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首页> 外文期刊>Oryza >Inoculation of Azotobacter vinellandii (SRI Az3) to rice plant increases stress tolerance in rice plant during drought stress
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Inoculation of Azotobacter vinellandii (SRI Az3) to rice plant increases stress tolerance in rice plant during drought stress

机译:在干旱胁迫期间接种蒸发菌(SRI AZ3)对水稻植物的胁迫耐受性

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We planted rice plant (Oryza sativa, var. IR 64) with inoculation of Azotobacter vinellandii (SRI Az3) and examined its potency to protect plant from drought stress. We found that it secretes plant growth promoting substances such as IAA, gibberellins, zeatin which helps plant in abiotic stress like drought. The bacteria Azotobacter vinellandii (SRI Az3) significantly promotes the development of root branching, root hairs and primary and secondary lateral roots would increase due to the growth hormones secreted by the Azotobacter spp. along with nitrogen fixation. Agronomic parameters of plants inoculated with Azotobacter vinellandii (SRIAz3) [T4], were studied and compared with rice plants of different treatments [Tl, T2 and T3] after drought stress conditions. Endogenous levels of soluble sugar and hormone (GA3, zeatin and IAA) contents were higher in the T4 plants after drought stress condition. The photosynthetic characteristics such as net photosynthetic rate (PN), stomatal conductance (gs), intercellular CO_2 (Ci), chlorophyll (Chl) content were significantly higher in T4 after drought stress as compared with plants of other treatments. The activities of antioxidant enzyme viz. malondialdehyde (MDA) and proline content were significantly higher in T4 as compared with plants of other treatments after drought stress. The higher assimilation of endogenous nutrient like nitrogen, potassium, phosphorus, were found as compared to other plants during stress.
机译:我们种植水稻植物(Oryza sativa,var。IR 64),接种偶氮杆菌(SRI AZ3)并检查其效力保护植物免受干旱胁迫。我们发现它分泌植物生长促进物质,如IAA,赤霉素,Zeeatin,它有助于植物如干旱地区的非生物胁迫。细菌偶像杆菌vinellandii(sri az3)显着促进了根部支化的发育,由于偶氮杆菌分泌的生长激素,根毛和初级和次级横向根部会增加。以及氮固定。研究了用偶氮杆菌(SRIAZ3)[T4]接种的植物的农艺参数,并与不同治疗的水稻植物进行干旱胁迫条件后与不同治疗的水稻植物进行比较。干旱胁迫条件后,T4植物中可溶性糖和激素(Ga 3,Zeepin和Iaa)含量的内源性水平较高。与其他治疗的植物相比,在干旱胁迫之后,T4的净光合速率(PN),气孔导率(GS),细胞间CO_2(CI),叶绿素(CHL)含量明显高于T4的光合特性。抗氧化酶ZIZ的活性。与干旱胁迫后的其他治疗植物相比,丙二醛(MDA)和脯氨酸含量明显高得多。与胁迫期间的其他植物相比,发现含有氮气,钾,磷的更高的内源性营养素同化。

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