Home NewsChinese Scientists ‌⁠‍‍⁠⁠‌‌⁠‌⁠‍‍‍‌‌Develop Gene for Higher-Yield Rice

Chinese Scientists ‌⁠‍‍⁠⁠‌‌⁠‌⁠‍‍‍‌‌Develop Gene for Higher-Yield Rice

by Torkuma Gbor
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Chinese scientists have identified a rare gene variant that could help rice mature earlier while maintaining or increasing yields.

‎A research team led by Zhang Jian at the China National Rice Research Institute made the discovery, as reported by TV BRICS.

‎The researchers identified and cloned a rare variant of the TGW1a gene known as TGW1aJZ, which can shorten rice’s growth cycle while increasing grain yield.

‎According to the study, the gene encodes a florigen-like protein that promotes flowering, responds to nitrogen signals, and improves nitrogen uptake and utilisation in rice plants.

‎The finding could be particularly useful in southern China, where farmers use multiple-cropping systems.

‎In some areas, farmers can grow two rice crops in a single year, leaving only a short period between harvesting one crop and planting the next.

‎Shortening the growth cycle by several days could help optimise land use and allow farmers to fit additional crops into the growing season.

‎The researchers have developed a series of improved rice varieties using the identified gene.

‎They mature three to eight days earlier and produce four to 11 per cent higher yields.

‎The genetic resource could be applied to different rice types, including conventional early-season varieties and later-planted hybrids.

‎Meanwhile, China harvested 56.58 billion jin (28.29 million tonnes) of early rice in 2026, according to the source.

‎Production remained above 28 million tonnes for the sixth consecutive year.

‎The area planted with early rice reached 71.164 million mu (about 4.74 million hectares), up 22,000 mu (around 1466 hectares) from 2025.

‎The development of high-yield, early-maturing varieties is expected to support the efficiency of China’s rice production, particularly in regions with multiple-cropping systems.

‎The research also provides a genetic resource for further advances in rice breeding and agricultural productivity.

‎(TV BRICS/NAN)


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