一种新型水稻穗叶类病斑突变体pls1的基因克隆和功能分析
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河南农业大学农学院

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河南省自然科学基金(232300421156);河南省科技攻关项目(242102111137);河南省高等学校重点科研项目(23A210027);河南省现代农业产业技术体系项目(HARS-22-03-G3);河南省重点研发专项(231111110500)


Gene Cloning and Functional Analysis of a New Type of Panicle and Leaf Spot Mutant pls1 in Rice
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College of Agriculture,Henan Agricultural University,Key Laboratory of Molecular Breeding and Efficient Production of Rice in Henan Province

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Natural Science Foundation of Henan (232300421156);Henan Science and Technology Research project(242102111137);Key Scientifc Research Projects of Colleges and Universities in Henan Province (23A210027);Modern Agricultural Industry Technology System Projects of Henan, China (HARS-22-03-G3);Key R&D projects of Henan, China(231111110500)

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    摘要:

    水稻类病斑突变体在研究水稻细胞程序性死亡和广谱抗病性中具有重要作用,已报道的水稻类病斑主要发生在叶片上和少量发生在颖壳上。本研究中首次报道了水稻的一种穗叶类病斑突变体pls1(panicle and leaf spot 1, pls1),其从三叶期叶片开始出现红褐色斑点,随生育进程扩大,并扩展到其他器官,与以往报道的水稻类病斑突变体不同的是pls1抽穗后稻穗枝梗和颖壳逐渐产生红褐色病斑,成熟期稻穗干枯,严重影响产量,是一种新类型的水稻类病斑。图位克隆结合全基因组重测序发现pls1突变体产生了173403 bp的大片段缺失,导致7个基因缺失和1个基因启动子缺失。基因功能预测和数据库基因表达数据证实PLS1编码色胺5-羟化酶(Os12g0268000)。pls1突变体叶片中活性氧H2O2、OFR过量积累和抗氧系统相关酶SOD、POD、APX、CAT和GR活性提高,发生细胞程序性死亡和叶绿体降解,降低光合能力。褪黑素在植物耐盐性中起重要作用。进一步的功能分析发现,缺失PLS1会显著抑制水稻中褪黑素合成相关酶基因OsTDC1,OsTDC3,OsSNAT1,OsASMT1和OsCOMT的表达,进而导致pls1突变体的耐盐性下降。综上,穗叶类病斑突变体pls1是一种新类型的水稻类病斑突变体,将为水稻类病斑研究提供新的种质材料;耐盐性的分析揭示了色胺5-羟化酶的新功能,为研究其在细胞程序性死亡和耐盐性中的机制提供了新视角。

    Abstract:

    Rice lesion mimic mutants play a crucial role in studying programmed cell death and broad-spectrum disease resistance in rice. In this study, we first report a novel panicle and leaf spot1 mutant (panicle and leaf spot 1, pls1), which develops reddish-brown spots on leaves starting from the three-leaf stage, expanding with plant growth and affecting other organs. Unlike previously reported rice lesion mimic mutants, pls1 exhibits reddish-brown lesions on the panicle branches and glumes after heading, and the panicles dry up at maturity, severely affecting yield. This represents a new type of rice lesion mimic. The combination of map-cloning and whole genome resequencing revealed that the pls1 mutant produced a large deletion of 173403 bp, resulting in 7 gene deletions and 1 gene promoter deletion. Gene function prediction and gene expression data in database confirm that PLS1 encodes tryptamine 5-hydroxylase (Os12g0268000).The pls1 mutant leads to excessive accumulation of reactive oxygen species (ROS), programmed cell death, and chloroplast degradation, reducing photosynthetic capacity. Melatonin plays an important role in plant salt tolerance. Further functional analysis showed that the loss of PLS1 significantly inhibits the expression of melatonin synthesis related enzyme genes OsTDC1, OsTDC3, OsSNAT1, OsASMT1, and OsCOMT in rice, resulting in decreased salt tolerance of the pls1 mutant. In summary, the panicle and leaf spot mutant pls1 is a new type of rice lesion mimic mutant, providing new germplasm for studying the mechanisms related to rice lesion mimics. The analysis of salt tolerance reveals a new function of tryptamine 5-hydroxylase, offering a new perspective for studying its mechanisms in programmed cell death and salt tolerance.

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历史
  • 收稿日期:2024-12-09
  • 最后修改日期:2025-01-01
  • 录用日期:2025-02-26
  • 在线发布日期: 2025-03-03
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