Self-incompatibility genetics (Brassica) — Sporophytic self-incompatibility (SSI) in Brassica is governed by which genetic system?
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AAegilops locus polymorphism
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BTriticum compatibility genes
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CBoth (a) and (b)
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DS alleles (S-locus polymorphism)
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ECytoplasmic male sterility only
Answer
Correct Answer: S alleles (S-locus polymorphism)
Explanation
Introduction / Context:Self-incompatibility prevents self-fertilization and promotes outcrossing. In Brassica, SSI is controlled by a highly polymorphic S-locus encoding determinants on both pollen and stigmatic tissues that trigger pollen rejection when S specificities match.
Given Data / Assumptions:
- SSI phenotype is determined by the diploid genotype of the pollen parent (sporophyte).
- S-locus receptor kinase (SRK) and S-locus cysteine-rich protein (SCR/SP11) are key components.
- Recognition causes signaling that arrests incompatible pollen.
Concept / Approach:Because the incompatibility is sporophytic, the phenotype of pollen reflects the parental anther tissue genotype at the S-locus. Extensive allelic diversity at the S-locus underlies strong SI reactions in Brassica.
Step-by-Step Solution:
Identify species → Brassica with SSI.Identify genetic control → polymorphic S-locus (S alleles).Select option (d).Verification / Alternative check:Molecular mapping and functional studies of SRK/SCR confirm S-locus control of SSI in Brassica.
Why Other Options Are Wrong:
a,b) Refer to other genera; not relevant to Brassica SSI.c) Irrelevant combination.e) CMS affects male fertility, not the SI recognition system.Common Pitfalls:Confusing gametophytic SI (pollen haplotype-determined) with sporophytic SI; Brassica shows SSI.
Final Answer:S alleles (S-locus polymorphism).