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基于伽马射线物理诱变创制的不同小扁豆群体评价的性状选择主成分和通径分析。

Principal Component and Path Analysis for Trait Selection Based on the Assessment of Diverse Lentil Populations Developed by Gamma-Irradiated Physical Mutation.

机构信息

Department of Genetics and Plant Breeding, Institute of Agriculture, Visva-Bharati University, Sriniketan, PIN-731236 West Bengal, India.

Department of Botany & Microbiology, College of Science, King Saud University, Riyadh 11495, Saudi Arabia.

出版信息

Biomed Res Int. 2022 Jul 18;2022:9679181. doi: 10.1155/2022/9679181. eCollection 2022.

Abstract

Lentil is a notable legume crop valued for its high protein, vitamin, mineral, and amino acid (lysine and tryptophan) content. This crop has a narrow genetic base due to the formation of gene pool barriers during interspecific hybridization within and across species. Mutagenesis may be seen as a novel and alternative breeding technique for the production of new diversity. For the identification of new alleles, the creation of mutants followed by selection in subsequent generations would be necessary. Induction of mutation in lentil cv. by gamma rays therefore produced high variation for the majority of quantitative measures examined. Henceforth, principal component analysis (PCA) and path coefficient analysis were conducted to identify and exclude redundant mutant genotypes with similar traits as the success of breeding is dependent on understanding the relationship between morpho-agronomic traits and seed yield. As shown by the findings of this research, the total quantity of pods per mutant plant should be given considerable priority. The identified mutant genotypes, such as lines 24, 43, 28, 33, and 10, may be used as parents in future breeding or released directly following trials.

摘要

小扁豆是一种重要的豆类作物,因其高蛋白、维生素、矿物质和氨基酸(赖氨酸和色氨酸)含量而受到重视。由于种内和种间杂交形成基因库障碍,该作物的遗传基础较窄。诱变可能被视为一种新颖的替代育种技术,可用于产生新的多样性。为了鉴定新的等位基因,需要先创造突变体,然后在后续世代中进行选择。因此,用伽马射线对 品种进行诱变,对大多数定量指标都产生了很高的变异。此后,进行了主成分分析(PCA)和通径系数分析,以鉴定和排除具有相似性状的冗余突变基因型,因为育种的成功取决于理解形态农艺性状和种子产量之间的关系。正如这项研究的结果所示,每个突变体植株的总荚数应给予相当大的重视。鉴定出的突变体基因型,如 24、43、28、33 和 10 号线,可在未来的育种中作为亲本使用,或在试验后直接释放。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5af9/9314173/00d1b10f8ed5/BMRI2022-9679181.001.jpg

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