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LEA Gene Expression Assessment in Advanced Mutant Rice Genotypes under Drought Stress

机译:干旱胁迫下先进突变水稻基因型的LEA基因表达评估

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Late embryogenesis abundant (LEA) proteins are primarily found in plants stem, roots, and other organs and play significant roles in tolerance to several abiotic stresses. Plants synthesize a discrete set of LEA proteins in response to drought stress. In this study, the expression patterns of LEA genes were investigated in two advanced mutant rice genotypes subjected to the drought stress condition and different physiological traits including photosynthetic rate, leaf chlorophyll content, and photosystem II (PSII) photochemical efficiency (Fv/Fm) which were analyzed to confirm their drought tolerance. Five LEA genes (OsLEA1, OsLEA2, OsLEA3, OsLEA4, and OsLEA5) were used in the evaluation of rice genotypes and were significantly upregulated by more than 4-fold for MR219-4 and MR219-9. The upregulated genes by these two varieties showed high similarity with the drought-tolerant check variety, Aeron1. This indicates that these advanced mutant genotypes have better tolerance to drought stress. The changes in the expression level of LEA genes among the selected rice genotypes under drought stress were further confirmed. Hence, LEA genes could be served as a potential tool for drought tolerance determination in rice. MR219-4 and MR219-9 were found to be promising in breeding for drought tolerance as they offer better physiological adaptation to drought stress.
机译:晚期胚胎发生丰富(LEA)蛋白主要在植物茎,根和其他器官中发现,并在耐受耐什么胁迫下起显着的作用。植物响应干旱胁迫,植物合成离散的lea蛋白。在这项研究中,研究了Lea基因的表达模式,在进行干旱胁迫条件和不同生理性状的两种晚期突变水稻基因型中,包括光合速率,叶片叶绿素含量和光学系统II(PSII)光化学效率(FV / FM)分析以确认他们的耐旱性。在水稻基因型的评估中使用了五种Lea基因(Oslea1,Oslea2,Oslea3,Oslea4和Oslea5),并且对于MR219-4和MR219-9,通过4倍的4倍显着上调。通过这两个品种的上调基因与耐旱性耐受性高相似性,HECKORED AERON1。这表明这些先进的突变基因型对干旱胁迫具有更好的耐受性。进一步证实了干旱胁迫下所选水稻基因型中Lea基因表达水平的变化。因此,Lea基因可以作为水稻干旱耐受测定的潜在工具。发现MR219-4和MR219-9在育种育种方面是有希望的,因为它们为干旱胁迫提供了更好的生理适应性。

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