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外源IAA对核桃内果皮生长发育的影响

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[目的]探究生长素(IAA)对核桃内果皮发育的影响.[方法]采用不同质量浓度的IAA处理核桃,通过Wiesner法观察核桃内果皮木质素的沉积变化,并测定内果皮中木质素、纤维素、半纤维素和IAA含量,同时对IAA处理后第12天的样本进行高通量测序.[结果]与对照相比,低质量浓度IAA处理和高质量浓度IAA处理后内果皮木质素的积累存在显著差异,在处理后期,核桃内果皮部分硬化,仍存在内果皮缺失或不完整现象.木质素、纤维素和半纤维素含量整体呈上升趋势,最高分别可达30.55%、16.49%和17.23%,IAA含量整体呈上升趋势;通过RNA-seq分析,发现差异基因主要富集在植物激素信号转导和苯丙烷生物合成途径中,且随着IAA质量浓度的升高,部分与激素信号转导和苯丙烷生物合成相关的差异表达基因逐渐下调表达或不表达.[结论]IAA参与调控核桃内果皮的发育,影响内果皮木质素的积累,为后期研究核桃内果皮对外源生长素的响应提供参考依据.
Effect of exogenous IAA on the growth and development of walnut endo-carp
[Objective]The accumulation of lignin is the main events of walnut endocarp development,and plant hormones regulate the formation of thick-walled tissues and the synthesis of lignin,which in-volves in xylem development,through the expression of related genes,thus affecting the development of the secondary wall.The study was carried out in order to understand the effect of the growth hor-mone IAA on the development of endocarp in walnuts.[Methods]In the present study,we selected the 16 year old trees with robust and consistent growth and consistent levels of water and fertilizer manage-ment.At about 50 d after flowering,bearing spurs were wrapped and treated with different concentra-tions of growth regulators.Changes in lignin deposition in the endocarp of walnuts after the treatments with different concentrations of IAA was observed by resorcinol staining,and the contents of lignin,cel-lulose,hemicellulose,and IAA in the endocarp were determined.At the same time,samples at 12 d af-ter IAA treatment were subjected to high-throughput sequencing and analysis.[Results]The results showed that at the early stage of treatment there was a significant difference in the accumulation of en-docarp lignin between the treatments with differential IAA concentrations.Lignin deposition started from tissues near the vascular bundles,and the color shifted from light red to dark red and from local-ized staining to overall staining.At the late stage,the endocarp of the late walnuts was partially hard-ened and significantly thickened,but the development of the endocarp was incomplete,and the dewy kernel was still present.Lignin content in the endocarp increased significantly after the treatments with 50 mg·L-1 IAA and 100 mg·L-1 IAA at the 12th d after treatment,and the difference in lignin content was not significant between the control and the treatment with 200 mg·L-1.In the late stages,low con-centration IAA treatment promoted lignin accumulation and lignin content increased slowly,but lignin content in treatments high concentrations was lower than that in the control.The overall endocarp cellu-lose content showed an increasing trend,compared with the control.The pre-cellulose content in the treatments was higher than in the control.Compared with the control,the overall endocarp hemicellu-lose content showed an increasing trend.The endogenous IAA content in walnut endocarp after differ-ent concentrations of IAA treatments showed an overall increasing trend.On the 12th d after treatment,the endogenous IAA content in the treatments with 50 mg·L-1 IAA and 100 mg·L-1 IAA was significant-ly higher than that in the control.It was 37.77 ng·g-1 in the treatment with 50 mg·L-1 IAA,which was 24.2%higher than that of the control,and 100 mg·L-1 IAA treatment had a IAA content 21.5%higher than that in the control.Treatments with 150 mg·L-1 IAA and 200 mg·L-1 IAA were lower than the con-trol.Therefore,with the increase in concentration exogenous IAA,the endogenous IAA content showed a decreasing trend.The number of differentially expressed genes between 50 mg·L-1 IAA treatment and the control was the largest,with 3292 genes,of which 1922 were up-regulated and 1370 down-regulat-ed,and the number of common differential genes among the treatments with different concentrations were 591 based on the Veen diagram.GO enrichment and KEGG enrichment analyses revealed that the phytohormone signaling pathway was the common metabolic pathway,and the phenylpropane biosyn-thesis pathway was significantly altered with the increase in IAA concentration,but it was not enriched in the treatments with 150 mg·L-1 IAA and 200 mg·L-1 IAA.It was initially hypothesized that there were significant differences in the phytohormone signaling and phenylpropane biosynthesis metabolic pathways in the endocarp of walnuts after exogenous application of IAA.The genes related to the two pathways,which were differentially expressed,were gradually down-regulated or non-expressed with the increase in IAA concentration.[Conclusion]The results showed that IAA affected the accumulation of lignin in the endocarp as well as the expression of genes in the lignin synthesis pathway.The results provided reference for the later study to explore the mechanism of the effect.

WalnutsEndocarpIAALigninHigh throughput sequencing

李义霞、鱼尚奇、郭众仲、付嘉智、鹿宏丽、王红霞、张锐、木塔力甫

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南疆特色果树高效优质栽培与深加工技术国家地方联合工程实验室,新疆阿拉尔 843300

新疆兵团塔里木盆地生物资源保护利用重点实验室,新疆阿拉尔 843300

塔里木大学园艺与林学学院,新疆阿拉尔 843300

河北农业大学河北省山区研究所,河北保定 071033

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核桃 内果皮 IAA 木质素 高通量测序

国家自然科学基金南疆重点产业创新发展支撑计划"天山英才"培养计划

321606892022DB022

2024

果树学报
中国农业科学院郑州果树研究所

果树学报

CSTPCD北大核心
影响因子:1.486
ISSN:1009-9980
年,卷(期):2024.41(5)