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接穗、砧木及其相互作用影响柑橘的光合作用。

Scion, Rootstock and Their Interaction Affect the Photosynthesis of Citrus.

作者信息

Zhu Shiping, Liu Mengyu, Luo Guotao, Hu Zhou, Zhang Xiaonan, Xiang Jinsong, Yang Rong, Hu Shixue, Cai Xiaodong, Yu Xin

机构信息

Citrus Research Institute, Southwest University/Chinese Academy of Agricultural Sciences, Beibei, Chongqing 400712, China.

National Citrus Engineering Research Center, Beibei, Chongqing 400712, China.

出版信息

Plants (Basel). 2025 Sep 1;14(17):2718. doi: 10.3390/plants14172718.

Abstract

Photosynthesis is an essential plant biological process. The performance of photosynthesis in grafted plants is affected by either the scion or the rootstock. However, the effect of the scion, rootstock and their interaction in the scion-rootstock combinations on photosynthesis of the grafted trees was not clear. In this research, the photosynthesis was analyzed within 21 citrus scion-rootstock combinations derived from three navel oranges ( cv. 'Banfield', 'Chislett' and 'Powell') grafted on seven rootstocks [(Swingle citrumelo (. × ), Carrizo citrange (. × . ), X639 (. × . ), MXT (. × . ), Hongju (. ), Ziyang xiangcheng (. ) and Trifoliate orange (. )]. Results indicated that photosynthesis of these grafted citrus plants was significantly affected by all the scion, rootstock and their interaction. The rootstock and scion-rootstock interaction had more effect on both chlorophyll fluorescence and photosynthetic parameters with lower p values than the scion. All the scions grafted on Swingle showed the highest electron transport rate at 132.24, 158.39 and 154.59 µmol electrons m s, and a higher net CO assimilation rate at 11.22, 10.77 and 11.69 µmol m s, respectively. The rootstock is the predominant factor affecting the content of photosynthetic pigments, and the combinations using Ziyang xiangcheng as the rootstock had the highest content at 19.83, 20.97 and 20.39 μmol s Kg FW. Electron transport rate is probably the predominant factor determining the final photosynthesis of the grafted citrus trees. This research is the first to reveal the respective effect of the scion, rootstock and their interaction on photosynthesis of citrus scion-rootstock combinations and is valuable in enhancing the understanding of the different performances in citrus scion-rootstock combinations, which aids in selecting optimal scion-rootstock combinations.

摘要

光合作用是植物重要的生物学过程。嫁接植物的光合作用表现受接穗或砧木的影响。然而,接穗、砧木及其在接穗 - 砧木组合中的相互作用对嫁接树光合作用的影响尚不清楚。本研究分析了由3种脐橙(品种‘班菲尔德’、‘奇斯利特’和‘鲍威尔’)嫁接到7种砧木[(施温格枳柚(. × )、卡里佐枳橙(. ×. )、X639(. ×. )、MXT(. ×. )、红橘(. )、资阳香橙(. )和枳(. )]上得到的21种柑橘接穗 - 砧木组合的光合作用。结果表明,这些嫁接柑橘植物的光合作用受到接穗、砧木及其相互作用的显著影响。砧木和接穗 - 砧木相互作用对叶绿素荧光和光合参数的影响比接穗更大,p值更低。所有嫁接到施温格枳柚上的接穗在132.24、158.39和154.59 μmol电子 m s时显示出最高的电子传递速率,净CO同化率分别为11.22、10.77和11.69 μmol m s时更高。砧木是影响光合色素含量的主要因素,以资阳香橙为砧木的组合光合色素含量最高,为19.83、20.97和20.39 μmol s Kg FW。电子传递速率可能是决定嫁接柑橘树最终光合作用的主要因素。本研究首次揭示了接穗、砧木及其相互作用对柑橘接穗 - 砧木组合光合作用的各自影响,对于增进对柑橘接穗 - 砧木组合不同表现的理解具有重要价值,有助于选择最佳的接穗 - 砧木组合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2666/12430570/461be3f4bc97/plants-14-02718-g001.jpg

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