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控制玉米杂交种干旱功能性状的候选基因的不同显性水平

Variable Level of Dominance of Candidate Genes Controlling Drought Functional Traits in Maize Hybrids.

作者信息

Van Gioi Ha, Mallikarjuna Mallana Gowdra, Shikha Mittal, Pooja Banduni, Jha Shailendra K, Dash Prasanta K, Basappa Arunkumar M, Gadag Raveendra N, Rao Atmakuri Ramakrishna, Nepolean Thirunavukkarasu

机构信息

Division of Genetics, Indian Agricultural Research Institute (ICAR)New Delhi, India.

Forage Crops Department, Maize Research InstituteHa Noi, Vietnam.

出版信息

Front Plant Sci. 2017 Jun 9;8:940. doi: 10.3389/fpls.2017.00940. eCollection 2017.

Abstract

Breeding maize for drought tolerance necessitates the knowledge on tolerant genotypes, molecular basis of drought tolerance mechanism, action, and expression pattern of genes. Studying the expression pattern and gene action of candidate genes during drought stress in the hybrids will help in choosing target genes for drought tolerance breeding. In the present investigation, a set of five hybrids and their seven parents with a variable level of tolerance to drought stress was selected to study the magnitude and the direction of 52 drought-responsive candidate genes distributed across various biological functions, ., stomatal regulation, root development, detoxification, hormone signaling, photosynthesis, and sugar metabolism. The tolerant parents, HKI1105 and CML425, and their hybrid, ADWLH2, were physiologically active under drought stress, since vital parameters ., chlorophyll, root length and relative water content, were on par with the respective well-watered control. All the genes were up-regulated in ADWLH2, many were down-regulated in HM8 and HM9, and most were down-regulated in PMH1 and PMH3 in the shoots and roots. The nature of the gene action was controlled by the parental combination rather than the parent . The differentially expressed genes in all five hybrids explained a mostly non-additive gene action over additivity, which was skewed toward any of the parental lines. Tissue-specific gene action was also noticed in many of the genes. The non-additive gene action is driven by genetic diversity, allele polymorphism, events during gene regulation, and small RNAs under the stress condition. Differential regulation and cross-talk of genes controlling various biological functions explained the basis of drought tolerance in subtropical maize hybrids. The nature of the gene action and the direction of the expression play crucial roles in designing introgression and hybrid breeding programmes to breed drought tolerant maize hybrids.

摘要

培育耐旱玉米需要了解耐旱基因型、耐旱机制的分子基础、基因的作用及表达模式。研究候选基因在杂交种干旱胁迫期间的表达模式和基因作用,将有助于选择耐旱育种的目标基因。在本研究中,选择了一组对干旱胁迫具有不同耐受水平的五个杂交种及其七个亲本,以研究分布于各种生物学功能(如气孔调节、根系发育、解毒、激素信号传导、光合作用和糖代谢)的52个干旱响应候选基因的变化幅度和方向。耐旱亲本HKI1105和CML425及其杂交种ADWLH2在干旱胁迫下生理活性良好,因为重要参数(如叶绿素、根长和相对含水量)与各自的充分浇水对照相当。所有基因在ADWLH2中均上调,许多基因在HM8和HM9中下调,而在PMH1和PMH3的地上部和根部大多数基因下调。基因作用的性质由亲本组合而非亲本控制。所有五个杂交种中差异表达的基因大多解释为非加性基因作用而非加性作用,且偏向于任何一个亲本系。许多基因中也发现了组织特异性基因作用。非加性基因作用由遗传多样性、等位基因多态性、基因调控过程中的事件以及胁迫条件下的小RNA驱动。控制各种生物学功能的基因的差异调控和相互作用解释了亚热带玉米杂交种耐旱的基础。基因作用的性质和表达方向在设计渗入和杂交育种计划以培育耐旱玉米杂交种中起着关键作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/beed/5465259/c72eab0975dc/fpls-08-00940-g0001.jpg

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