Logo Lanfrica
  • Home
  • Atlas
  • Insights
  • Docs
  • Sign in

© 2026 Lanfrica. All rights reserved. All copyrights of the resources shown on the Lanfrica website belong to the original copyright holders, unless explicitly stated otherwise.

DataSheet_1_Deciphering trait associated morpho-physiological responses in pearlmillet hybrids and inbred lines under salt stress.docx

Domain:

agriculture

Record type:

paper
Creator:
AshParAniDev
Host:avatar

Pearl millet is a staple food for more than 90 million people residing in highly vulnerable hot arid and semi–arid regions of Africa and Asia. These regions are more prone to detrimental effects of soil salinity on crop performance in terms of reduced biomass and crop yields. We investigated the physiological mechanisms of salt tolerance to irrigation induced salinity stress (ECiw ~3, 6 & 9 dSm–1) and their confounding effects on plant growth and yield in pearl millet inbred lines and hybrids. On average, nearly 30% reduction in above ground plant biomass was observed at ECiw ~6 dSm-1 which stretched to 56% at ECiw ~9 dSm-1 in comparison to best available water. With increasing salinity stress, the crop performance of test hybrids was better in comparison to inbred lines; exhibiting relatively higher stomatal conductance (gS; 16%), accumulated lower proline (Pro; –12%) and shoot Na+/K+(–31%), synthesized more protein (SP; 2%) and sugars (TSS; 32%) compensating in lower biomass (AGB; –22%) and grain yield (GY: –14%) reductions at highest salinity stress of ECiw ~9 dSm–1. Physiological traits modeling underpinning plant salt tolerance and adaptation mechanism illustrated the key role of 7 traits (AGB, Pro, SS, gS, SPAD, Pn, and SP) in hybrids and 8 traits (AGB, Pro, PH, Na+, K+, Na+/K+, SPAD, and gS) in inbred lines towards anticipated grain yield variations in salinity stressed pearl millet. Most importantly, the AGB alone, explained >91% of yield variation among evaluated hybrids and inbreed lines at ECiw ~9 dSm–1. Cumulatively, the better morpho–physiological adaptation and lesser yield reduction with increasing salinity stress in pearl millet hybrids (HHB 146, HHB 272, and HHB 234) and inbred lines (H77/833–2–202, ICMA 94555 and ICMA 843–22) substantially complemented in increased plant salt tolerance and yield stability over a broad range of salinity stress. The information generated herein will help address in deciphering the trait associated physiological alterations to irrigation induced salt stress, and developing potential hybrids in pearl millet using these parents with special characteristics.

Visit

figshare.com

Tags

BotanyPlant BiologyPlant Systematics and TaxonomyPlant Cell and Molecular BiologyPlant Developmental and Reproductive BiologyPlant PathologyPlant PhysiologyPlant Biology not elsewhere classifiedsaline irrigationsalt tolerance+4

Licenses

CC BY 4.0

Similar

Performance of provitamin A- quality protein maize inbred lines and derived hybrids in contrasting environmentsEstimates of Genetic Variability and Trait Association among Maize (Zea mays L.) Inbred LinesGrain-yield stability among tropical maize hybrids derived from doubled-haploid inbred lines under random drought stress and optimum moisture conditionsGenetic studies of extra‐early provitamin‐A maize inbred lines and their hybrids in multiple environmentsResponses of interspecific hybrid eggplant f4 inbred lines to drought and heat stressAnalysis of Salinity Tolerance in African Night Shade Lines Based on Morpho-Physiological and Molecular Traits

Performance of provitamin A- quality protein maize inbred lines and derived hybrids in contrasting environments

Abstract Background Early maturing provitamin A (PVA) quality protein maize (QPM) inbred l

Estimates of Genetic Variability and Trait Association among Maize (Zea mays L.) Inbred Lines

International audience The present study aimed to evaluate the extent of genetic vari

Grain-yield stability among tropical maize hybrids derived from doubled-haploid inbred lines under random drought stress and optimum moisture conditions

Drought is a devastating environmental stress in agriculture and hence a common target of plant bree

Genetic studies of extra‐early provitamin‐A maize inbred lines and their hybrids in multiple environments

Abstract Vitamin A deficiency, drought, low soil nitrogen (low‐N), and Striga hermonthica parasit

Responses of interspecific hybrid eggplant f4 inbred lines to drought and heat stress

Eggplant is grown in and near the tropic and sub-tropic zones where climate change effects can be se

Analysis of Salinity Tolerance in African Night Shade Lines Based on Morpho-Physiological and Molecular Traits

Salinity-induced stress poses a significant threat to global agriculture, affecting crop yields in v