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Fran?ais
China
Home / China / Innovation

Chinese scientists identify gene that can boost grain yield by 30 percent

By ZHAO YIMENG | chinadaily.com.cn | Updated: 2022-07-22 16:44
Share
Share - WeChat
Agronomists from the Institute of Crop Sciences, CAAS, harvest rice at an experimental field in Beijing's Shunyi district in November. [Photo provided to chinadaily.com.cn]

Chinese scientists have identified a gene that is expected to boost grain yield by at least 30 percent and shorten the time taken for rice to grow, says a paper published in the Science Magazine online on Friday.

The high-yielding gene, called OsDREB1C, can simultaneously improve the photosynthetic capacity and nitrogen use efficiency while triggering early flowering of rice, according to Zhou Wenbin, leader of the research team at the Chinese Academy of Agricultural Sciences.

Zhou, a researcher at the Institute of Crop Sciences of the CAAS, said field trials with OsDREB1C rice were being conducted since 2018 in Beijing; Sanya in Hainan province; and Hangzhou, capital of Zhejiang province.

The gene led to rice variety Nipponbare's yield increasing by 41.3 percent to 68.3 percent. In the case of Xiushui 134, another variety, yield increased by at least 30.1 percent.

Overexpression of the gene in Nipponbare helped rice ears to develop 13 days early. According to the paper, the gene also helps in increasing yield and shortening flowering time of wheat. It is estimated that the production capacity of rice, wheat, and corn in China will increase by more than 20 percent by 2030 to help feed 1.45 billion people in the country. This is particularly helpful at a time when there is need to increase grain yield to meet the challenges posed by the COVID-19 pandemic and extreme climate change.

Breeding of dwarf varieties of rice in the 1960s and successful hybrid rice breeding, a concept invented by late agronomist Yuan Longping, are the two major breakthroughs in grain production, according to Zhou. The industrialization of hybrid rice increased production by 20 percent to 30 percent. These breakthroughs were achieved following the identification of a key gene, Yuan said.

This time round, a dramatic increase in yield and shorter growth duration is being achieved by genetically modulating the expression of a single transcriptional regulator gene, OsDREB1C, the paper said.

In addition, by enhancing photosynthetic capacity and the efficiency of nitrogen use, the gene offers the promise of more sustainable food production in the future.

Wan Jianmin, an academician at the Chinese Academy of Engineering and former vice-president of CAAS, said the outcome has provided a potentially valuable gene resource for scientists working to improve crop varieties.

"The study brings us hope of high yield with less nitrogen fertilizer application and shortened duration of growth," he said.

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: 武平县| 盘锦市| 安康市| 呼和浩特市| 和田市| 昭通市| 新巴尔虎右旗| 新昌县| 保德县| 鄢陵县| 锡林浩特市| 青田县| 汽车| 禄丰县| 新郑市| 揭阳市| 濉溪县| 河池市| 阿巴嘎旗| 鹤壁市| 荥经县| 上思县| 高密市| 锡林郭勒盟| 盐源县| 泊头市| 天水市| 尼木县| 诏安县| 丹棱县| 南通市| 天水市| 永春县| 卢湾区| 铜梁县| 顺义区| 滦南县| 鄂托克旗| 内黄县| 洞口县| 保康县| 梓潼县| 平阳县| 内黄县| 体育| 通化市| 黎平县| 菏泽市| 田林县| 时尚| 大厂| 岑巩县| 汨罗市| 灌阳县| 县级市| 肥乡县| 来宾市| 乐清市| 嘉峪关市| 贡觉县| 调兵山市| 雅安市| 乌拉特前旗| 山丹县| 栖霞市| 思茅市| 万荣县| 东明县| 昌江| 沭阳县| 洪泽县| 吉安市| 汶川县| 博兴县| 潍坊市| 清徐县| 巩留县| 丹江口市| 祥云县| 综艺| 德令哈市| 渑池县|