibiting greater enzymatic sensitivity. Thiol metabolism was likewise influenced by KSWE and genotype, with significant increases in total and protein thiols, particularly at 5% KSWE, and consistently higher levels in DBGV–5 than in TAU–1. Non-protein thiols showed significant variety × dose interactions in 2019 but remained unchanged in 2020, indicating a context-dependent adjustment of cellular redox status. The present study represents one of the earliest evaluations of the effects of seaweed biostimulants on antioxidant responses in root nodules.

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Cite This Study

Gopalakrishnan et al. (2026) studied this question.

synapsesocial.com/papers/69fc2b608b49bacb8b347809https://doi.org/10.1007/s44279-026-00600-9
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