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Stored proteinases and the initiation of storage protein mobilization in seeds during germination and seedling growth

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TLDR
The evidence that the small amounts of endopeptidases in protein bodies of embryonic axes and cotyledons of dry seeds from dicotYledonous plants play an important role in the initiation of storage protein mobilization during early germination is summarized here.
Abstract
Though endopeptidases and carboxypeptidases are present in protein bodies of dry quiescent seeds the function of these proteases during germination is still a matter of debate. In some plants it was demonstrated that endopeptidases of dry protein bodies degrade storage proteins of these organelles. Other studies describe cases where this did not happen. The role that stored proteinases play in the initiation of storage protein breakdown in germinating seeds thus remains unclear. Numerous reviews state that the initiation of reserve protein mobilization is attributed to de novo formed endopeptidases which together with stored carboxypeptidases degrade the bulk of proteins in storage organs and tissues after seeds have germinated. The evidence that the small amounts of endopeptidases in protein bodies of embryonic axes and cotyledons of dry seeds from dicotyledonous plants play an important role in the initiation of storage protein mobilization during early germination is summarized here.

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First off the mark: early seed germination

TL;DR: An integrated view on the early phase of seed germination is provided and it is shown that it is characterized by dynamic biomechanical changes together with very early alterations in transcript, protein, and hormone levels that set the stage for the later events.
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Crystal structure of soybean 11S globulin: Glycinin A3B4 homohexamer

TL;DR: Electrostatic analysis of the faces suggests that the interchain disulfide-containing face has high positive potential at acidic pH, which induces dissociation of the hexamer into trimers that may be susceptible to proteinases after seed imbibition.
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Facile synthesis, stabilization, and anti-bacterial performance of discrete Ag nanoparticles using Medicago sativa seed exudates

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Phytotoxic and genotoxic effects of silver nanoparticles exposure on germinating wheat seedlings.

TL;DR: TEM analysis suggests that the observed effects of 1 and 10 mg L(-1) AgNPs on germinating Triticum aestivum L. seedlings were due primarily to the release of Ag ions fromAgNPs.
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Plant serine proteases: biochemical, physiological and molecular features.

TL;DR: This critical review focuses on the characterization of most plant serine proteases, and comprehensively lists information produced by more and more sophisticated research tools that have led to the current state of the art in knowledge of these unique enzymes.
References
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Journal ArticleDOI

Seed Germination and Dormancy.

TL;DR: This review provides both an overview of the essential processes that are associated with germination and a description of the possible impediments thereto that may result in dormancy.
Book

Handbook of proteolytic enzymes

TL;DR: In this paper, Serine Peptidases with a Ser/Lys Catalytic Dyad (SC) are described, as well as their relation to the Nodavirus Coat Protein.

The Handbook of proteolytic enzymes

TL;DR: (Abbreviated Contents Including Section Headings:)
Book

Advances in legume systematics

TL;DR: An examination of the phylogenetic relationships of Papilionoideae and the relationships in Caesalpinioidae and Mimosoideae is examined.
Journal ArticleDOI

Molecular and Cellular Biology Associated with Endosperm Mobilization in Germinating Cereal Grains

TL;DR: Regulation de l'expression genique durant la germination de caryopses de cereales; contribution non seulement de l-aleurone mais aussi du scutellum dans the mobilisation of l'albumen.