Arabidopsis floral phytomer development: auxin response relative to biphasic modes of organ initiation

被引:28
作者
Chandler, J. W. [1 ]
Werr, W. [1 ]
机构
[1] Univ Cologne, Inst Dev Biol, Cologne Bioctr, D-50931 Cologne, Germany
关键词
Centripetal flower development; DORNROSCHEN-LIKE; stem-cell niche; founder cells; floral meristem; bract; SHOOT APICAL MERISTEMS; FLOWER DEVELOPMENT; TRANSCRIPTION FACTORS; MEDICAGO-TRUNCATULA; BRACT SUPPRESSION; GENE-EXPRESSION; PERIANTHIA GENE; HOMEOBOX GENE; DORNRA-SCHEN; ABC MODEL;
D O I
10.1093/jxb/eru153
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
In the Arabidopsis inflorescence meristem (IM), auxin is considered a prepatterning signal for floral primordia, whereas a centripetal mode of positional information for floral organ identity is inherent to the ABCE model. However, spatio-temporal patterns of organ initiation in each whorl at the earliest initiation stages are largely unknown. Evidence suggests that initial flower development occurs along an abaxial/adaxial axis and conforms to phytomer theory. Use of the founder cell marker DORNROSCHEN-LIKE (DRNL) as a tool in leafy, puchi, and apetala 1 cauliflower mutant backgrounds suggests that bract founder cells are marked at the IM periphery. The DRNL transcription domain in the wild-type IM is spatially discrete from DR5 expression, suggesting that bract initiation is independent of canonical auxin response. When bracts develop in lfy and puchi mutant floral primordia the initiation of lateral sepals precedes the specification of medial sepals compared with wild type, showing an interplay between bract and abaxial sepal founder cell recruitment. In the perianthia (pan) mutant background, DRNL expression indicates that a radial outer whorl arrangement derives from splitting of sepal founder cell populations at abaxial and adaxial positions. This splitting of incipient sepal primordia is partially dependent on PRESSED FLOWER (PRS) activity and implies that sepal specification is independent of WUSCHEL and CLAVATA3 expression, as both marker genes only regain activity in stage-2 flowers, when patterning of inner floral organs switches to a centripetal mode. The transition from an initially abaxial/adaxial into a centripetal patterning programme, and its timing represent an adaptive trait that possibly contributes to variation in floral morphology, especially unidirectional organ initiation.
引用
收藏
页码:3097 / 3110
页数:14
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