Seed fertilization, development, and germination in Hydatellaceae (Nymphaeales): Implications for endosperm evolution in early angiosperms.
Resource type
Journal article
Date published
September 1, 2009
Abstract
New data on endosperm development in the early‐divergent angiosperm (Hydatellaceae) indicate that double fertilization results in formation of cellularized micropylar and unicellular chalazal domains with contrasting ontogenetic trajectories, as in waterlilies. The micropylar domain ultimately forms the cellular endosperm in the dispersed seed. The chalazal domain forms a single‐celled haustorium with a large nucleus; this haustorium ultimately degenerates to form a space in the dispersed seed, similar to the chalazal endosperm haustorium of waterlilies. The endosperm condition in and waterlilies resembles the helobial condition that characterizes some monocots, but contrasts with and , in which most of the mature endosperm is formed from the chalazal domain. The precise location of the primary endosperm nucleus governs the relative sizes of the chalazal and micropylar domains, but not their subsequent developmental trajectories. The unusual tissue layer surrounding the bilobed cotyledonary sheath in seedlings of some species of is a belt of persistent endosperm, comparable with that of some other early‐divergent angiosperms with a well‐developed perisperm, such as Saururaceae and Piperaceae. The endosperm of is limited in size and storage capacity but relatively persistent.
Journal title
American Journal of Botany
Volume
96
Issue
9
Publisher
Wiley
ISSN
0002-9122
eISSN
1537-2197
Date accepted
April 14, 2009
Official URL
Rights statement
In Copyright