Identification of promising chickpea interspecific derivatives for agro-morphological and major biotic traits.

Front Plant Sci

Indian Council of Agricultural Research (ICAR)-National Bureau of Plant Genetic Resources, New Delhi, India.

Published: August 2022

AI Article Synopsis

  • Wild chickpea species exhibit traits that enhance climate resilience and productivity, making them valuable for hybridization with cultivated varieties.
  • This study focused on evaluating F generation interspecific hybrids developed from specific wild species in two diverse regions of India, examining variations in seed yield and related traits.
  • The research identified promising hybrid derivatives with desirable characteristics, and recommended them for further breeding efforts aimed at developing resilient chickpea genotypes.

Article Abstract

The wild species is well-known for having climate-resilient and productivity-enhancing traits of interest. Therefore, wide hybridization could be used as a realistic strategy for introgressing prospective traits from wild species into the cultivated gene pool. The present study was, thus, undertaken to evaluate F chickpea interspecific derivatives derived from Ladiz. and P. H. Davis wild annual species. As a result, a set of six interspecific crosses were advanced using the single seed descent (SSD) method of breeding. The F generation of these crosses was assessed in two diverse agro-ecological regions of India. The data revealed a wide range of variation with respect to seed yield and its important component traits, which resulted in the identification of the most promising derivatives carrying desirable characters as indicated by range, mean, and coefficient of variation. Further, fruitful heterosis was also estimated as promising selection criteria for identifying superior lines for earliness and high seed yield, including resistance against prevailing stresses (ascochyta blight, botrytis gray mold, dry root rot, and fusarium wilt). The superior derivatives carrying putative characters could be recommended for further breeding and selection of genetic materials for developing suitable genotypes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9386514PMC
http://dx.doi.org/10.3389/fpls.2022.941372DOI Listing

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