首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Photosynthetic characteristics and protective mechanisms against oxidativestress during chilling and subsequent recovery in two maize varietiesdiffering in chilling sensitivity
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Photosynthetic characteristics and protective mechanisms against oxidativestress during chilling and subsequent recovery in two maize varietiesdiffering in chilling sensitivity

机译:不同冷害敏感性的两个玉米品种在低温及随后恢复过程中的光合特性及抗氧化胁迫的保护机制

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Plants of two maize varieties differing in chilling sensitivity (Z7, tolerant and Penjalinan, sensitive) were subjected to 5 degreesC, 300 mu mol m(-2) s(-1) PPFD and 12-h photoperiod during 5 days and recovered during 3 days at 25 degreesC at the same light regime. Gas exchange and chlorophyll fluorescence analyses showed the same degree of photoinhibition during chilling period in both varieties. However, chlorophyll fluorescence analysis showed an increase in the process of energy dissipation mainly in Z7 leaves. Besides, Z7 leaves showed higher carotenoids/total chlorophyll ratio than Penjalinan, On the other hand, Z7 leaves showed a marked increase in antioxidant enzyme activities (superoxide dismutase, SOD; ascorbate peroxidase, APX; glutathione reductase, GR), while in Penjalinan decreased the cytoplasmatic and chloroplastic CuZn and Fe SODs activities and increased the APX and GR activities in less extent than in Z7. Such antioxidant enzyme behaviour could be responsible for chloroplast damage caused by superoxide anion (O-2(-)) during chilling in Penjalinan. When plants were returned to 25 degreesC, Z7 leaves quickly recovered photosynthetic activity thus diminishing the potential power for reactive oxygen species generation. On the contrary, Penjalinan leaves only recovered photosynthetic activity after 3 days at 25 degreesC. Moreover, during chilling recovery, Penjalinan leaves increased SOD and GR activity, while APX activity decreased. As a consequence, oxidation damage due to H2O2 accumulation could occur in Penjalinan leaves.
机译:两种对低温敏感度不同的玉米品种(Z7,耐性和Penjalinan,敏感)的植物在5天中经受5摄氏度,300μmol m(-2)s(-1)PPFD和12小时的光周期,并在3天内恢复在相同光照条件下,在25摄氏度下放置几天。气体交换和叶绿素荧光分析表明,两个变种在寒冷期的光抑制程度相同。然而,叶绿素荧光分析显示能量消耗过程的增加主要在Z7叶片中。此外,Z7叶片的类胡萝卜素/总叶绿素比值高于Penjalinan,另一方面,Z7叶片的抗氧化酶活性(超氧化物歧化酶,SOD,抗坏血酸过氧化物酶,APX,谷胱甘肽还原酶,GR)显着增加,而Penjalinan则降低胞质和叶绿体中CuZn和Fe的SODs活性增加,APX和GR活性的增加幅度小于Z7。这种抗氧化酶的行为可能是造成Penjalinan冷却期间超氧阴离子(O-2(-))造成叶绿体破坏的原因。当植物恢复到25摄氏度时,Z7叶片迅速恢复了光合作用,从而降低了产生活性氧的潜在能力。相反,在25℃下3天后,Penjalinan仅留下恢复的光合作用活性。此外,在低温恢复期间,Penjalinan叶的SOD和GR活性增加,而APX活性下降。结果,在Penjalinan叶片中可能会发生由于H2O2积累引起的氧化损伤。

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