首页> 外文期刊>Spanish Journal of Agricultural Research >Survival percentage, photosynthetic abilities and growth characters of two indica rice (Oryza sativa L. spp. indica) cultivars in response to iso-osmotic stress.
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Survival percentage, photosynthetic abilities and growth characters of two indica rice (Oryza sativa L. spp. indica) cultivars in response to iso-osmotic stress.

机译:两种in稻品种对等渗胁迫的存活率,光合能力和生长特性。

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摘要

The aim of this study was to investigate pigment degradation, chlorophyll fluorescence diminution, photosynthetic ability and growth reduction in two rice cultivars, in response to either iso-osmotic salt stress or water-deficit stress. Seedlings of rice cultivars RD6 and KDML105 were photo-autotrophically grown in MS media and subsequently exposed to -0.23 (control), -0.40 or -0.67 MPa iso-osmotic NaCl (salt stress) or mannitol (water-deficit stress) for 14 days. The survival percentage of the two rice cultivars reduced dramatically when subjected to -0.67 MPa NaCl treatment. Chlorophyll a (Chla), chlorophyll b (Chlb), total carotenoids (Cx+c), maximum quantum yield of PSII (Fv/Fm) and photon yield of PSII ( Phi PSII) in the stressed seedlings were significantly lower when compared to seedlings in the control group (without mannitol or NaCl), leading to low net-photosynthetic rate (Pn) and growth reduction. In addition, the growth characters of plantlets in the salt stress conditions were more sharply reduced, and the physiological changes greater than those in water-deficit stress conditions. On the other hand, non-photochemical quenching in the leaves of stressed plantlets increased significantly, especially in response to iso-osmotic salt stress. In the present study, overall growth performance and physiological characters of KDML105 grown under iso-osmotic stress were better than those of RD6.
机译:这项研究的目的是研究两个水稻品种对等渗盐分胁迫或缺水胁迫的色素降解,叶绿素荧光减弱,光合能力和生长减少。在MS培养基中对水稻品种RD6和KDML105的幼苗进行光自养,然后使其暴露于-0.23(对照),-0.40或-0.67 MPa等渗NaCl(盐胁迫)或甘露醇(缺水胁迫)下达14天。进行-0.67 MPa NaCl处理后,两个水稻品种的存活率显着降低。叶绿素a(Chl a ),叶绿素b(Chl b ),总类胡萝卜素(C x + c ),PSII的最大量子产率(与对照相比,胁迫下幼苗的PSII(Phi PSII )F v / F m )和光子产量显着降低。组(没有甘露醇或氯化钠),导致低的净光合速率( P n )和生长减少。此外,与缺水胁迫相比,盐胁迫条件下小植株的生长特性明显降低,其生理变化更大。另一方面,胁迫幼苗的叶片中的非光化学猝灭显着增加,尤其是对等渗盐胁迫的响应。在本研究中,在等渗胁迫下生长的KDML105的总体生长性能和生理特性要优于RD6。

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