Lee Sang-Kyu, Eom Joon-Seob, Hwang Seon-Kap, Shin Dongjin, An Gynheung, Okita Thomas W, Jeon Jong-Seong
Graduate School of Biotechnology & Crop Biotech Institute, Kyung Hee University, Yongin 17104, Korea.
Institute of Biological Chemistry, Washington State University, Pullman, WA 99164-6340, USA.
J Exp Bot. 2016 Oct;67(18):5557-5569. doi: 10.1093/jxb/erw324. Epub 2016 Sep 1.
To elucidate the starch synthesis pathway and the role of this reserve in rice pollen, we characterized mutations in the plastidic phosphoglucomutase, OspPGM, and the plastidic large subunit of ADP-glucose (ADP-Glc) pyrophosphorylase, OsAGPL4 Both genes were up-regulated in maturing pollen, a stage when starch begins to accumulate. Progeny analysis of self-pollinated heterozygous lines carrying the OspPGM mutant alleles, osppgm-1 and osppgm-2, or the OsAGPL4 mutant allele, osagpl4-1, as well as reciprocal crosses between the wild type (WT) and heterozygotes revealed that loss of OspPGM or OsAGPL4 caused male sterility, with the former condition rescued by the introduction of the WT OspPGM gene. While iodine staining and transmission electron microscopy analyses of pollen grains from homozygous osppgm-1 lines produced by anther culture confirmed the starch null phenotype, pollen from homozygous osagpl4 mutant lines, osagpl4-2 and osagpl4-3, generated by the CRISPR/Cas system, accumulated small amounts of starch which were sufficient to produce viable seed. Such osagpl4 mutant pollen, however, was unable to compete against WT pollen successfully, validating the important role of this reserve in fertilization. Our results demonstrate that starch is mainly polymerized from ADP-Glc synthesized from plastidic hexose phosphates in rice pollen and that starch is an essential requirement for successful fertilization in rice.
为了阐明淀粉合成途径以及这种储备物质在水稻花粉中的作用,我们对质体磷酸葡萄糖变位酶OspPGM和ADP - 葡萄糖(ADP - Glc)焦磷酸化酶的质体大亚基OsAGPL4中的突变进行了表征。这两个基因在成熟花粉(淀粉开始积累的阶段)中均上调表达。对携带OspPGM突变等位基因osppgm - 1和osppgm - 2或OsAGPL4突变等位基因osagpl4 - 1的自花授粉杂合系进行后代分析,以及对野生型(WT)和杂合子之间的正反交分析表明,OspPGM或OsAGPL4的缺失导致雄性不育,前者可通过导入野生型OspPGM基因得到挽救。虽然对花药培养产生的纯合osppgm - 1系花粉粒进行碘染色和透射电子显微镜分析证实了淀粉缺失表型,但通过CRISPR/Cas系统产生的纯合osagpl4突变系osagpl4 - 2和osagpl4 - 3的花粉积累了少量淀粉,这些淀粉足以产生可育种子。然而,这种osagpl4突变花粉无法成功与野生型花粉竞争,这证实了这种储备物质在受精过程中的重要作用。我们的结果表明,淀粉主要由水稻花粉中质体己糖磷酸合成的ADP - Glc聚合而成,并且淀粉是水稻成功受精的必要条件。