Related Experiment Video
Updated: Jul 2, 2025

Ploidy Manipulation of Zebrafish Embryos with Heat Shock 2 Treatment
Published on: December 16, 2016
Heat stress at the bicellular stage inhibits sperm cell development and transport into pollen tubes
Xingli Li1, Astrid Bruckmann2, Thomas Dresselhaus1
1Department of Cell Biology and Plant Biochemistry, University of Regensburg, 93053 Regensburg, Germany.
Abstract:
For successful double fertilization in flowering plants (angiosperms), pollen tubes deliver 2 nonmotile sperm cells toward female gametes (egg and central cell, respectively). Heatwaves, especially during the reproduction period, threaten male gametophyte (pollen) development, resulting in severe yield losses. Using maize (Zea mays) as a crop and grass model system, we found strong seed set reduction when moderate heat stress was applied for 2 d during the uni- and bicellular stages of pollen development. We show that heat stress accelerates pollen development and impairs pollen germination capabilities when applied at the unicellular stage. Heat stress at the bicellular stage impairs sperm cell development and transport into pollen tubes. To understand the course of the latter defects, we used marker lines and analyzed the transcriptomes of isolated sperm cells. Heat stress affected the expression of genes associated with transcription, RNA processing and translation, DNA replication, and the cell cycle. This included the genes encoding centromeric histone 3 (CENH3) and α-tubulin. Most genes that were misregulated encode proteins involved in the transition from metaphase to anaphase during pollen mitosis II. Heat stress also activated spindle assembly check point and meta- to anaphase transition genes in sperm cells. In summary, misregulation of the identified genes during heat stress at the bicellular stage results in sperm cell development and transport defects ultimately leading to sterility.
Related Concept Videos
Spermatogenesis
Sperm Transport
The maturation phase occurs in the epididymis, where sperm...
Responses to Heat and Cold Stress
Meiosis II
Fertilization
What is Meiosis?
Although meiosis shares similarities with mitosis—both rely on microtubules...

