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High-Temperature and Drought-Resilience Traits among Interspecific Chromosome Substitution Lines for Genetic Improvement of Upland Cotton

K. Raja ReddyDepartment of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS 39762, USARaju BheemanahalliDepartment of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS 39762, USASukumar SahaUSDA-ARS, Genetics and Sustainable Agriculture Research Unit, Mississippi State, MS 39762, USAKulvir SinghDepartment of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS 39762, USASuresh LokhandeDepartment of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS 39762, USABandara GajanayakeDepartment of Plant and Soil Sciences, Mississippi State University, Mississippi State, MS 39762, USAJohn J. ReadUSDA-ARS, Genetics and Sustainable Agriculture Research Unit, Mississippi State, MS 39762, USAJohnie N. JenkinsUSDA-ARS, Genetics and Sustainable Agriculture Research Unit, Mississippi State, MS 39762, USADwaine A. RaskaLuis M. De SantiagoAmanda M. Hulse‐KempDepartment of Soil and Crop Sciences, Texas A&M AgriLife Research, College Station, TX 77843, USARobert N. VaughnDavid M. Stelly
2020en
ABI

Аннотация

Upland cotton (Gossypium hirsutum L.) growth and development during the pre-and post-flowering stages are susceptible to high temperature and drought. We report the field-based characterization of multiple morpho-physiological and reproductive stress resilience traits in 11 interspecific chromosome substitution (CS) lines isogenic to each other and the inbred G. hirsutum line TM-1. Significant genetic variability was detected (p < 0.001) in multiple traits in CS lines carrying chromosomes and chromosome segments from CS-B (G. barbadense) and CS-T (G. tomentosum). Line CS-T15sh had a positive effect on photosynthesis (13%), stomatal conductance (33%), and transpiration (24%), and a canopy 6.8 °C cooler than TM-1. The average pollen germination was approximately 8% greater among the CS-B than CS-T lines. Based on the stress response index, three CS lines are identified as heat- and drought-tolerant (CS-T07, CS-B15sh, and CS-B18). The three lines demonstrated enhanced photosynthesis (14%), stomatal conductance (29%), transpiration (13%), and pollen germination (23.6%) compared to TM-1 under field conditions, i.e., traits that would expectedly enhance performance in stressful environments. The generated phenotypic data and stress-tolerance indices on novel CS lines, along with phenotypic methods, would help in developing new cultivars with improved resilience to the effects of global warming.

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