MORE PANICLES 3, a natural allele of OsTB1/FC1, impacts rice yield in paddy fields at elevated CO2 levels

Author:

Takai Toshiyuki12ORCID,Taniguchi Yojiro23,Takahashi Megumu4,Nagasaki Hideki5,Yamamoto Eiji6,Hirose Sakiko3,Hara Naho3,Akashi Hiroko7,Ito Jun7,Arai‐Sanoh Yumiko2,Hori Kiyosumi2,Fukuoka Shuichi2,Sakai Hidemitsu8,Tokida Takeshi8,Usui Yasuhiro9,Nakamura Hirofumi10,Kawamura Kensuke1,Asai Hidetoshi1,Ishizaki Takuma1,Maruyama Kyonoshin1ORCID,Mochida Keiichi71112ORCID,Kobayashi Nobuya12,Kondo Motohiko213,Tsuji Hiroyuki714,Tsujimoto Yasuhiro1,Hasegawa Toshihiro8,Uga Yusaku2ORCID

Affiliation:

1. Japan International Research Center for Agricultural Sciences (JIRCAS) Tsukuba Ibaraki 305‐8686 Japan

2. Institute of Crop Science, National Agriculture and Food Research Organization (NARO) Tsukuba Ibaraki 305‐8518 Japan

3. Institute of Agrobiological Sciences, NARO Tsukuba Ibaraki 305‐8634 Japan

4. Institute of Vegetable and Floriculture Science, NARO Tsukuba Ibaraki 305‐8519 Japan

5. Kazusa DNA Research Institute Kisarazu Chiba 292‐0818 Japan

6. Meiji University Kawasaki Kanagawa 214‐8571 Japan

7. Kihara Institute for Biological Research, Yokohama City University Yokohama Kanagawa 244‐0813 Japan

8. Institute for Agro‐Environmental Sciences, NARO Tsukuba Ibaraki 305‐8604 Japan

9. Central Region Agricultural Research Center, NARO Tsukuba Ibaraki 305‐8666 Japan

10. Taiyo Keiki Co. Ltd. Toda Saitama 335‐0015 Japan

11. RIKEN Center for Sustainable Resource Science Yokohama Kanagawa 230‐0045 Japan

12. School of Information and Data Sciences Nagasaki University Nagasaki Nagasaki 852‐8521 Japan

13. Graduate School of Bioagricultural Sciences Nagoya University Nagoya Aichi 464‐8601 Japan

14. Bioscience and Biotechnology Center Nagoya University Nagoya Aichi 464‐8601 Japan

Abstract

SUMMARYImproving crop yield potential through an enhanced response to rising atmospheric CO2 levels is an effective strategy for sustainable crop production in the face of climate change. Large‐sized panicles (containing many spikelets per panicle) have been a recent ideal plant architecture (IPA) for high‐yield rice breeding. However, few breeding programs have proposed an IPA under the projected climate change. Here, we demonstrate through the cloning of the rice (Oryza sativa) quantitative trait locus for MORE PANICLES 3 (MP3) that the improvement in panicle number increases grain yield at elevated atmospheric CO2 levels. MP3 is a natural allele of OsTB1/FC1, previously reported as a negative regulator of tiller bud outgrowth. The temperate japonica allele advanced the developmental process in axillary buds, moderately promoted tillering, and increased the panicle number without negative effects on the panicle size or culm thickness in a high‐yielding indica cultivar with large‐sized panicles. The MP3 allele, containing three exonic polymorphisms, was observed in most accessions in the temperate japonica subgroups but was rarely observed in the indica subgroup. No selective sweep at MP3 in either the temperate japonica or indica subgroups suggested that MP3 has not been involved and utilized in artificial selection during domestication or breeding. A free‐air CO2 enrichment experiment revealed a clear increase of grain yield associated with the temperate japonica allele at elevated atmospheric CO2 levels. Our findings show that the moderately increased panicle number combined with large‐sized panicles using MP3 could be a novel IPA and contribute to an increase in rice production under climate change with rising atmospheric CO2 levels.

Funder

Japan Science and Technology Agency

Japan Society for the Promotion of Science

Ministry of Agriculture, Forestry and Fisheries

Publisher

Wiley

Subject

Cell Biology,Plant Science,Genetics

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