Leaf physiological and endophytic microbial community characteristics and interactions of different scions grafted onto Malus sieversii.

IF 3.5 2区 农林科学 Q1 FORESTRY
Huanhuan Zhang, Dongdong Yao, Hossam Salah Mahmoud Ali, Guangxin Zhang, Xujiao Li, Jingshan Xi, Yingchi Liang, Li Shao, Fengyun Zhao, Songlin Yu, Kun Yu
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引用次数: 0

Abstract

Endophytic microbial communities in scion leaves substantially impact the growth efficiency of apple trees (Malus × domestica Borkh.); however, the underlying mechanisms remain underexplored. Herein, we grafted three varieties-Malus sieversii, Hanfu, and Fuji-onto M. sieversii rootstocks and employed high-throughput sequencing technology to investigate how physiological traits of scion leaves influence endophytic microbiota and apple tree growth. Compared to the M. sieversii scion, the aboveground (+49.28%) and root (+62.77%) biomass of juvenile trees grafted with the Hanfu scion significantly increased, with the net photosynthetic rate and stomatal conductance rising by 20.40% and 42.26%, respectively. Additionally, the leaves of the Hanfu scion exhibited a significant increase in sucrose synthase activity and carbon accumulation compared to the M. sieversii and Fuji scions, while the carbon content and carbon-to-nitrogen ratio significantly decreased. Furthermore, through 16S rDNA and ITS high-throughput sequencing, we found that the diversity and abundance of endophytic bacteria and fungi in the leaves of the Hanfu scion were higher than in the M. sieversii and Fuji scions. Hanfu scion leaves were predominantly enriched with the phyla Firmicutes and Ascomycota and the genus Salinicoccus. A close association was observed between leaf endophytic bacterial and fungal communities and physiological traits, with particularly significant correlations in the fungal communities. Parameters such as leaf intercellular carbon dioxide concentration, chlorophyll b content, carbon-to-nitrogen ratio, and carbon accumulation were implicated in enriching dominant endophytic microbial phyla and genera. Through partial least squares structural equation models, we confirmed that leaf photosynthetic properties and carbon and nitrogen metabolism significantly affect leaf carbon and nitrogen accumulation through the regulation of endophytic fungal diversity, thereby affecting apple tree growth. In conclusion, the interaction between leaf physiological properties of different scion varieties and the diversity and composition of endophytic microbial communities influences apple tree growth.

嫁接到 Malus sieversii 上的不同接穗的叶片生理和内生微生物群落特征及相互作用。
接穗叶片内生微生物群落对苹果树生长效率的影响然而,其潜在机制仍未得到充分探讨。本研究将苹果(malus sieversii)、汉赋(Hanfu)和富士(fuji)三个品种嫁接到苹果砧木上,利用高通量测序技术研究了接穗叶片生理性状对内生微生物群和苹果树生长的影响。嫁接汉服接穗的幼树地上生物量(+49.28%)和根生物量(+62.77%)显著高于接穗,净光合速率和气孔导度分别提高20.40%和42.26%。汉服接穗叶片的蔗糖合成酶活性和碳积累量显著高于富士接穗,而碳含量和碳氮比则显著降低。此外,通过16S rDNA和ITS高通量测序,我们发现汉服接穗叶片中内生细菌和真菌的多样性和丰度高于富士接穗和西弗氏接穗。汉服接穗叶片主要富含厚壁菌门、子囊菌门和盐球菌属。结果表明,叶片内生细菌和真菌群落与叶片生理性状密切相关,其中真菌群落的相关性尤为显著。叶片胞间二氧化碳浓度、叶绿素b含量、碳氮比和碳积累等参数与优势内生微生物门和属的富集有关。通过偏最小二乘结构方程模型,我们证实了叶片光合特性和碳氮代谢通过调节内生真菌多样性显著影响叶片碳氮积累,从而影响苹果树生长。综上所述,不同接穗品种叶片生理特性与内生微生物群落的多样性和组成之间的相互作用影响着苹果树的生长。
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来源期刊
Tree physiology
Tree physiology 农林科学-林学
CiteScore
7.10
自引率
7.50%
发文量
133
审稿时长
1 months
期刊介绍: Tree Physiology promotes research in a framework of hierarchically organized systems, measuring insight by the ability to link adjacent layers: thus, investigated tree physiology phenomenon should seek mechanistic explanation in finer-scale phenomena as well as seek significance in larger scale phenomena (Passioura 1979). A phenomenon not linked downscale is merely descriptive; an observation not linked upscale, might be trivial. Physiologists often refer qualitatively to processes at finer or coarser scale than the scale of their observation, and studies formally directed at three, or even two adjacent scales are rare. To emphasize the importance of relating mechanisms to coarser scale function, Tree Physiology will highlight papers doing so particularly well as feature papers.
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