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1-甲基环丙烯处理增强了控制胚乳细胞分裂和淀粉生物合成的基因表达,从而改善了密穗型水稻品种的籽粒灌浆。

1-MCP treatment enhanced expression of genes controlling endosperm cell division and starch biosynthesis for improvement of grain filling in a dense-panicle rice cultivar.

作者信息

Panda B B, Badoghar A K, Sekhar S, Shaw B P, Mohapatra P K

机构信息

Environmental Biotechnology Laboratory, Institute of Life Sciences, Bhubaneswar 751023, India.

School of Life Science, Sambalpur University, Jyoti Vihar, Sambalpur 768019, India.

出版信息

Plant Sci. 2016 May;246:11-25. doi: 10.1016/j.plantsci.2016.02.004. Epub 2016 Feb 8.

DOI:10.1016/j.plantsci.2016.02.004
PMID:26993232
Abstract

High ethylene production in dense-panicle rice cultivars impacts grain filling. 1-MCP (ethylene action inhibitor) treatment increased assimilates partitioning, cell number and size and expression of starch synthesizing enzyme genes of developing caryopses mostly in the basal spikelets of panicle at early post-anthesis stage. The gain in cell number was less compared to the increase of size. High ethylene production in spikelets matched with greater expression of ethylene receptor and signal transducer genes. Genes encoding cell cycle regulators CDK, CYC and CKI expressed poorly on 9 DAA. 1-MCP treatment enhanced their expression; the increase of expression was higher for CDKs and lower for CKIs in basal compared to apical spikelets. Greater expression of CDKB2:1 might have lifted cytokinesis of nascent peripheral cells of endosperm, while promotion of CDKAs, CYCD2:2 and inhibition of CYCB2:2 expression contributed to endoreduplication of central cells increasing cell size and DNA ploidy level. It is concluded that the process of endoreduplication, which begins at mid-grain filling stage, is crucially linked with the final caryopsis size of rice grain. The enhanced endosperm growth brought about by repressed ethylene action during the first few days after anthesis seems to be associated with the overall increased cell cycle activity and sink strength.

摘要

密穗型水稻品种中乙烯产量高会影响籽粒灌浆。1-MCP(乙烯作用抑制剂)处理增加了同化物分配、细胞数量和大小,以及花后早期穗基部小穗中发育中颖果淀粉合成酶基因的表达。与细胞大小增加相比,细胞数量的增加较少。小穗中乙烯产量高与乙烯受体和信号转导基因的更高表达相匹配。编码细胞周期调节因子CDK、CYC和CKI的基因在花后9天表达较差。1-MCP处理增强了它们的表达;与顶部小穗相比,基部小穗中CDK的表达增加更高,CKI的表达增加更低。CDKB2:1的更高表达可能促进了胚乳新生外周细胞的胞质分裂,而CDKA、CYCD2:2的促进表达和CYCB2:2的抑制表达有助于中央细胞的核内复制,增加细胞大小和DNA倍性水平。得出的结论是,始于籽粒灌浆中期的核内复制过程与水稻籽粒最终颖果大小密切相关。花后最初几天乙烯作用受抑制所带来的胚乳生长增强似乎与整体细胞周期活性和库强度增加有关。

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