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将全基因组 RNA 测序与生理生化和细胞学反应联系起来,以编目耐碱胁迫的关键基因和代谢途径 Lentil (Lens culinaris Medikus)。

Linking genome wide RNA sequencing with physio-biochemical and cytological responses to catalogue key genes and metabolic pathways for alkalinity stress tolerance in lentil (Lens culinaris Medikus).

机构信息

Division of Genetics, ICAR-Indian Agricultural Research Institute, New Delhi, 110012, India.

Division of Plant Physiology, Indian Agricultural Research Institute, New Delhi, 110012, India.

出版信息

BMC Plant Biol. 2022 Mar 5;22(1):99. doi: 10.1186/s12870-022-03489-w.

Abstract

BACKGROUND

Alkaline soils cause low productivity in crop plants including lentil. Alkalinity adaptation strategies in lentil were revealed when morpho-anatomical and physio-biochemical observations were correlated with transcriptomics analysis in tolerant (PDL-1) and sensitive (L-4076) cultivars at seedling stage.

RESULTS

PDL-1 had lesser salt injury and performed better as compared to L-4076. Latter showed severe wilting symptoms and higher accumulation of Na and lower K in roots and shoots. PDL-1 performed better under high alkalinity stress which can be attributed to its higher mitotic index, more accumulation of K in roots and shoots and less aberrantly dividing cells. Also, antioxidant enzyme activities, osmolytes' accumulation, relative water content, membrane stability index and abscisic acid were higher in this cultivar. Differentially expressed genes (DEGs) related to these parameters were upregulated in tolerant genotypes compared to the sensitive one. Significantly up-regulated DEGs were found to be involved in abscisic acid (ABA) signalling and secondary metabolites synthesis. ABA responsive genes viz. dehydrin 1, 9-cis-epoxycarotenoid dioxygenase, ABA-responsive protein 18 and BEL1-like homeodomain protein 1 had logfold change above 4.0. A total of 12,836 simple sequence repeats and 4,438 single nucleotide polymorphisms were identified which can be utilized in molecular studies.

CONCLUSIONS

Phyto-hormones biosynthesis-predominantly through ABA signalling, and secondary metabolism are the most potent pathways for alkalinity stress tolerance in lentil. Cultivar PDL-1 exhibited high tolerance towards alkalinity stress and can be used in breeding programmes for improving lentil production under alkalinity stress conditions.

摘要

背景

碱性土壤会导致包括小扁豆在内的作物产量降低。在幼苗期,当将形态解剖学和生理生化观察与耐盐(PDL-1)和敏感(L-4076)品种的转录组分析相关联时,揭示了小扁豆的耐碱性适应策略。

结果

与 L-4076 相比,PDL-1 的盐害较小,表现更好。后者表现出严重的萎蔫症状,根和茎中 Na 积累增加,K 积累减少。PDL-1 在高碱性胁迫下表现更好,这可归因于其较高的有丝分裂指数、根和茎中 K 的积累增加以及异常分裂细胞减少。此外,该品种的抗氧化酶活性、渗透调节剂积累、相对水含量、膜稳定性指数和脱落酸较高。与这些参数相关的差异表达基因(DEGs)在耐盐基因型中上调,而在敏感基因型中下调。发现显著上调的 DEGs 参与脱落酸(ABA)信号转导和次生代谢物合成。ABA 响应基因,如脱水素 1、9-顺式环氧类胡萝卜素双加氧酶、ABA 响应蛋白 18 和 BEL1 样同源域蛋白 1 的对数倍变化高于 4.0。共鉴定出 12836 个简单重复序列和 4438 个单核苷酸多态性,可用于分子研究。

结论

植物激素生物合成——主要通过 ABA 信号转导和次生代谢——是小扁豆耐碱性胁迫的最有效途径。品种 PDL-1 对碱性胁迫表现出高度的耐受性,可用于碱性胁迫条件下提高小扁豆产量的育种计划。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f61/8897830/7558ffd33a7f/12870_2022_3489_Fig1_HTML.jpg

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