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January 17, 2026Plants0 citationsOpen Access

Identification of a Chlorophyll-Deficient Mutant in Maize Associated with Exogenous Vector Insertion

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WZWenqi ZhouHWHaoyue WangCLChunxia Liang

Key Points

  • The research aims to identify and characterize a chlorophyll-deficient mutant in maize to understand its genetic basis and implications for photosynthesis.
  • Isolated an albino mutant from transgenic maize breeding lines
  • Performed genetic analysis using chi-square tests on T2 generation
  • Conducted microscopic examinations of chloroplasts
  • Analyzed chloroplast gene expression using Northern blotting and qRT-PCR
  • Executed PCR-based co-segregation analysis on the mutation
  • The mutant phenotype is inherited in a Mendelian manner, confirmed by a segregation ratio of 3:1
  • Microscopic analysis showed absence of normally developed chloroplasts
  • Expression analysis indicated impaired regulation of chloroplast gene expression
  • Co-segregation analysis linked the mutant phenotype to the inserted vector sequence rather than point mutations

Abstract

Leaf color mutants are commonly characterized by altered chlorophyll content and aberrant chloroplast development, making them valuable models for investigating photosynthetic mechanisms and chloroplast biogenesis. In this study, an albino mutant was isolated from a population of transgenic maize breeding lines. Genetic analysis indicated that the mutant phenotype is inherited in a Mendelian manner and is controlled by a single nuclear locus. This was supported by a χ2 test performed on the T2 generation, which confirmed a segregation ratio consistent with 3:1 (176:68, χ2 = 1.07 0.05). Microscopic examination revealed the absence of normally developed chloroplasts in mutant cells. Further expression analysis of chloroplast genes via Northern blotting and quantitative real-time PCR (qRT-PCR) suggested that the mutation impairs the regulation of plastid-encoded polymerase (PEP)-dependent chloroplast gene expression. Notably, PCR-based co-segregation analysis indicated that the mutant phenotype is associated with the entire inserted vector sequence, rather than a point mutation or a small genomic deletion. In conclusion, this paper reports the isolation and phenotypic characterization of an etiolated mutant from a transgenic maize breeding population, including comparative ultrastructural analysis of chloroplasts, co-segregation validation, and chloroplast gene expression profiling. These results enhance our understanding of the physiological and molecular mechanisms underlying chlorophyll-deficient mutations in plants.

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Cite This Study

Zhou et al. (2026) studied this question.

synapsesocial.com/papers/696b26d7d2a12237a934a0d6https://doi.org/10.3390/plants15020266
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