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水稻细胞壁转化酶基因在开花期的组织特异性表达及干旱响应

Tissue-specific expression and drought responsiveness of cell-wall invertase genes of rice at flowering.

作者信息

Ji X M, Raveendran M, Oane R, Ismail A, Lafitte R, Bruskiewich R, Cheng S H, Bennett J

机构信息

Plant Breeding, Genetics and Biochemistry Division, International Rice Research Institute, DAPO Box 7777, Metro Manila, Philippines.

出版信息

Plant Mol Biol. 2005 Dec;59(6):945-64. doi: 10.1007/s11103-005-2415-8.

Abstract

Drought stress near heading reduces grain yield in rice cultivars by inhibiting processes such as anther dehiscence and panicle exsertion. Because cell-wall invertases play an important role in carbon allocation to developing organs, we examined the tissue-specific expression and drought sensitivity of the corresponding genes (OsCIN1-9) at heading in the widely grown cultivar IR64. OsCIN1-5,8 were expressed to varying degrees in flag leaf, panicle, anthers and peduncle at 1 day before heading (1 DBH). When water was withheld for 2 days starting 3 DBH, anthesis and peduncle elongation were halted. At the same time, transcript levels for OsCIN1-5,8 genes were all markedly down-regulated in anthers and/or peduncles but were not affected in flag leaves. Re-watering allowed anthesis and peduncle elongation to proceed and restored expression of OsCIN1-5,8. We conclude that cell-wall invertase genes, as a class, respond rapidly to water deficit in anthers and peduncles and through a reduction in sink strength help to coordinate a delay in anthesis and heading. By contrast, vacuolar invertase OsVIN2 was up-regulated by drought stress in flag leaves, panicles, anthers and peduncles. Although OsCIN1-3,5,8 were active in the peduncle, only OsCIN2 was expressed strongly and preferentially at the base, where cell division and cell elongation occur. OsCIN2 was expressed principally in the primary and secondary vascular systems, consistent with a role in diverting sucrose from the phloem to the dividing and expanding cells of the peduncle, whereas the less abundant OsCIN1,3,5,8 transcripts were found principally in parenchyma cells. The OsCIN2 transcript levels in the base were highest at 1 DBH, when rapid peduncle elongation began. Drought stress halted peduncle elongation and reduced OsCIN2 transcript level to 8% of the control level. On re-watering, peduncle elongation was restored and OsCIN2 transcript level recovered to 24% of the control. The abscisic acid (ABA) level of peduncles increased 7-fold on drought stress and returned to the control level on re-watering. Detached peduncles floated on water elongated little and lost all OsCIN2 transcripts, but on 50-100 microM GA3 they elongated rapidly and maintained high OsCIN2 transcript levels. ABA antagonized both peduncle elongation and maintenance of OsCIN2 transcript levels. We conclude that this antagonism is a potential intervention point for breeding strategies directed at enhancing panicle exsertion during or after drought stress at heading.

摘要

抽穗期附近的干旱胁迫通过抑制花药开裂和穗抽出等过程降低水稻品种的籽粒产量。由于细胞壁转化酶在向发育器官的碳分配中起重要作用,我们研究了广泛种植的品种IR64在抽穗期相应基因(OsCIN1 - 9)的组织特异性表达和干旱敏感性。在抽穗前1天(1 DBH),OsCIN1 - 5、8在剑叶、穗、花药和穗颈中不同程度表达。从抽穗前3天开始停水2天,开花和穗颈伸长停止。同时,OsCIN1 - 5、8基因的转录水平在花药和/或穗颈中均显著下调,但在剑叶中不受影响。复水后开花和穗颈伸长得以继续,并恢复了OsCIN1 - 5、8的表达。我们得出结论,作为一类基因,细胞壁转化酶基因对花药和穗颈中的水分亏缺反应迅速,并通过降低库强度有助于协调开花和抽穗的延迟。相比之下,液泡转化酶OsVIN2在剑叶、穗、花药和穗颈中受干旱胁迫上调。虽然OsCIN1 - 3、5、8在穗颈中具有活性,但只有OsCIN2在发生细胞分裂和细胞伸长的基部强烈且优先表达。OsCIN2主要在初生和次生维管系统中表达,这与其将蔗糖从韧皮部转运到穗颈的分裂和扩展细胞中的作用一致,而含量较少的OsCIN1、3、5、8转录本主要在薄壁细胞中发现。基部的OsCIN2转录水平在抽穗前1天最高,此时穗颈开始快速伸长。干旱胁迫使穗颈伸长停止,OsCIN2转录水平降至对照水平的8%。复水后,穗颈伸长恢复,OsCIN2转录水平恢复到对照的24%。穗颈的脱落酸(ABA)水平在干旱胁迫下增加7倍,复水后恢复到对照水平。离体穗颈漂浮在水上伸长很少且失去所有OsCIN2转录本,但在50 - 100 microM GA3处理下它们迅速伸长并维持高OsCIN2转录水平。ABA拮抗穗颈伸长和OsCIN2转录水平的维持。我们得出结论,这种拮抗作用是在抽穗期干旱胁迫期间或之后旨在增强穗抽出的育种策略的潜在干预点。

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