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Functional Plant Biology Functional Plant Biology Society
Plant function and evolutionary biology
RESEARCH ARTICLE

Effects of interstocks on growth and photosynthetic characteristics in ‘Yuanxiaochun’ Citrus seedlings

Tie Wang A * , Bo Xiong https://orcid.org/0000-0002-1767-7478 A * , Liping Tan A , Youting Yang A , Yue Zhang A , Mengmeng Ma A , Yinghuan Xu A , Ling Liao A , Guochao Sun B , Dong Liang B , Hui Xia B , Xiaoai Zhang A , Zhihui Wang A B C and Jun Wang A C
+ Author Affiliations
- Author Affiliations

A College of Horticulture, Sichuan Agricultural University, Chengdu, Sichuan, 611130, China.

B Institute of Pomology and Olericulture, Sichuan Agricultural University, Chengdu, Sichuan, 611130, China.

C Corresponding authors. Email: wangzhihui318@126.com; 4692670@qq.com

This paper originates from a presentation at the 10th International Photosynthesis and Hydrogen Energy Research for Sustainability Meeting held in St Petersburg, Russia, 2328 June 2019.

Functional Plant Biology 47(11) 977-987 https://doi.org/10.1071/FP20079
Submitted: 19 March 2020  Accepted: 23 June 2020   Published: 10 July 2020

Abstract

To obtain the compatibility of interstocks crossing with ‘Yuanxiaochun’, we performed a comparative analysis with five interstocks. From the 60th to 240th day after grafting, there was a significant difference between different treatments. All the new shoot/interstock diameter ratios were <1, indicating that there was no obvious phenomenon of small feet in ‘Yuanxiaochun’ seedlings of five kinds of interstocks. The density of ‘Yuanxiaochun’ was significantly different. Chl a, Chl b, T-Chl content of ‘Shiranuhi’, ‘Harumi’, ‘Tarocco’ changed greatly from the 90th to 120th day after grafting. The intercellular CO2 concentration (Ci) of ‘Shiranuhi’ was significantly higher than the other interstocks. In addition, when ‘Yuanxiaochun’ was grafted onto ‘Shiranuhi’, net photosynthetic rate (Pn), stomatal conductance (gs) and tanspiration rate (Tr) were higher. When ‘Harumi’ were used as the interstocks of ‘Yuanxiaochun’, the light saturation point (LSP) value was larger, which was conducive to the utilisation of strong light. Moreover, the value of LSP-LCP (LCP, light compensation point) of ‘Harumi’ and ‘Tarocco’ were significantly higher than the other three interstocks. The apparent quantum efficiency (AQE), RuBP maximum regeneration rate (Jmax) and maximum carboxylation efficiency of Rubisco (Vcmax) value of ‘Shiranuhi’ was significantly lower than that of ‘Ponkan’. The CO2 compensation point (CCP) of ‘Harumi’ interstock was lower, but the CO2 saturation point (CSP) of ‘Tarocco’ interstock was higher than those of other interstocks respectively. There was a small difference in initial fluorescence (F0) of different interstocks. The maximal photochemical efficiency of PSII in the dark (Fv/Fm) of ‘Kumquat’ was the lowest. In addition, Both Y(II) and ETR values of the ‘Yuanxiaochun’ leaves of ‘Ponkan’ interstock was the largest one. However, the non-photochemical quenching (qN) of ‘Ponkan’ was significantly lower, and that of ‘Tarocco’ interstock was the highest one. Interstocks have different effect on the growth and development, photosynthetic characteristics related to physiological characteristics of ‘Yuanxiaochun’ trees. ‘Ponkan’ and ‘Kumquat’ as the interstock of ‘Yuanxiaochun’ was more conducive to the rapid accumulation of photosynthetic products for normal vegetative and reproductive growth of plants.

Additional keywords: Harumi, Kumquat, Ponkan, Shiranuhi, Tarocco.


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