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The raw data shown are the values used to generate the graphs in Fig 5, panels A and E.
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Total of 579 genes exhibited high expression levels in ALA-starved <i>hem1</i>Δ cells.
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The raw data shown are the values used to generate the graphs in Fig 6, panels A, B and C.
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Image 3_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 8_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 6_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 5_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 9_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 1_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 4_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 7_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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Image 2_Molecular profiling of PYL gene family in sugar beet (Beta vulgaris L.) and BvPYL2/3 involved in ABA accumulation confers enhanced resistance to CLS (Cercospora Leaf Spot)....
Publicat 2025“…These results reveal two distinct regulatory mechanisms: BvPYL2 functions through constitutive interaction with BvPP2C37, and BvPYL3 operates via ABA-dependent signaling, both contributing to stomatal immunity against CLS. …”
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<i>De Novo</i> Peptides That Induce the Liquid–Liquid Phase Separation of α‑Synuclein
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