Sugar loading of crop seeds - a partnership of phloem, plasmodesmal and membrane transport.

New Phytol

Centre for Plant Science, School of Environmental and Life Sciences, University of Newcastle, Callaghan, NSW, 2308, Australia.

Published: September 2023


Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Sugar loading of developing seeds comprises a cohort of transport events that contribute to reproductive success and seed yield. Understanding these events is most advanced for grain crops (Brassicaceae, Fabaceae and Gramineae) and Arabidopsis. For these species, 75-80% of their final seed biomass is derived from phloem-imported sucrose. Sugar loading consecutively traverses three genomically distinct, and symplasmically isolated, seed domains: maternal pericarp/seed coat, filial endosperm and filial embryo. Sink status of each domain co-ordinately transitions from growth to storage. The latter is dominated by embryos (Brassicaceae and Fabaceae) or endosperms (Gramineae). Intradomain sugar transport occurs symplasmically through plasmodesmata. Interdomain sugar transport relies on plasma-membrane transporters operating in efflux (maternal and endosperm) or influx (endosperm and embryo) modes. Discussed is substantial progress made in identifying, and functionally evaluating, sugar symporters (STPs, SUTs or SUCs) and uniporters (SWEETs). These findings have underpinned a mechanistic understanding of seed loading. Less well researched are possible physical limitations imposed by hydraulic conductivities of differentiating protophloem and of subsequent plasmodesmal transport. The latter is coupled with sugar homeostasis within each domain mediated by sugar transporters. A similar conclusion is ascribed to fragmentary understanding of regulatory mechanisms integrating transport events with seed growth and storage.

Download full-text PDF

Source
http://dx.doi.org/10.1111/nph.19058DOI Listing

Publication Analysis

Top Keywords

sugar loading
12
sugar
8
transport events
8
brassicaceae fabaceae
8
growth storage
8
sugar transport
8
transport
6
seed
5
loading crop
4
crop seeds
4

Similar Publications

Cotton stalk (CTS) and corn stover (CRS) were pretreated using solid alkali (NaOH or Ca(OH)) assisted ball milling (BM). The physicochemical properties of the pretreated materials and their high-solid enzymatic hydrolysis performance were systematically investigated. The interaction between alkali and straw was synergistically enhanced by mechanical force generated during BM, achieving effective lignin removal.

View Article and Find Full Text PDF

Sugars Integrate External and Internal Signals in Regulating Shoot Branching.

Plant Cell Environ

September 2025

State Key Laboratory of Crop Gene Resources and Breeding, National Key Facility for Crop Gene Resources and Genetic Improvement, Institute of Crop Sciences, Chinese Academy of Agricultural Sciences, Beijing, China.

Plant phenotypes exhibit high plasticity, with shoot branching as a prime example and a key factor influencing yield in many species. The availability of photosynthates is a critical determinant of shoot branching (or tillering in monocots). Carbohydrates, primarily in the form of sucrose, are synthesised in actively photosynthetic leaves (sources) and transported to non-photosynthetic tissues (sinks), such as tiller buds.

View Article and Find Full Text PDF

mRNA delivered by microneedle patch (MNP) can enable painless delivery, reduced need for healthcare expertise, and improved thermostability. In this study, we investigated formulation and manufacturing approaches for developing MNPs that deliver mRNA-loaded lipid nanoparticles (LNPs) encoding luciferase as a reporter protein during MNP fabrication and storage, including mRNA-LNP concentration, formulation, pH, excipients, and backing material. MNPs were assessed for mRNA-LNP size, encapsulation efficiency, and protein expression in vitro and in vivo.

View Article and Find Full Text PDF

In this study, a sea buckthorn-wolfberry compound coffee (SWCC) solid beverage was formulated and evaluated based on sensory scores, dispersibility, and water solubility. The optimal formulation consisted of 9% sea buckthorn powder, 16% wolfberry powder, 65% coffee powder, 8% sugar, 1.25% microcrystalline cellulose, 0.

View Article and Find Full Text PDF

has shown antioxidant and anti-inflammatory properties in certain tissues. However, its impact on the brain remains unproven. This study investigates the effect of extract and phytosomes on the oxidative status of the brains of rats fed a high-fat-fructose diet (HFD).

View Article and Find Full Text PDF