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兵豆对高温胁迫的生理和分子特征分析

Physiological and molecular characterisation for high temperature stress in Lens culinaris.

作者信息

Kumar Jitendra, Basu Partha Sarathi, Gupta Sunanda, Dubey Sonali, Sen Gupta Debjyoti, Singh Narendra Pratap

机构信息

Division of Crop Improvement, ICAR-Indian Institute of Pulses Research, Kalyanpur, Kanpur - 208024, India.

Division of Basic Sciences, ICAR-Indian Institute of Pulses Research, Kalyanpur, Kanpur - 208024, India.

出版信息

Funct Plant Biol. 2018 Mar;45(4):474-487. doi: 10.1071/FP17211.

Abstract

In the present study, 11 lentil (Lens culinaris Medik) genotypes including heat tolerant and heat sensitive genotypes identified after a screening of 334 accessions of lentil for traits imparting heat tolerance, were characterised based on physiological traits and molecular markers. Results showed a higher reduction in pollen viability among sensitive genotypes (up to 52.3%) compared with tolerant genotypes (up to 32.4%) at 43°C. Higher photosynthetic electron transport rate was observed among heat tolerant genotypes and two heat tolerant lentil genotypes, IG 4258 (0.43) and IG 3330 (0.38) were having highest Fv/Fm values. However, membrane stability was significantly higher in only one heat tolerant genotype, ILL 10712, indicating that different mechanisms are involved to control heat tolerance in lentil. The molecular characterisation of lentil genotypes with 70 polymorphic SSR and genic markers resulted into distinct clusters in accordance with their heat stress tolerance. A functional marker ISM11257 (intron spanning marker) amplifying an allele of 205bp in size was present only among heat tolerant genotypes, and could be further used in a breeding program to identify heat tolerant lentil genotypes. The findings of this study will contribute to the development of heat tolerant lentil cultivars.

摘要

在本研究中,对334份小扁豆种质进行耐热性状筛选后鉴定出11个小扁豆(Lens culinaris Medik)基因型,包括耐热和热敏基因型,并基于生理性状和分子标记对其进行了表征。结果表明,在43°C时,敏感基因型的花粉活力下降幅度高于耐受基因型(敏感基因型高达52.3%,耐受基因型高达32.4%)。耐热基因型的光合电子传递速率较高,两个耐热小扁豆基因型IG 4258(0.43)和IG 3330(0.38)的Fv/Fm值最高。然而,只有一个耐热基因型ILL 10712的膜稳定性显著更高,这表明小扁豆控制耐热性涉及不同的机制。利用70个多态性SSR和基因标记对小扁豆基因型进行分子表征,结果显示根据其耐热性形成了不同的聚类。一个功能性标记ISM11257(内含子跨越标记)扩增出一个大小为205bp的等位基因,仅在耐热基因型中存在,可进一步用于育种计划以鉴定耐热小扁豆基因型。本研究结果将有助于耐热小扁豆品种的培育。

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