Balagué C., Lin B., Alcon C., Flottes G., Malmström S., Köhler C. et al. 2003 HLM1, an essential signaling component in the hypersensitive response, is a member of the cyclic nucleotide-gated channel ion channel family. Plant Cell 15, 365–379.
Article PubMed PubMed Central Google Scholar
Becraft P. W., Bongard-Pierce D. K., Sylvester A. W., Poethig R. S. and Freeling M. 1990 The liguleless-1 gene acts tissue specifically in maize leaf development. Dev. Biol. 141, 220–232.
Article CAS PubMed Google Scholar
Bell A. D., Bryan A. 2008 Plant form: an illustrated guide to flowering plant morphology. Oxford University Press, Oxford.
Bruggeman Q., Raynaud C., Benhamed M. and Delarue M. 2015 To die or not to die? Lessons from lesion mimic mutants. Front. Plant Sci. 6, 24.
Article PubMed PubMed Central Google Scholar
Cai L., Yan M., Yun H., Tan J., Du D., Sun H. et al. 2021 Identification and fine mapping of lesion mimic mutant spl36 in rice (Oryza sativa L.). Breed. Sci. 71, 510–519.
Article CAS PubMed PubMed Central Google Scholar
Chen Z., Yin W., Li X., Lu T., Ye H., Dai G. et al. 2022 OsSPL88 Encodes a cullin protein that regulates rice growth and development. Front. Genet. 13, 918973.
Article CAS PubMed PubMed Central Google Scholar
Dai D., Chen J., Du C., Liang M., Wu M., Mou T. et al. 2022 A 2-MB chromosome inversion interrupted transcription of lax2-4 and generated pleiotropic phenotypes in rice. J. Plant Growth Regul. 41, 2328–2337.
Fowler J. E. and Freeling M. 1996 Genetic analysis of mutations that alter cell fates in maize leaves: dominant Liguleless mutations. Dev. Genet. 18, 198–222.
Article CAS PubMed Google Scholar
Futsuhara Y., Kondo S., Kitano H. and Mii M. 1979 Genetical studies on dense and lax panicles in rice: I. Character expression and mode of lax panicle rice. Jpn. J. Breed. 29, 151–158.
Harper L. and Freeling M. 1996 Interactions of liguleless1 and liguleless2 function during ligule induction in maize. Genetics 144, 1871–1882.
Article CAS PubMed PubMed Central Google Scholar
Hoshikawa K. 1989 The growing rice plant. An anatomical monograph, pp. 199–205. Nosan Gyoson Bunka kyokai, Tokyo.
Jiang R., Zhou S., Da X., Chen T., Xu J., Yan P. and Mo X. 2022 Ubiquitin-specific protease 2 (OsUBP2) negatively regulates cell death and disease resistance in rice. Plants 11, 2568.
Article CAS PubMed PubMed Central Google Scholar
Kang S. G., Matin M. N., Bae H. and Natarajan S. 2007 Proteome analysis and characterization of phenotypes of lesion mimic mutant spotted leaf 6 in rice. Proteomics 7, 2447–2458.
Article CAS PubMed Google Scholar
Kang S. G., Lee K. E., Singh M., Kumar P. and Matin M. N. 2021 Rice lesion mimic mutants (LMM): The current understanding of genetic mutations in the failure of ROS scavenging during lesion formation. Plants 10, 1598.
Article CAS PubMed PubMed Central Google Scholar
Kinoshita T. 1995 Report of committee on gene symbolization, nomenclature and linkage groups. Rice Genet. Newslett. 12, 9–154.
Kishimoto N., Shimosaka E., Matsuura S. and Saito A. 1992 A current RFLP linkage map of rice: Alignment of the molecular map with the classical map. Rice Genet. Newslett. 9, 118–124.
Komatsu M., Maekawa M., Shimamoto K. and Kyozuka J. 2001 The LAX1 and FRIZZY PANICLE 2 genes determine the inflorescence architecture of rice by controlling rachis-branch and spikelet development. Dev. Biol. 231, 364–373.
Article CAS PubMed Google Scholar
Komatsu M., Chujo A., Nagato Y., Shimamoto K. and Kyozuka J. 2003 FRIZZY PANICLE is required to prevent the formation of axillary meristems and to establish floral meristem identity in rice spikelets. Development 130, 3841–4385.
Article CAS PubMed Google Scholar
Kumamaru T., Satoh H., Iwata N., Omura T., Ogawa M. and Tanaka K. 1988 Mutants for rice storage proteins: 1. Screening of mutants for rice storage proteins of protein bodies in the starchy endosperm. Theor. Appl. Genet. 76, 11–16.
Article CAS PubMed Google Scholar
Lee D.-Y., Lee J., Moon S., Park S. Y. and An G. 2007a The rice heterochronic gene SUPERNUMERARY BRACT regulates the transition from spikelet meristem to floral meristem. Plant J. 49, 64–78.
Article CAS PubMed Google Scholar
Lee J., Park J.-J., Kim S. L., Yim J. and An G. 2007b Mutations in the rice liguleless gene result in a complete loss of the auricle, ligule, and laminar joint. Plant Mol. Biol. 65, 487–499.
Article CAS PubMed Google Scholar
Li G., Zhang H., Li J., Zhang Z. and Li Z. 2021 Genetic control of panicle architecture in rice. Crop J. 9, 590–597.
Li C., Liu H., Wang J., Pan Q., Wang Y., Wu K. et al. 2022 Characterization and fine mapping of a lesion mimic mutant (Lm5) with enhanced stripe rust and powdery mildew resistance in bread wheat (Triticum aestivum L.). Theor. Appl. Genet. 135, 421–438.
Article CAS PubMed Google Scholar
Liu G., Wang L., Zhou Z., Leung H., Wang G. L. and He C. 2004 Physical mapping of a rice lesion mimic gene, Spl1, to a 70-kb segment of rice chromosome 12. Mol. Genet. Genomics 272, 108–115.
Article CAS PubMed Google Scholar
Liu K., Cao J., Yu K., Liu X., Gao Y., Chen Q. et al. 2019 Wheat TaSPL8 modulates leaf angle through auxin and brassinosteroid signaling. Plant Physiol. 181, 179–194.
Article CAS PubMed PubMed Central Google Scholar
Liu R., Lu J., Zheng S., Du M., Zhang C., Wang M. et al. 2021 Molecular mapping of a novel lesion mimic gene (lm4) associated with enhanced resistance to stripe rust in bread wheat. BMC Genomic Data 22, 1–9.
Article PubMed PubMed Central Google Scholar
Lv Y., Zhang X., Hu Y., Liu S., Yin Y. and Wang X. 2023 BOS1 is a basic helix–loop–helix transcription factor involved in regulating panicle development in rice. Front. Plant Sci. 14, 1162828.
Article PubMed PubMed Central Google Scholar
Ma J., Wang Y., Ma X., Meng L., Jing R., Wang F. et al. 2019 Disruption of gene SPL 35, encoding a novel CUE domain-containing protein, leads to cell death and enhanced disease response in rice. Plant Biotechnol. J. 17, 1679–1693.
Article CAS PubMed PubMed Central Google Scholar
Maekawa M. 1988 A new allele at the lg locus conferring short ligule. Rice Genet. Newslett. 5, 87–89.
Maekawa M., Kinoshita T. and Takahashi M. 1981 A new gametophyte gene in the second linkage group of rice: genetical studies on rice plant. LXXVI. J. Fac. Agric. Hokkaido Univ. 60, 107–114.
Matin M. N. and Kang S. G. 2012 Genetic and phenotypic analysis of lax1-6, a mutant allele of LAX PANICLE1 in rice. J. Plant Biol. 55, 50–63.
Matin M. N., Suh H. S. and Kang S. G. 2006 Characterization of phenotypes of rice lesion resembling disease mutants. Korean J. Genet. 28, 221–228.
McSteen P., Laudencia-Chingcuanco D. and Colasanti J. 2000 A floret by any other name: control of meristem identity in maize. Trend. Plant Sci. 5, 61–66.
Mori K., Kinoshita T. and Takahashi M. 1973 Linkage relationships of genes for some mutant characters of rice kept in Kyushu University-Genetical studies on rice plant. LV. Mem. Fac. Agr. Hokkaido Univ. 8, 377–385.
Mori M., Tomita C., Sugimoto K., Hasegawa M., Hayashi N., Dubouzet J. G. et al. 2007 Isolation and molecular characterization of a Spotted leaf 18 mutant by modified activation-tagging in rice. Plant Mol. Biol. 63, 847–860.
Article CAS PubMed Google Scholar
Morinaga T. 1938 Inheritance in rice, Oryza sativa L., II. Linkage between the gene for purple plant color and the gene for liguleless. Jpn. J. Bot. 9, 121–129.
Muehlbauer G. J., Fowler J. E. and Freeling M. 1997 Sectors expressing the homeobox gene liguleless3 implicate a time-dependent mechanism for cell fate acquisition along the proximal-distal axis of the maize leaf. Development 124, 5097–5106.
Article CAS PubMed Google Scholar
Nagao S. and Takahashi M. 1963 Trial Construction of Twelve Linkage Groups in Japanese Rice:(Genetical Studies on Rice Plant, XXVII). J. Fac. Agric. Hokkaido Univ. 53, 72–130.
Nagato Y. and Yoshimura A. 1998 Report of the committee on gene symbolization, nomenclature and linkage map. Rice Genet. Newslett. 15, 13–74.
Oikawa T. and Kyozuka J. 2009 Two-step regulation of LAX PANICLE1 protein accumulation in axillary meristem formation in rice. Plant Cell 21, 1095–1108.
Article CAS PubMed PubMed Central Google Scholar
Qin L., Wu X. and Zhao H. 2023 Molecular and functional dissection of LIGULELESS1 (LG1) in plants. Front. Plant Sci. 14, 1190004.
Article PubMed PubMed Central Google Scholar
Qiu Z., Zhu L., He L., Chen D., Zeng D., Chen G. et al. 2019 DNA damage and reactive oxygen species cause cell death in the rice local lesions 1 mutant under high light and high temperature. New Phytol. 222, 349–365.
留言 (0)