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Two ABCI family transporters,OsABCI15 and OsABCI16,are involved in grain-filling in rice
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作者 Bin Ma Xiubiao Cao +8 位作者 Xiaoyuan Li Zhong Bian Qi-Qi Zhang zijun fang Jiyun Liu Qun Li Qiaoquan Liu Lin Zhang Zuhua He 《Journal of Genetics and Genomics》 SCIE CAS CSCD 2024年第5期492-506,共15页
Seed development is critical for plant reproduction and crop yield,with panicle seed-setting rate,grain-filling,and grain weight being key seed characteristics for yield improvement.However,few genes are known to regu... Seed development is critical for plant reproduction and crop yield,with panicle seed-setting rate,grain-filling,and grain weight being key seed characteristics for yield improvement.However,few genes are known to regulate grain filling.Here,we identify two adenosine triphosphate(ATP)-binding cassette(ABC)I-type transporter genes,OsABCI15 and OsABCI16,involved in rice grain-filling.Both genes are highly expressed in developing seeds,and their proteins are localized to the plasma membrane and cytosol.Interestingly,knockout of OsABCI15 and OsABCI16 results in a significant reduction in seed-setting rate,caused predominantly by the severe empty pericarp phenotype,which differs from the previously reported low seed-setting phenotype resulting from failed pollination.Further analysis indicates that OsABCI15 and OsABCI16 participate in ion homeostasis and likely export ions between filial tissues and maternal tissues during grain filling.Importantly,overexpression of OsABCI15 and OsABCI16 enhances the seed-setting rate and grain yield in transgenic plants and decreases ion accumulation in brown rice.Moreover,the OsABCI15/16 orthologues in maize exhibit a similar role in kernel development,as demonstrated by their disruption in transgenic maize.Therefore,ourfindings reveal the important roles of two ABC transporters in cereal grain filling,highlighting their value in crop yield improvement. 展开更多
关键词 ABC transporters RICE Grain filling Ion homeostasis Grain yield
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不同取向Co^2+∶MgAl2O4的可饱和吸收特性的研究 被引量:1
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作者 方子君 惠勇凌 +3 位作者 李国泰 朱占达 雷訇 李强 《光学学报》 EI CAS CSCD 北大核心 2020年第22期151-156,共6页
通过实验研究了不同切割方向Co^2+∶MgAl2O4的可饱和吸收特性。测量了[100]和[110]切割方向Co^2+∶MgAl2O4的各向异性透过率特性,测量结果表明,[100]和[110]切割晶体的透过率随入射光偏振方向呈周期性变化。采用[100]和[110]两种切割方... 通过实验研究了不同切割方向Co^2+∶MgAl2O4的可饱和吸收特性。测量了[100]和[110]切割方向Co^2+∶MgAl2O4的各向异性透过率特性,测量结果表明,[100]和[110]切割晶体的透过率随入射光偏振方向呈周期性变化。采用[100]和[110]两种切割方向Co^2+∶MgAl2O4分别构成被动调Q激光器,并比较激光器的输出特性,结果表明,采用[110]切割的晶体有明显的优势,相比[100]切割晶体输出能量提高约8%,稳定性、光束质量、消光比均略有提高。 展开更多
关键词 激光光学 Co^2+∶MgAl2O4 可饱和吸收特性 各向异性 被动调Q
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