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Light Affects the Chloroplast Ultrastructure and Post-Storage Photosynthetic Performance of Watermelon (Citrullus lanatus) Plug Seedlings

机译:光影响西瓜(Citrullus lanatus)穴盘苗的叶绿体超微结构和贮藏后的光合性能

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摘要

Watermelon [Citrullus lanatus (Thunb.) Matsum. and Nakai] plug seedlings were stored at 15°C in the light at a photosynthetic photon flux density of 15 µmol·m−2·s−1 or in darkness for 6 days, to evaluate their chloroplast ultrastructure, and associated photosynthetic characteristics. Storage in the dark caused swelling, disordered granal arrangement, and starch grain disappearance in the chloroplasts. In contrast, the chloroplasts stored in the light were relatively normal. As a result, the light-stored seedlings had a significantly higher chlorophyll content, Fv/Fm, and Pn than did dark-stored seedlings. Regardless of whether the seedlings were stored in light or darkness, the Gs and Ls of the seedlings significantly decreased, while the Ci obviously increased when the Pn decreased after 6 days of storage. This result suggests that the decreased Pn is not solely a stomatal effect, as the effects on the chloroplasts contributed to this photosynthetic inhibition. Six days after transplanting, seedlings that were stored in the light or darkness for 2 or 4 days showed complete recovery of chloroplast ultrastructure, chlorophyll content, Fv/Fm, Gs and Pn. When the storage period increased to 6 days, the dark-stored seedlings had a significantly lower Fv/Fm and Pn than the light-stored and control seedlings 6 days after transplanting, which was mainly ascribed to incomplete recovery of chloroplast ultrastructure. Furthermore, the light-stored seedlings exhibited a significantly higher shoot dry weight during storage and a higher percentage dry weight increase after transplanting than the dark-stored seedlings. These effects were enhanced by prolonged storage (4 to 6 days). This study demonstrated that dim light during storage is beneficial for maintaining chloroplast ultrastructure as well as photosynthetic efficiency in watermelon seedlings, thus contributing to the rapid recovery of post-storage photosynthetic performance, which ensures the transplant quality of the seedlings after removal from storage.
机译:西瓜[Citrullus lanatus(Thunb。)Matsum。 [Nakai]和Nakai]插秧在15°C的光照下以15 µmol·m -2 ·s -1 的光合作用光子通量密度存储或在黑暗中保存6次。天,以评估其叶绿体超微结构以及相关的光合特性。在黑暗中储存会导致肿胀,混乱的颗粒排列以及叶绿体中的淀粉颗粒消失。相反,储存在光下的叶绿体相对正常。结果,与黑暗储存的幼苗相比,光储存的幼苗的叶绿素含量,Fv / Fm和Pn明显更高。不论在黑暗或黑暗条件下贮藏,贮藏6天后,当Pn降低时,幼苗的Gs和Ls均显着下降,而Ci明显升高。该结果表明,降低的Pn不仅是气孔效应,因为对叶绿体的效应有助于这种光合作用的抑制。移栽后六天,在黑暗或黑暗中储存2或4天的幼苗显示出叶绿体超微结构,叶绿素含量,Fv / Fm,Gs和Pn的完全恢复。当贮藏期增加到6天时,暗贮苗在移植后6天的Fv / Fm和Pn明显低于轻贮和对照苗,这主要归因于叶绿体超微结构的恢复。此外,与黑暗储存的幼苗相比,光储存的幼苗在储存过程中表现出明显更高的茎干重量,移植后的干燥重量增加百分比更高。延长储存时间(4至6天)可增强这些效果。这项研究表明,在贮藏期间昏暗的光线有利于维持西瓜幼苗的叶绿体超微结构以及光合效率,从而有助于迅速恢复贮藏后的光合性能,从而确保了贮藏后移出幼苗的移植质量。

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