综合一区欧美国产,99国产麻豆免费精品,九九精品黄色录像,亚洲激情青青草,久久亚洲熟妇熟,中文字幕av在线播放,国产一区二区卡,九九久久国产精品,久久精品视频免费

Global EditionASIA 中文雙語Fran?ais
China

Key mechanism on crop improvement unlocked

By ZHOU WENTING in Shanghai | China Daily | Updated: 2025-12-09 00:00
Share
Share - WeChat

Chinese scientists have identified a key mechanism that governs the function of plant stem cells — cells that enable plants to continuously generate new leaves, stems and flowers — a finding that could enable the improvement of crop yields, quality and resilience.

The researchers found that the mechanical properties of the plant cell wall play a pivotal role in stem cell regulation. They said that in the future, precise control of cell wall features may allow scientists to "program" stem cell activity to shape ideal plant architectures. Potential benefits, they added, could include larger grains, more tillers and bigger fruits.

Plants maintain an extraordinary ability to produce new organs thanks to stem cells located in growth centers such as the shoot apical meristem and root tips. These cells divide and differentiate to build the plant's structure.

The study, led by a team from the Chinese Academy of Sciences Center for Excellence in Molecular Plant Sciences, shows that the cell wall — long viewed as a static scaffold — is in fact dynamically involved in this developmental process.

The researchers found that in the stem cell regions at the tips of plant shoots, pectin, the main component of the cell wall, displays a bimodal distribution. Mature cell walls are stiff, acting like load-bearing beams, while each new wall formed during cell division is initially soft and flexible. The difference is controlled by a simple chemical modification to pectin: stiff walls contain highly methylesterified pectin, while new, soft walls contain de-methylesterified pectin.

To determine how plants ensure that the softening enzyme acts only on new walls, the team identified a key enzyme, PME5, as the central regulator that softens pectin.

"We found a clever trick. The cell keeps the instruction manual for this enzyme — the PME5 messenger RNA — under lock and key inside the nucleus. It is like having a powerful tool stored safely in a toolbox," said Yang Weibing, a researcher at the CAS center.

"Only when a cell is actively dividing does the toolbox open. As the nucleus temporarily disassembles, the PME5 mRNA is released. It is immediately translated into the PME5 enzyme, which is delivered right to the site of the new, forming wall, softening it precisely where and when it is needed. This ensures the mature walls remain stiff and structural, while new walls are flexible enough to be positioned correctly," he said.

The findings, resulting from a decade of work, were published on Friday in the journal Science.

The researchers said the nuclear sequestration mechanism represents a sophisticated form of gene regulation that is not unique to PME5 but shared by several related enzymes. They also found that the bimodal wall pattern occurs across diverse crops, suggesting it is a fundamental feature of plant growth.

The team said the work offers a theoretical foundation and technological pathway for improving crop production and supporting global food security.

Today's Top News

Editor's picks

Most Viewed

Top
BACK TO THE TOP
English
Copyright 1994 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
东乌| 册亨县| 汽车| 华蓥市| 连山| 梁山县| 泽州县| 吉木萨尔县| 聂拉木县| 莲花县| 崇文区| 阆中市| 枝江市| 德格县| 霍城县| 格尔木市| 四平市| 克山县| 且末县| 泾阳县| 镇远县| 凤台县| 博客| 自贡市| 金坛市| 唐海县| 洪湖市| 西乌珠穆沁旗| 广河县| 孝感市| 七台河市| 贵阳市| 大厂| 普陀区| 武陟县| 玉林市| 辰溪县| 项城市| 集贤县| 噶尔县| 浮梁县|