男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語(yǔ)Fran?ais
China
Home / China / Innovation

Breakthrough sets stage for next-generation high-yield rice

Researchers decode genetic puzzle, paving the way for global food security

By LI LEI | China Daily | Updated: 2024-03-13 09:04
Share
Share - WeChat

A group of rice researchers in Beijing have decoded the genetic puzzle behind the vexing trade-off between the average size of rice grains and their maximum number on rice ears, paving the way for next-generation super high-yield varieties, according to a study published in Science on Friday.

The discovery heralds a major revolution in rice breeding since hybrid rice was rolled out half a century ago and helped curb hunger globally, experts said.

The negative correlation between grain size and their total number has long impeded progress toward higher-yield varieties, as increasing the grain size would decrease the number of grains.

Researchers from the Institute of Crop Sciences of the Chinese Academy of Agricultural Sciences, led by Tong Hongning, had looked to clustered-spikelet rice, a wild variety in which multiple grains grow together on a single stem, assuming it bears the linchpin to tipping the balance.

After years of research, the scientists managed to clone the key gene responsible for the clustered-spikelet, and unraveled how a plant hormone, brassinosteroids, can be manipulated through genetic engineering to bolster grain number without compromising size.

Clustered-spikelet rice has intrigued global plant researchers for almost a century. However, the gene responsible for its formation had never been pinpointed, Tong said.

Trial planting data showed that varieties developed through Tong's method produce 11.2 percent to 20.9 percent more yield depending on where they were planted.

"We also found the hormone played a similar role in pepper, suggesting a broader role of the hormone in controlling multi-spikelet phenotypes in nature," he said.

Cao Yongsheng, a vice-president of the Chinese Academy of Agricultural Sciences, said rice research has two major milestones: dwarf rice breeding and hybrid rice breeding. It counts on the mining of important genes, such as that of the clustered-spikelet rice, to score another breakthrough in output.

"Rice is a staple for over half of the global population. With the increasing global population and decreasing arable land, improving rice yield is significant for ensuring global food security," he said.

Cao said that progress in basic agricultural science research is the driving force behind agricultural innovations, and is the bedrock for China to achieve high-level self-reliance in the sector.

Technologies such as gene editing, synthetic biology and digital intelligence are transforming farming and intensifying technological competition, he added.

Qian Qian, one of the Science paper's corresponding authors and an academician at the Chinese Academy of Sciences, said scientific progress contributes 63 percent of agricultural output value in China and has strengthened national food resilience.

"Our agriculture is already at the forefront of the world on many fronts," he said, adding that China is the absolute leader in rice breeding.

Qian, a deputy to the 14th National People's Congress, the top legislature, which met in Beijing recently, said the country's agricultural breakthroughs are built upon work by generations of tech workers.

"Scientists, represented by Yuan Longping (the father of hybrid rice), have overcome the global challenge of hybrid rice, providing the most solid foundation for solving China's food problems," he said.

"Hybrid rice has allowed us to stand on an equal footing with the world."

Top
BACK TO THE TOP
English
Copyright 1995 - . 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
 
主站蜘蛛池模板: 海盐县| 裕民县| 蓬安县| 玛曲县| 怀远县| 楚雄市| 双柏县| 雅安市| 日照市| 缙云县| 墨玉县| 鄂尔多斯市| 铁力市| 栖霞市| 周至县| 尼玛县| 芦溪县| 南平市| 扶沟县| 襄汾县| 乌拉特后旗| 霍山县| 武胜县| 柘城县| 称多县| 石首市| 即墨市| 霍林郭勒市| 科尔| 东平县| 固始县| 武陟县| 洱源县| 深水埗区| 宿迁市| 永吉县| 武乡县| 博客| 江川县| 凭祥市| 泌阳县| 土默特右旗| 庆安县| 花垣县| 东丰县| 当雄县| 调兵山市| 西和县| 水富县| 朝阳区| 闸北区| 剑阁县| 安义县| 万年县| 洞口县| 竹北市| 曲阳县| 苍山县| 马鞍山市| 玛沁县| 阳春市| 平山县| 石渠县| 洪湖市| 阳山县| 桦甸市| 永修县| 黎平县| 澄迈县| 馆陶县| 东平县| 安阳县| 抚松县| 长岭县| 巨野县| 盐城市| 西峡县| 奉贤区| 囊谦县| 永丰县| 上高县| 塘沽区|