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首页> 外文期刊>Plant Biotechnology Journal >Simultaneous expression of regulatory genes associated with specific drought?¢????adaptive traits improves drought adaptation in peanut
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Simultaneous expression of regulatory genes associated with specific drought?¢????adaptive traits improves drought adaptation in peanut

机译:与特定干旱适应性状相关的调控基因的同时表达提高花生的干旱适应性

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Adaptation of crops to drought?¢????prone rain?¢????fed conditions can be achieved by improving plant traits such as efficient water mining (by superior root characters) and cellular?¢????level tolerance mechanisms. Pyramiding these drought?¢????adaptive traits by simultaneous expression of genes regulating drought?¢????adaptive mechanisms has phenomenal relevance in improving stress tolerance. In this study, we provide evidence that peanut transgenic plants expressing Al falfa zinc fin ger 1 ( Alfin1 ), a root growth?¢????associated transcription factor gene, Pennisetum glaucum heat?¢????shock factor ( PgHSF4 ) and Pea DNA helicase ( PDH45 ) involved in protein turnover and protection showed improved tolerance, higher growth and productivity under drought stress conditions. Stable integration of all the transgenes was noticed in transgenic lines. The transgenic lines showed higher root growth, cooler crop canopy air temperature difference (less CCATD) and higher relative water content (RWC) under drought stress. Low proline levels in transgenic lines substantiate the maintenance of higher water status. The survival and recovery of transgenic lines was significantly higher under gradual moisture stress conditions with higher biomass. Transgenic lines also showed significant tolerance to ethrel?¢????induced senescence and methyl viologen?¢????induced oxidative stress. Several stress?¢????responsive genes such as heat?¢????shock proteins ( HSPs) , RING box protein?¢????1 ( RBX1) , Aldose reductase , late embryogenesis abundant?¢????5 (LEA5) and proline?¢????rich protein?¢????2 ( PRP2) , a gene involved in root growth, showed enhanced expression under stress in transgenic lines. Thus, the simultaneous expression of regulatory genes contributing for drought?¢????adaptive traits can improve crop adaptation and productivity under water?¢????limited conditions.
机译:可以通过改善植物性状(例如高效的水分开采(具有优越的根系性状)和细胞的水平耐性机制)来实现农作物对干旱的适应-容易发生的降雨-进食条件。 。通过同时表达调节干旱适应机制的基因来金字塔化这些干旱适应性状在改善胁迫耐受性方面具有显着相关性。在这项研究中,我们提供的证据表明表达Al falfa锌鳍ger 1(Alfin1),根生长相关的转录因子基因,青草狼尾草热休克因子(PgHSF4)的花生转基因植物。参与蛋白质更新和保护的豌豆DNA解旋酶(PDH45)在干旱胁迫条件下表现出更高的耐受性,更高的生长和生产力。在转基因系中注意到所有转基因的稳定整合。转基因品系在干旱胁迫下表现出较高的根系生长,较低的作物冠层气温差(CCATD较小)和较高的相对含水量(RWC)。转基因品系中脯氨酸水平低,可维持较高水位。在水分含量逐渐升高的条件下,转基因株系的存活和恢复显着提高。转基因品系还显示出对乙醛诱导的衰老和甲基紫精诱导的氧化应激的显着耐受性。几个应激反应基因如热休克蛋白(HSPs),RING盒蛋白1(RBX1),醛糖还原酶,晚期胚胎发生丰富。参与根系生长的基因?5(LEA5)和脯氨酸丰富的蛋白质?? 2(PRP2)在转基因品系中在胁迫下表现出增强的表达。因此,在干旱有限的条件下,同时表达有助于干旱适应性状的调节基因可以提高作物的适应性和生产力。

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