控制(管理)
表生(地质学)
图像(数学)
光学
地质学
计算机视觉
计算机科学
人工智能
物理
古生物学
风化作用
作者
Haoran Xue,Marco Saltini,Nicola Illing,Kelly Shepherd,Olivia Page-Macdonald,Oliver Marketos,Caroline E. Robertson,A. Udaya Shankar,S. T. Suess,Christian Kappel,Saleh Alseekh,Eva E. Deinum,Robert A. Ingle,Michael Lenhard
出处
期刊:
[Cold Spring Harbor Laboratory]
日期:2025-09-01
标识
DOI:10.1101/2025.08.29.672924
摘要
How genes determine the left- versus right-handed development of chiral structures is a fascinating question. The reciprocal placement of female and male organs on opposite sides of the midline in mirror-image flowers limits selfing and promotes efficient cross-pollination. Here we identify the molecular and developmental basis of floral handedness in butterfly lilies. Female and male organs deflect by a combination of genetically controlled chirality and gravitropism, orienting left and right with respect to an external rather than internal reference axis. Coordinated organ placement is controlled by a hemizygous supergene containing two causal loci, MIR156-R and YUCCA-R, responsible for opposite female and male organ orientation, respectively. This genomic architecture results in differential placement of the supergene alleles on the pollinators and maintenance of the reproductive polymorphism.
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