Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Wheat is one of the most important crops in the world; however, loss of genetic variability and abiotic stress caused by variable climatic conditions threaten future productivity. Reproduction is critical for wheat yield; however, pollen development is amongst the developmental stages most sensitive to stresses such as heat, cold, or drought. A better understanding of how anther and pollen development is regulated is needed to help produce more resilient crops and ensure future yield increases. However, in cereals such as wheat, barley, and rice, flowers form within the developing pseudostem and therefore accurate staging of floral materials is extremely challenging. This makes detailed phenotypic and molecular analysis of floral development very difficult, particularly when limited plant material is available, for example with mutant or transgenic lines. Here we present an accurate approach to overcome this problem, by non-destructive staging of reproduction development in Cadenza, the widely used spring wheat research variety. This uses a double-scale system whereby anther and pollen development can be predicted in relation to spike size and spike position within the pseudostem. This system provides an easy, reproducible method that facilitates accurate sampling and analysis of floral materials, to enable anther and pollen developmental research.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7307855PMC
http://dx.doi.org/10.1093/jxb/eraa156DOI Listing

Publication Analysis

Top Keywords

pollen development
12
anther pollen
12
accurate staging
8
staging reproduction
8
reproduction development
8
development cadenza
8
floral materials
8
analysis floral
8
development
6
wheat
5

Similar Publications

Somatic embryogenesis (SE) is an in vitro mass propagation system widely employed in plant breeding programs. However, its efficiency in many forest species remains limited due to their recalcitrance. SE relies on the induction of somatic cell reprogramming into embryogenic pathways, a process influenced by transcriptomic changes regulated, among other factors, by epigenetic modifications such as DNA methylation, histone methylation, and histone acetylation.

View Article and Find Full Text PDF

Background: Allergic rhinitis and allergic asthma are respiratory tract diseases predominantly triggered by allergens such as pollens, house dust mite, mold etc. The prevalence of respiratory allergens varies according to geographic location. Ragweed (), a prevalent weed particularly in South America and Europe, is being investigated for its sensitization frequency in the Black Sea region of our country.

View Article and Find Full Text PDF

Molecular mechanisms of pollen aperture formation in Arabidopsis and rice.

J Exp Bot

September 2025

Department of Molecular Genetics, Ohio State University, Columbus, OH 43210, USA.

Pollen apertures are specialized regions on the pollen surface that receive little to no exine deposition, forming distinct structures important for pollen function. Aperture number, shape, and positions vary widely across species, resulting in diverse, species-specific patterns that make apertures fascinating from both cell-biological and evolutionary perspectives. Aperture formation requires developing pollen to establish polarity and define specific regions of the plasma membrane as aperture domains.

View Article and Find Full Text PDF

Reprogramming of microspore fate via BBM-BAR1 for highly efficient in vivo haploid induction.

Cell

August 2025

College of Life Sciences, Guizhou Normal University, Guiyang 550025, China; State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan 430072, China. Electronic address:

Haploid induction (HI) through stress-treated microspore culture has gained significant attention for over half a century, yet the molecular mechanism underlying microspore fate transition for androgenesis remains poorly understood. Here, we demonstrate that microspore-specific expression of BABY BOOM (BBM) is sufficient to induce microspore cell fate transition and in vivo androgenesis in both tobacco and rice, effectively bypassing the requirement for stress treatment. We further identify BBM-activated Androgenesis Regulator 1 (BAR1) as a novel downstream effector of BBM that promotes microspore reprogramming.

View Article and Find Full Text PDF

Pollen-inspired magnetic nanoparticles with dual-recognition sensing interfaces for intelligent-response modulation of circulating tumor cells capture and release.

Biosens Bioelectron

August 2025

Key Laboratory of Bioactive Materials, Ministry of Education, College of Life Science, Nankai University, Tianjin, 300071, China. Electronic address:

A critical prerequisite for translating circulating tumor cells (CTCs) detection technologies into clinical practice is achieving high-efficiency capture and non-destructive release of low-abundance CTCs in blood. In recent years, innovative designs and surface modification of bioinspired topological micro/nanostructured materials have provided efficient solutions to capture and release CTCs. Motivated by pollen morphology and multimodal regulation, this study designed pollen-inspired spiky topological magnetic nanoparticles (IP-GSMNs) based on dual-recognition interface and intelligent-response modulation for high-efficiency capture and non-destructive release of CTCs from peripheral whole blood.

View Article and Find Full Text PDF