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首页> 外文期刊>Photosynthetica >Grafting onto Cucurbita moschata rootstock alleviates salt stress in cucumber plants by delaying photoinhibition
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Grafting onto Cucurbita moschata rootstock alleviates salt stress in cucumber plants by delaying photoinhibition

机译:嫁接西葫芦砧木通过延迟光抑制缓解盐胁迫

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摘要

To determine how the use of a given rootstock can influence the functioning of the photosynthetic apparatus of the scion under salt stress, the growth, gas exchange, photosystem II (PSII) efficiency, xanthophyll cycle, and chloroplast ultrastructure of nongrafted, self-grafted, and pumpkin-grafted (hereafter referred to as rootstock-grafted) cucumber (Cucumis sativus L.) plants were investigated at day 15 after being treated with 90 mM NaCl. The reductions in plant growth of the rootstock-grafted plants were lower than those of the nongrafted and self-grafted plants under 90 mM NaCl. The net photosynthetic rate, stomatal conductance, maximal and effective quantum yield of PSII photochemistry, photochemical quenching coefficient, and effective quantum-use efficiency of PSII in the light-adapted state of the nongrafted and self-grafted plants were significantly decreased under 90 mM NaCl. However, these reductions were alleviated when the cucumber plants were grafted onto the pumpkin (Cucurbita moschata Duch.) rootstock. The intercellular CO2 concentrations were significantly increased in the nongrafted and self-grafted plants under 90 mM NaCl, whereas it was decreased in the rootstock-grafted plants. Nonphotochemical quenching (NPQ) and the deepoxidation state of the xanthophyll cycle were significantly increased under 90 mM NaCl, particularly in the rootstockgrafted plants, suggesting the rootstock-grafted plants had higher potential to dissipate excess excitation energy and reduce the probability of photodamage to PSII. Under 90 mM NaCl, the number of grana was reduced, the thylakoids were swollen, and starch granules accumulated in all plants. However, the damage of chloroplast ultrastructure was alleviated in the rootstock-grafted plants. Taken together, the use of C. moschata rootstock alleviated salt stress in cucumber plants by delaying photoinhibition, probably due to a lower incidence of both stomatal and nonstomatal factors limiting photosynthesis.
机译:要确定使用给定的砧木如何影响盐胁迫下接穗的光合装置的功能,非接枝,自接枝的生长,气体交换,光系统II(PSII)效率,叶黄素循环和叶绿体超微结构,在用90 mM NaCl处理后的第15天,研究了南瓜和黄瓜移植(以下称砧木移植)黄瓜(Cucumis sativus L.)植物。在90 mM NaCl下,砧木嫁接植物的生长减少幅度低于未嫁接和自嫁接植物。在90 mM NaCl下,未接枝和自接枝植物在光适应状态下的净光合速率,气孔导度,PSII光化学的最大和有效量子产率,光化学猝灭系数和PSII的有效量子利用效率均显着降低。 。但是,当将黄瓜植株嫁接到南瓜(Cucurbita moschata Duch。)砧木上时,这些减少量得到缓解。在90 mM NaCl下,未移植和自移植植物的细胞间CO2浓度显着增加,而砧木移植的植物中细胞间的CO2浓度降低。在90 mM NaCl下,非光化学淬灭(NPQ)和叶黄素循环的深氧化状态显着增加,尤其是在砧木嫁接的植物中,这表明嫁接到砧木的植物具有更高的潜力来消散多余的激发能并降低对PSII造成光害的可能性。在90 mM NaCl下,所有植物中的粒数减少,类囊体肿胀,淀粉颗粒积聚。然而,嫁接于砧木的植株中叶绿体超微结构的损害得以缓解。两者合计,使用马齿。根茎通过延迟光抑制来减轻黄瓜植株的盐胁迫,这可能是由于气孔和非气孔因素限制了光合作用的发生率较低。

著录项

  • 来源
    《Photosynthetica》 |2012年第1期|p.152-160|共9页
  • 作者单位

    College of Horticulture and Forestry, Huazhong Agricultural University/Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, P.R. China;

    College of Horticulture and Forestry, Huazhong Agricultural University/Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, P.R. China;

    College of Horticulture and Forestry, Huazhong Agricultural University/Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, P.R. China;

    College of Horticulture and Forestry, Huazhong Agricultural University/Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, P.R. China;

    College of Horticulture and Forestry, Huazhong Agricultural University/Key Laboratory of Horticultural Plant Biology, Ministry of Education, Wuhan, 430070, P.R. China;

    College of Horticulture and Forestry, Huazhong Agricultural U;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    chlorophyll fluorescence; Cucumis sativus; grafting; photosynthesis; salinity; xanthophyll cycle;

    机译:叶绿素荧光;黄瓜;嫁接;光合作用;盐度;叶黄素循环;

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