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Glycine betaine modulates chromium (VI)-induced morpho-physiological and biochemical responses to mitigate chromium toxicity in chickpea (Cicer arietinum L.) cultivars. | LitMetric

AI Article Synopsis

  • Chromium accumulation negatively impacts chickpea yield, with a comparison between a Cr-tolerant cultivar (Pusa 2085) and a Cr-sensitive one (Pusa Green 112) under controlled conditions.
  • Both cultivars showed reduced growth, chlorophyll content, and yield under Cr stress, while oxidative stress markers increased.
  • Glycine betaine (GB) application helped improve root growth and overall plant health, indicating that it can enhance chromium stress tolerance in chickpeas.

Article Abstract

Chromium (Cr) accumulation in crops reduces yield. Here, we grew two chickpea cultivars, Pusa 2085 (Cr-tolerant) and Pusa Green 112 (Cr-sensitive), in hydroponic and pot conditions under different Cr treatments: 0 and 120 µM Cr and 120 µM Cr + 100 mM glycine betaine (GB). For plants grown in the hydroponic media, we evaluated root morphological attributes and plasma membrane integrity via Evans blue uptake. We also estimated H-ATPase activity in the roots and leaves of both cultivars. Plants in pots under conditions similar to those of the hydroponic setup were used to measure growth traits, oxidative stress, chlorophyll contents, enzymatic activities, proline levels, and nutrient elements at the seedling stage. Traits such as Cr uptake in different plant parts after 42 days and grain yield after 140 days of growth were also evaluated. In both cultivars, plant growth traits, chlorophyll contents, enzymatic activities, nutrient contents, and grain yield were significantly reduced under Cr stress, whereas oxidative stress and proline levels were increased compared to the control levels. Further, Cr uptake was remarkably decreased in the roots and leaves of Cr-tolerant than in Cr-sensitive cultivars. Application of GB led to improved root growth and morpho-physiological attributes and reduced oxidative stress along with reduced loss in plasma membrane integrity and subsequently increase in H-ATPase activity. An increment in these parameters shows that the exogenous application of GB improves the Cr stress tolerance in chickpea plants.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9107477PMC
http://dx.doi.org/10.1038/s41598-022-11869-3DOI Listing

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